Field of the invention
[0001] The present invention relates to a knockover sinker, known as "shaped sinker", for
a knitting machine, in particular for a circular knitting machine. In further detail,
the present invention relates to a particular shaped sinker configured for manufacturing
open-work knitted fabrics. In the framework of the present invention, the structure
of those elements which, by cooperating with the knockover sinkers and the needles,
enable to manufacture said open-work knitted fabric, will be described, and in particular
the individual selection of said elements enabling to create openings in the fabric
by cooperating with some needles only, while the adjacent needles make traditional
stitches. Preferably, the present invention falls into the field of circular knitting
machines for knitted and hosiery items configured for manufacturing open-work knitted
fabrics.
Background of the invention
[0002] As is known, circular knitting machines comprise a needle-holding element (needle
cylinder and/or plate) on which one or more series of needles are arranged along a
circular path (circular needlebeds), and devices apt to control the movement of the
needles for knitted fabric formation. Knockover sinkers are arranged in radial seats
obtained in a ring-shaped body (sinker crown) arranged around the needle-holding cylinder,
and these sinkers cooperate with the needles so as to make knitted fabric.
[0003] While executing particular designs with circular knitting machines, it is known to
manufacture open-work knitted fabrics.
[0004] Document
BE781077A describes a circular knitting machine equipped with arranged in pairs one on each
side of a main sinker, and the ends of auxiliary sinkers extend outwardly away from
the associated main sinker so that an end of one auxiliary sinker is in line with
one cylinder needle and the end of the other auxiliary sinker is in line with an adjacent
cylinder needle. The auxiliary sinkers are operated in pairs to widen a stitch and
place it on the two adjacent cylinder needles so that a wide variety of fancy operations
e.g. open structure patterns can be carried out when knitting e.g. stockings, tights.
[0005] Document
GB449404 discloses a circular knitting machine equipped with sinkers arranged between the
needles and on which interstitch loops are formed. At least one of these sinkers comprises
a protruding lateral portion, which is configured for moving an interstitch loop onto
an adjacent needle so as to create an opening in the knitted fabric.
[0006] Document
GB377794 discloses a circular knitting machine equipped with a spreader provided with a pair
of blades placed on opposed sides of a sinker and configured for spreading an interstitch
and arranging it on one or both adjacent needles.
[0007] Document
GB410831 discloses a circular knitting machine comprising some sinkers provided with an upper
hook or with a pair of hooks placed on the sides of a traditional sinker. Said hooks
are configured and moved so as to displace an interstitch on adjacent needles and
make an open work in the fabric. A selector moves the sinker with the hook integrated
therein when said hook must work. The selector comprises an oscillating arm provided
with butts interacting with a plurality of cams belonging to an actuating device.
[0008] It is further known about public document Mi2003A001995, which discloses a device
for selecting sinkers comprising, for each of the radial grooves housing the sinkers,
a selector oscillating in a radial plane with respect to the sinker crown so as to
switch between an operating position to a non-operating position or vice versa, which
is connected to the corresponding sinker arranged in the corresponding radial groove,
so as to induce a given actuation of the sinker depending on whether the selector
is in the non-operating position or in the operating position. Moreover, a selecting
actuator is provided, laterally facing the sinker crown and to be engaged upon command
with the selector so as to switch it from the non-operating position to the operating
position. When the selector is in the non-operating position, the selecting actuator
does not intervene, the sinker is actuated by means of actuating cams only and cooperates
with the needles for making stitches. When the selector is switched to the operating
position, said sinker is pushed towards the axis of the sinker crown more than the
movement resulting from the actuating cams only, so as to cooperate with the needles
in order to make terry stitches.
[0009] A circular knitting machine configured for manufacturing fabrics with intarsia motifs
(intarsia machine) is disclosed for instance in document
EP1620590 issued to the same Applicant.
[0010] Intarsia is a knitting technique enabling to obtain motifs using yarns of different
colors in the same knitted course. Intarsia technique is usually used for creating
multicolored motifs. As for woodworking technique, which it shares the name with,
fields with different colors and materials seem to be fitted together as in a puzzle.
Differently from other multicolor knitting techniques, there is only one "active"
color on one or more needles and the yarn is not let float to the reverse. When a
color changes on a given knitted course, the old yarn is left hanging.
Summary
[0011] In the framework of circular knitting machines as the ones disclosed above, the Applicant
has identified the presence of some drawbacks.
[0012] First of all, the Applicant noticed that knockover sinkers according to known solutions
can be improved under various aspects.
[0013] For example, known knockover sinkers are not able to manage, for all knitted structures
to be manufactured with the knitting machine, the correct yarn absorption during the
creation of stitches. This can lead to an erroneous length of the interstitch, in
particular when manufacturing open-work.
[0014] Moreover, known solutions are affected by problems related to an excessive tension
of the yarns when the latter interact with the knockover sinkers, and this can lead
to yarns breaking or to erroneous stitches or to inaccuracies in the knitted fabric.
[0015] A further drawback of known solutions consists in the possibility, in some textile
processings, that knockover sinkers may undesirably interfere with yarns being fed
(thus deviating their paths) or with elements of the knitting head such as cams or
other control elements.
[0016] Under these circumstances, an aim underlying the present invention in its various
aspects and/or embodiments is to provide a special knockover sinker, known as "shaped
sinker", for knitting machines which can obviate one or more of the drawbacks referred
to above.
[0017] A further aim of the present invention is to provide a shaped sinker for knitting
machines which allows to manufacture open-work knitted fabrics with the most different
features.
[0018] Moreover, an aim of the present invention is to propose a circular knitting machine
which can manufacture high quality open-work knitted fabrics.
[0019] An aim of the present invention is also to propose a shaped sinker having a rational
structure and specifically conceived for achieving given performance when manufacturing
the knitted fabric, in particular an open-work knitted fabric.
[0020] A further aim of the present invention is to provide a low cost shaped sinker which
is easy to carry out.
[0021] A further aim of the present invention is to provide a knitting machine which is
able to manufacture open-work knitted fabrics enabling also to obtain further motifs
and/or effects on the knitted fabric, preferably without having to reconfigure the
machine itself or parts of it from a mechanical point of view.
[0022] A further aim of the present invention is to provide a circular knitting machine
configured for manufacturing fabrics with intarsia motifs (intarsia machine or argyle
machine), which is also able to manufacture open-work knitted fabrics according to
the aims listed above.
[0023] A further aim of the present invention is to create alternative solutions to the
state of the art for carrying out shaped knockover sinkers and for manufacturing open-work
knitted fabrics, and/or to open new design possibilities.
[0024] These and other possible aims, which shall appear better from the following description,
are basically achieved by a knockover sinker, known as "shaped sinker", and by a circular
knitting machine including this sinker, according to one or more of the appended claims
and according to the following aspects and/or embodiments, variously combined, possibly
also with the aforesaid claims.
[0025] In the present description and in the appended claims, the words "upper", "lower",
"above", "below", "horizontal", "vertical" relate to the positioning of the machine
during normal operation with the central axis of rotation in vertical position and
the cylinder needles with their heads pointing upwards.
[0026] In the present description and in the appended claims, the words "axial", "circumferential",
"radial" relate to said central axis.
[0027] Some aspects of the invention are listed below.
[0028] In a first aspect thereof, the present invention relates to a shaped knockover sinker
for knitting machines according to claim 1.
[0029] The shaped sinker is configured in particular for manufacturing open-work knitted
fabrics.
[0030] The shaped sinker comprises a main body shaped like a horizontal flat bar and designed
to be slidingly housed inside a radial groove of a sinker-holding crown of a knitting
machine so as to move radially in a controlled manner inside the groove, the main
body having a main longitudinal development and extending between a rear portion and
a front portion.
[0031] The shaped sinker comprises an upright shaped like a vertical flat element and developing
vertically, i.e. rising, from said main body near or on said front portion or in an
intermediate position between the rear portion and the front portion.
[0032] Said upright ends on top with an upper portion defining an upper resting plane designed
to receive one or more yarns resting thereupon during stitch formation.
[0033] The main body and the upright lie on one lying plane of the shaped sinker.
[0034] The shaped sinker comprises a protrusion rising from said upper portion of the upright
and developing on the upright side facing the front portion of the main body.
[0035] The protrusion has on top a sliding plane.
[0036] The protrusion protrudes from the upper portion of the upright so that the sliding
plane of the protrusion is placed forward with respect to the upper resting plane
of the upright, according to a direction pointing to the front end of the main body.
[0037] The protrusion is offset or inclined laterally with respect to the lying plane of
the upright of the shaped sinker, from which it rises.
[0038] The protrusion is configured for loading and stretching an interstitch and arrange
it on an adjacent needle of the knitting machine so as to form an open work.
[0039] The sliding plane of the protrusion is at least partially lowered downwards, i.e.
towards the main body, with respect to the upper resting plane of the upright.
[0040] The sliding plane of the protrusion is configured for receiving thereon one or more
yarns when loading and stretching the interstitch during open work formation.
[0041] In one aspect, the terms "offset laterally" or "inclined" means that the protrusion
is bent or curved laterally with respect to the upright, in particular with respect
to the upper portion of the upright.
[0042] In one aspect, the protrusion is inclined or angled with respect to the upright.
[0043] In one aspect, the protrusion is offset or inclined laterally with respect to the
upright so as not to lie on said lying plane of the shaped sinker.
[0044] In one aspect, the sliding plane, lowered with respect to the upper resting plane
of the upright, develops in a continuous manner with respect to the upper resting
plane, a connecting step being present, downwards, in the transition from the upper
resting plane to the sliding plane.
[0045] In one aspect, said step is rounded off or connected so that the transition from
the upper resting plane to the sliding plane takes place without discontinuity between
the surface of the upper resting plane and the surface of the sliding plane.
[0046] In one aspect, the resting plane is a planar surface, i.e. lying on one, preferably
horizontal plane, and the sliding plane is a respective surface at least partially
lowered downwards, i.e. towards the main body of the shaped sinker.
[0047] In one aspect, the resting plane is a planar surface parallel to the development
of the main body of the shaped sinker.
[0048] The term "lowered" means that the sliding plane of the protrusion is vertically lower
than the upper resting plane of the upper portion of the upright, i.e. closer to the
main body of the shaped sinker. In one aspect, the protrusion is configured so that,
in use, the backward movement of the shaped sinker, carrying a yarn on the resting
surface of the upright, causes the passage of the yarn on the protrusion which, being
offset laterally, loads and stretches the interstitch so as to arrange it on an adjacent
needle, wherein the sliding plane, lowered with respect to the upper resting plane,
is configured for counterbalancing or containing the increase in tension on the yarn
caused by the stretching introduced by the lateral offset of the protrusion, so as
to maintain a correct and/or constant tension of the interstitch when forming the
open work.
[0049] In one aspect, the structure, e.g. the respective shape or vertical height, of the
resting plane and the sliding plane is configured for counterbalancing the stretching
caused by the lateral offset of the protrusion, so as to maintain a correct length
of the interstitch when forming the open work.
[0050] In one aspect, the sliding plane lowered with respect to the upper resting plane
is configured for reducing the tension and/or pressure exerted by the interstitch,
during loading, on the protrusion.
[0051] In one aspect, the sliding plane is lowered with respect of the upper resting plane
of an amount of at least 0.1 mm or at least 0.3 mm or at least 0.5 mm or at least
1 mm or at least 2 mm.
[0052] In one aspect, the protrusion has a base, connected to the front side of the upper
portion of the upright, from which the protrusion itself develops and protrudes as
far as an end tip of the protrusion, opposed to said base. In one aspect, the end
tip of the protrusion is free and points to the front part of the shaped sinker.
[0053] In one aspect, the sliding plane of the protrusion, lowered with respect to the upper
resting plane of the upright, is made like an inclined plane downwards, developing
in a continuous manner from the base of the protrusion to the end tip.
[0054] In one aspect, the inclination of the sliding plane of the protrusion increases from
the base to the end tip, so that the lowering of the sliding plane, with respect to
the resting plane, is greater towards the end tip.
[0055] In one aspect, said inclination of the sliding plane can be constant or variable
along the development of the sliding plane.
[0056] In one aspect, in the sliding plane of the protrusion, made like an inclined plane
downwards, the inclination points to the main body, looking at the shaped sinker from
a lateral position.
[0057] In one aspect, the lateral offset of the protrusion with respect to the lying plane
of the shaped sinker increases from the base to the end tip of the protrusion, i.e.
the protrusion gets progressively away along the protrusion itself, from the base
to the end tip.
[0058] In one aspect, the protrusion being bent with respect to the lying plane so as to
get progressively away from the lying plane itself towards the end tip, the stretching
of the interstitch placed on the sliding plane increases progressively as the shaped
sinker moves backward, the tension on the yarn increasing at the same time when loading
it onto the protrusion, and the downward inclination of the sliding plane is configured
for retrieving and counterbalancing gradually the progressive increase in tension
on the yarn caused by the stretching introduced by the lateral offset of the protrusion,
so as to maintain a correct and/or constant tension of the interstitch while forming
the open work.
[0059] In one aspect, the end tip comprises a stopping portion, raised with respect to a
lower end of the sliding plane. In one aspect, the stopping portion represents an
abutment at the end of the sliding plane, configured for stopping the sliding of the
yarn at the end of the protrusion and retaining the yarn and preventing it from detaching
from the sliding plane and separating from the protrusion.
[0060] In one aspect, the stopping portion is made like a projection on the end tip of the
protrusion, raised with respect to the sliding plane.
[0061] In one aspect, the protrusion may be offset or inclined laterally, with respect to
the upright, to the right or to the left with respect to the lying plane of the shaped
sinker.
[0062] In one aspect, the protrusion develops, from its base to its end tip, starting from
the upright and advancing (though offset laterally) towards the front end of the shaped
sinker.
[0063] In one aspect, the shaped sinker comprises a fin placed behind the upper portion
of the upright, i.e. on the upright side opposed to the side from which the protrusion
develops.
[0064] In one aspect, the protrusion has on top a supporting plane.
[0065] In one aspect, the fin can be positioned so that the supporting plane of the fin
is placed backward with respect to the upper resting plane of the upright, according
to a direction towards the rear end of the main body.
[0066] In one aspect, the fin rises from the upper portion of the upright and develops from
the upright side facing the rear portion of the main body.
[0067] In one aspect, the fin develops from the upright side opposed to the side from which
the protrusion develops (i.e. the fin develops from the rear side of the upright).
[0068] In one aspect, the fin protrudes on the back from the upper portion of the upright
so that said supporting plane is placed backward with respect to the upper resting
plane of the upright, according to a direction towards the rear end of the main body.
[0069] In one aspect, the fin protrudes on the back from the upright so that the supporting
plane of the fin develops in a continuous manner from the resting plane of the upright.
[0070] In one aspect, the supporting plane of the fin and the resting plane of the upright
are coplanar and have the same vertical height.
[0071] In one aspect, the supporting plane of the fin and the resting plane of the upright
are aligned along a longitudinal direction.
[0072] In one aspect, the supporting plane of the fin and the resting plane of the upright
are both horizontal surfaces, preferably parallel to the underlying main body of the
shaped sinker.
[0073] In one aspect, the supporting plane of the fin is not lowered with respect to the
resting plane of the upright.
[0074] In one aspect, the supporting plane of the fin and the resting plane of the upright
globally form a summit surface, preferably horizontal, of the upright and of the whole
shaped sinker.
[0075] In one aspect:
- during a knitting operation combining an open work with the use of at least one yarn
having at least one low trajectory portion, i.e. passing at a lower height that the
height of the resting plane of the upright;
- for making the open work the shaped sinker, in order to transfer the interstitch to
one of the adjacent needles, has to perform a backward motion during which the rear
side of the upright might push, deviate or interfere with the yarn having said at
least one low trajectory portion;
- the fin is configured for supporting, by means of said supporting plane, said at least
one yarn having said at least one low trajectory portion, by letting said trajectory
pass above the supporting plane of the fin and preventing the rear side of the upright
from pushing or interfering with said at least one yarn during the backward shifting
movement of the shaped sinker.
[0076] In one aspect, "yarn having a low trajectory" means a yarn, or at least a portion
thereof, fed below a yarn guiding element (typically known as a "box" or "throat plate").
[0077] In one aspect, the yarn having at least one low trajectory portion is a yarn destined
to take part in a plated operation.
[0078] In one aspect, the yarn having at least one low trajectory portion can be one of
the two yarns taking part in a two-yarn plated operation.
[0079] In one aspect, the fin is configured for working, supporting a yarn by means of said
supporting plane, when the shaped sinker makes an open work and at the same time adjacent
needles make plain or terrycloth knitted structures.
[0080] In one aspect, the fin is offset or inclined laterally with respect to the upright
of the shaped sinker, from which it rises.
[0081] In one aspect, the fin is inclined or angled with respect to the upright.
[0082] In one aspect, the fin is offset or inclined laterally with respect to the upright
so as not to lie on said lying plane of the shaped sinker.
[0083] In one aspect, the lateral offset of the fin with respect to the lying plane of the
shaped sinker increases from the base of the fin to an end tip of the fin, i.e. the
fin gets progressively away from the lying plane along the fin itself. In one aspect,
the lateral offset of the fin is configured for avoiding interferences with a further
sinker placed laterally.
[0084] In one aspect, the fin is offset or inclined laterally, with respect to the upright,
in the same offset direction of the protrusion.
[0085] In one aspect, the lateral inclination of the fin has a smaller angle with respect
to the respective angle of lateral inclination of the protrusion.
[0086] In an alternative aspect, the fin is coplanar with the upright and lies on said lying
plane of the shaped sinker.
[0087] In one aspect, the main body, the upright and the protrusion are made as one piece,
thus forming a single-piece shaped sinker.
[0088] In one aspect, the fin is made as one piece with said upright.
[0089] In an alternative embodiment, the fin is a distinct element from the upright, placed
behind the upper portion of the upright, so that the supporting plane of the fin is
placed backward and aligned with respect to the upper plane of the upright.
[0090] In a possible embodiment, the shaped sinker is completely made as one piece.
[0091] In one aspect, the shaped sinker has in all its parts a basically constant thickness.
[0092] In one aspect, the shaped sinker is wholly made as a flat, thin plate, its length
and height being greater than its thickness.
[0093] In one aspect, the sinker comprises a pin shaped as a horizontal flat element developing
horizontally, i.e. rising, from an intermediate position of said upright between the
upper portion of the upright and a lower coupling point of the upright to the main
body, said pin rising from a front side of the upright pointing towards the end of
the front portion of the main body.
[0094] In one aspect, the pin lies on said lying plane of the shaped sinker.
[0095] In one aspect, the pin can be configured for cooperating with needles of the knitting
machine.
[0096] In one aspect, the protrusion is vertically superimposed above said pin.
[0097] In one aspect, the pin develops parallel to the front portion of the main body, vertically
above it.
[0098] In one aspect, the main body, the upright and the pin lie on one lying plane of the
shaped sinker.
[0099] The invention relates to a circular knitting machine for manufacturing open-work
knitted fabric with at least one shaped sinker according to claim 1.
[0100] The knitting machine comprises:
- a needle-holding cylinder having a plurality of longitudinal grooves arranged around
a central axis of the needle-holding cylinder;
- a plurality of needles, each being housed in a respective longitudinal groove;
- at least one yarn feed operatively associated to the needles;
- a crown arranged around the needle-holding cylinder and having a plurality of radial
grooves;
- at least one guiding ring operatively associated to the crown, wherein the crown is
rotatable with respect to the guiding ring and around the central axis;
- a plurality of knockover sinkers, each housed in one of the radial grooves and radially
movable in the respective radial groove, each knockover sinker having a pin configured
for cooperating with the needles and a butt engaged with a first guide obtained in
the guiding ring and developing around the central axis; wherein the first guide is
configured for moving the knockover sinker radially along the respective radial groove
when the crown rotates with respect to the guiding ring and around the central axis.
[0101] The machine comprises at least one shaped sinker, according to one or more of the
above aspects, placed beside each of the knockover sinkers, wherein the shaped sinker
is movable with respect to the respective knockover sinker.
[0102] In one aspect, the shaped sinker has a butt that is or can be engaged with a second
guide obtained in the guiding ring and developing around the central axis, wherein
the second guide defines a plurality of trajectories for the open-work sinker, wherein
the second guide is configured for moving the shaped sinker radially when the crown
rotates with respect to the guiding ring and around the central axis.
[0103] In one aspect, the machine comprises at least one selector operatively coupled with
said at least one shaped sinker, wherein the selector is movable, preferably oscillating,
in a radial plane between a rest position and an operating position, wherein in the
operating position the selector acts directly or indirectly upon said at least one
shaped sinker so as to deviate the butt of the shaped sinker along a trajectory of
the second guide.
[0104] In one aspect, the machine comprises at least one selecting actuator laterally facing
the crown, fixed with respect to the guiding ring, that can be engaged under control
with the selectors and is configured for causing the selectors to switch from the
rest position to the operating position.
[0105] In one aspect, the circular knitting machine is an intarsia machine, i.e. a machine
configured for manufacturing fabrics with intarsia motifs (intarsia machine or argyle
machine).
[0106] In one aspect, the circular intarsia knitting machine comprises at least two yarn
feeds, each one configured for working with a respective group of needles arranged
along an arc of circle by means of an alternating rotary motion of the needles around
the central axis.
[0107] In one aspect, said at least two feeds cooperate to form every knitted course by
rotating in both directions. In one aspect, at least one more is operatively connected
to the needle-holding cylinder and to the crown so as to make them rotate around the
central axis.
[0108] In one aspect, cams and/or other types of devices are arranged around the needle-holding
cylinder so as to turn the rotational motion of the needle-holding cylinder into an
axial motion of the needles.
[0109] In one aspect, the machine comprises a plurality of yarn feeds, preferably one, more
preferably two or four thereof.
[0110] In one aspect, the machine comprises a plurality of selecting actuators, preferably
each one placed on a yarn feed.
[0111] In one aspect, said at least one shaped sinker, according to one or more of the above
aspects, comprises a right shaped sinker and a left shaped sinker, arranged on opposed
sides of the respective knockover sinker. In one aspect:
- the right shaped sinker has its protrusion offset laterally to the right with respect
to the upright;
- the left shaped sinker has its protrusion offset laterally to left the with respect
to the upright.
[0112] In one aspect, the right shaped sinker and the left shaped sinker exhibit respective
protrusions that are laterally offset towards opposed sides of said knockover sinker
and preferably placed above the respective knockover sinker.
[0113] In one aspect, the protrusions are configured for loading and stretching the interstitch
and arrange it on two adjacent needles placed on opposed sides of the respective knockover
sinker and form the open work. The use of two shaped sinkers for every knockover sinker
allows to make wider, better defined open works, thus obtaining a balanced knitted
fabric without twists or folds.
[0114] In one aspect, said at least one shaped sinker is housed in one of the radial grooves
together with the respective knockover sinker.
[0115] In one aspect, a first assembly made up of the knockover sinker and by the shaped
sinker, according to one or more of the above aspects, or by the right shaped sinker
and by the left shaped sinker, is housed in one of the radial grooves. The radial
groove houses the whole assembly so as to reduce the overall size.
[0116] In one aspect, the shaped sinker is preferably made of metal.
[0117] In one aspect, the right shaped sinker and the left shaped sinker exhibit respective
protrusions that are laterally offset in opposed directions with respect to their
upright and to their main body.
[0118] In one aspect, the butt of the shaped sinker is flat and extends vertically from
the main body.
[0119] In one aspect, the butt of the shaped sinker is positioned on a radially outer end
of the main body.
[0120] In one aspect, the butt of the shaped sinker points upwards.
[0121] In one aspect, the selector acts indirectly upon an end of said at least one shaped
sinker that is radially opposed to the protrusion.
[0122] In one aspect, each selector acts indirectly upon the right shaped sinker and/or
on the left shaped sinker.
[0123] In one aspect, the selector is a flat element, preferably made of metal.
[0124] In one aspect, the selector exhibits a base portion configured for oscillating around
an axis tangent to a horizontal circumference with its center in the central axis.
[0125] In one aspect, the selector exhibits an abutment portion at a distance from the base
portion, pointing towards the central axis and configured for directly or indirectly
acting upon the shaped sinker.
[0126] In one aspect, the selector has at least one tooth radially pointing outwards, i.e.
on the side opposed to the central axis, and configured for interacting with the selecting
actuator.
[0127] In one aspect, the guiding ring comprises a circular track extending around the central
axis.
[0128] In one aspect, each selector, preferably the base portion of each selector, is slidingly
engaged into the circular track so as to rotate together with said at least one shaped
sinker.
[0129] In one aspect, the knockover sinker is a flat element, preferably made of metal.
[0130] In one aspect, the knockover sinker comprises a main body and the respective pin
is arranged above the main body.
[0131] In one aspect, the main body lies basically in a plane.
[0132] In one aspect, the main body comprises a horizontal flat bar and a vertical flat
upright developing from the horizontal flat bar, wherein the pin is arranged on an
upper end of the flat upright.
[0133] In one aspect, the butt of the knockover sinker is flat and extends vertically from
the flat bar.
[0134] In one aspect, the butt of the knockover sinker is placed at a distance from a radially
outer end of the main body of the knockover sinker.
[0135] In one aspect, the butt of the knockover sinker points upwards.
[0136] In one aspect, when the knockover sinker is associated to the shaped sinker, or to
the right shaped sinker and to the left shaped sinker, in the respective groove, the
butt of the knockover sinker is radially placed between the butt and the protrusion
of the shaped sinker.
[0137] In one aspect, each knockover sinker is operatively associated to a respective selector.
[0138] In one aspect, the selector of the knockover sinker is movable, preferably oscillating,
in a radial plane between a rest position and an operating position.
[0139] In one aspect, in the operating position the selector of the knockover sinker acts
directly or indirectly upon the knockover sinker so as to deviate the butt of the
knockover sinker along a trajectory of the first guide.
[0140] In one aspect, the knockover sinker further comprises a spring arranged above the
pin and configured with making different stitches, preferably terry stitches.
[0141] In one aspect, the machine comprises a plurality of pushing units, each associated
to a selector and to said at least one shaped sinker.
[0142] In one aspect, in the operating position the selector rests against the pushing unit
and the pushing unit is configured for pushing against said at least one shaped sinker.
The use of the pushing units, which are operatively placed between the selectors and
the shaped sinkers, allows the selectors to indirectly act upon the shaped sinkers.
[0143] In one aspect, the machine comprises a plurality of pushing units, each associated
to a selector of a knockover sinker.
[0144] In one aspect, the pushing unit is a flat element, preferably made of metal.
[0145] In one aspect, the guiding ring comprises a third guide extending around the central
axis and defining a plurality of trajectories.
[0146] In one aspect, each pushing unit exhibits a butt that is or can be engaged with the
third guide.
[0147] In one aspect, the pushing unit comprises a horizontal flat bar, wherein the butt
is positioned on a radially outer end of the horizontal flat bar.
[0148] In one aspect, the butt of the pushing unit is flat and extends vertically from the
horizontal flat bar.
[0149] In one aspect, the butt of the pushing unit points upwards.
[0150] In one aspect, the pushing unit has an abutment surface facing the central axis and
configured for resting against the respective shaped sinker or knockover sinker.
[0151] In one aspect, the pushing unit is housed in the radial groove together with the
respective knockover sinker and with said at least one shaped sinker.
[0152] In one aspect, a first assembly made up of the knockover sinker, of the right shaped
sinker, of the left shaped sinker and of the respective pushing units (one for the
right shaped sinker and one for the left shaped sinker or only one acting both against
the right shaped sinker and against the left shaped sinker) is housed in one of the
radial grooves.
[0153] In one aspect, the abutment surface of the pushing unit is placed near the butt of
said pushing unit.
[0154] In one aspect, said abutment portion of the respective selector faces a radially
outer end of the pushing unit, preferably of the horizontal flat bar of said pushing
unit.
[0155] In one aspect, the abutment portion of the selector is sized so as to rest both against
the pushing unit associated to the right shaped sinker and against the pushing unit
associated to the left shapes sinker, preferably simultaneously or almost simultaneously.
[0156] In one aspect, a part of the pushing unit, preferably the horizontal flat bar of
the pushing unit, is placed below the respective shaped sinker and/or knockover sinker,
preferably of the horizontal flat bar of said shaped sinker and/or knockover sinker.
[0157] In one aspect, said at least one selecting actuator comprises at least one selecting
lever movable between a first position, in which it lies at a distance from the selectors,
and a second position, in which it interferes with the selectors moving in front of
the selecting actuator when the crown rotates with respect to the guiding ring and
around the central axis, so as to move the selectors from the rest position to the
operating position.
[0158] In one aspect, the selecting actuator is of magnetic or piezoelectric type.
[0159] In a further aspect thereof, the present invention relates to a second assembly comprising
a group of metal flat parts which can slide radially in a respective radial groove
as well as one with respect to the other with at least one shaped sinker according
to claim 1.
[0160] In one aspect, the second assembly comprises an interstitch-knockover sinker, a right
shaped sinker, a left shaped sinker, two pushing units, one associated to the right
shaped sinker and the other one to the left shaped sinker, and a selector for each
of the pushing units.
[0161] In one aspect, one out of two grooves of the plurality of radial grooves houses a
respective second assembly. In one aspect, said plurality of radial grooves includes
a continuous alternation of a first and a second assembly, along the whole circumferential
development of the crown.
[0162] In one aspect, the interstitch-knockover sinker comprises a respective main body
shaped as a horizontal flat bar oriented as the radial groove, i.e. along a radial
direction, and a vertical flat upright developing from the horizontal flat bar.
[0163] In one aspect, a pin develops from a front side of the vertical flat upright towards
the central axis when the second assembly is properly mounted to the machine.
[0164] In one aspect, the interstitch-knockover sinker further comprises a vertical tooth
developing above said upright. In one aspect, the tooth develops rising from the top
of the upright.
[0165] In one aspect, the tooth has a front surface configured for retaining, or "knocking
over" technically speaking, the interstitch loaded and stretched by the protrusions
of the right shaped sinker and of the left shaped sinker.
[0166] In one aspect, the tooth is configured for retaining, by means of the front surface,
the interstitch carried by the protrusions of the right shaped sinker and of the left
shaped sinker during their backward motion made so as to place the interstitch one
or more adjacent needles so as to form an open work.
[0167] In one aspect, the front surface of the tooth is configured from preventing, during
the backward motion of the right and left shaped sinkers so as to form an open work,
the interstitch from being drawn radially backwards, towards the outside of the crown
of the sinkers.
[0168] In one aspect, the front surface of the tooth is configured for pushing forward the
interstitch on the protrusions, during the backward motion of the right and left shaped
sinkers so as to form an open work, so that the interstitch is spread at its maximum
on the protrusions themselves.
[0169] In one aspect, the front surface of the tooth is configured for pushing forward the
interstitch on the protrusions, during a forward motion of the interstitch-knockover
sinker (towards the central axis).
[0170] In one aspect, the front surface points towards the central axis.
[0171] In one aspect, the front surface is basically vertical, i.e. it develops parallel
to the central axis.
[0172] In one aspect, the tooth has a rear surface, opposed to the front surface.
[0173] In one aspect, the rear surface points towards the outside to the crown of the sinkers.
[0174] In one aspect, the tooth develops starting (below) from a base integral with the
top of the upright, and ends above with a free end (or tip).
[0175] In one aspect, the tooth is shaped so that, with the second assembly positioned in
the respective groove, it rises above from the upper resting plane of the upright
of each of the two right and left shaped sinkers belonging to the same assembly and
placed on the sides of the interstitch-knockover sinker.
[0176] In one aspect, the rear surface is rounded off or inclined so as to reduce the overall
rear size of the tooth, preferably to avoid contacts with further elements of the
crown of the sinkers, e.g. control cams.
[0177] In one aspect, the tooth develops above the upright so as to be higher than the pin.
[0178] In one aspect, the interstitch-knockover sinker comprises a flat butt extending vertically
upwards from the horizontal flat bar and at a distance from a radially outer end (with
respect to the central axis) of the horizontal flat bar.
[0179] In one aspect, the interstitch-knockover sinker is made up of a single flat metal
part, e.g. a cut part.
[0180] In one aspect, the first assembly and the second assembly share the same right shaped
sinker and the same left shaped sinker, and differ in the central element of the assembly,
which is the knockover sinker in the first assembly and the interstitch-knockover
sinker in the second assembly.
[0181] In one aspect, in the second assembly the right shaped sinker and the left shaped
sinker have their respective protrusions laterally displaced in opposed directions
with respect to their main body and with respect to the interstitch-knockover sinker
placed between them.
[0182] In an aspect thereof, the present invention relates to an assembly of flat parts
for a circular knitting machine, the assembly comprising:
- a knockover sinker or an interstitch-knockover sinker, provided with a pin configured
for cooperating with the needles of a knitting machine and with a butt designed to
cooperated with suitable driving means of the knitting machine so as to cause a shifting
movement of the knockover sinker or interstitch-knockover sinker, in a radial direction
with respect to a central axis of the knitting machine;
- at least one shaped sinker according to one or more of the above aspects, the shaped
sinker being movable with respect to the knockover sinker or interstitch-knockover
sinker;
wherein the assembly is configured for being housed in a respective radial groove
of a crown arranged around a needle-holding cylinder of the knitting machine, so that
said at least one shaped sinker lies beside said knockover sinker or interstitch-knockover
sinker,
said at least one shaped sinker and said knockover sinker or interstitch-knockover
sinker being movable radially, in an independent manner, in the respective radial
groove.
[0183] In one aspect, the assembly comprises a group of flat metal parts designed to slide
radially in a respective radial groove and one with respect to the other, too, the
assembly comprising an interstitch-knockover sinker, a right shaped sinker and a left
shaped sinker.
[0184] In an independent aspect thereof, the present invention also relates to a method
for manufacturing knitted fabric using a machine according to one or more of the preceding
aspects.
[0185] In an independent aspect thereof, the present invention also relates to a use, in
a knitting machine, of a shaped sinker according to one or more of the preceding aspects,
for manufacturing open words in a knitted fabric. Further characteristics and advantages
shall be more evident from the detailed description of a preferred embodiment of a
knockover sinker, known as "shaped sinker", and of a circular knitting machine, in
particular for manufacturing open-work knitted fabric, comprising such a sinker, according
to the present invention.
Description of the drawings
[0186] This description shall be made below with reference to the accompanying drawings,
provided to a merely indicative and therefore non-limiting purpose, in which:
- Figure 1 shows a perspective view of a possible embodiment of a shaped sinker, for
knitting machines, according to the present invention;
- Figure 2 shows a side view of the shaped sinker of Figure 1;
- Figure 3 shows a plan view, from above, of the shaped sinker of Figure 1;
- Figure 4 shows a magnified view of a portion of the shaped sinker of Figure 1;
- Figure 5 is a magnified view of a portion of the side view of Figure 2;
- Figure 6 shows an exemplary, perspective view of a right shaped sinker and of a left
shaped sinker, according to the present invention, placed one beside the other;
- Figure 7 shows a plan view, from above, of the shaped sinkers of Figure 6;
- Figure 8 shows a portion of a circular knitting machine according to the present invention
with some parts removed for better showing others;
- Figure 9 shows a different, partially sectioned view of the portion of Figure 8;
- Figure 10 shows an exploded view of a first assembly of elements belonging to the
machine as in the preceding figures;
- Figure 11 shows the assembly of Figure 10 with the elements associated to one another;
- Figure 12 shows an exploded view of a second assembly of elements belonging to the
machine as in the preceding figures, which can be seen in Figure 9;
- Figure 13 shows the assembly of Figure 12 with the elements associated to one another.
Detailed description
[0187] With reference to the figures mentioned, and in particular to Figures 8 and 9, the
numeral 100 globally designates a portion of a knitting head of a circular knitting
machine according to the present invention. The circular knitting machine shown is
a machine configured for manufacturing fabrics with intarsia motifs (intarsia machine
or argyle machine). The circular knitting machine comprises a basement, not shown
since it is of known type, constituting the supporting structure of the machine, and
said knitting head 100 is mounted onto the basement.
[0188] The knitting head 100 is equipped with a needle-holding cylinder 101, with a plurality
of needles N mounted onto the needle-holding cylinder 101, and with control means,
not shown, apt to selectively actuate the needles N so as to enable the production
of a knitted fabric. The needle-holding cylinder 101 is usually mounted in vertical
position onto the basement, with the needles N arranged vertically and protruding
beyond an upper edge of the needle-holding cylinder 101.
[0189] As is known, the needle-holding cylinder 101 has a plurality of longitudinal grooves
obtained on a radially outer surface of the needle-holding cylinder 101. The longitudinal
grooves are arranged around a central axis X (vertical) of the needle-holding cylinder
101 and develop parallel to said central axis X. Each longitudinal groove houses a
respective needle N and a respective drive chain (comprising a group of flat parts).
Actuating cams are arranged as a casing around the needle-holding cylinder 101 and
lie facing the radially outer surface of the cylinder 101 and thus the longitudinal
grooves and the drive chains. These actuating cams are defined e.g. by plates and/or
grooves arranged on an inner surface of the casing.
[0190] In one embodiment, the casing of the actuating cams is basically stationary, whereas
the needle-holding cylinder 101 rotates (with a continuous or alternating motion in
both directions) around the central axis X by means of a suitable motor, so as to
generate a relative rotational motion between the drive chains and the actuating cams
and turn the rotational motion of the needle-holding cylinder 101 into an axial motion
of the needles N in order to manufacture knitted fabric by means of the said needles
N.
[0191] The machine further comprises a crown 102 arranged around the needle-holding cylinder
101 and having a plurality of radial grooves 103 that are open on a radially inner
edge of the crown 102, i.e. towards the central axis X. The crown 102 is moved in
rotation around the central axis X together with the needle-holding cylinder 101 (since
it is integral therewith), e.g. by means of the same motor.
[0192] Suitable devices, not shown, feed the yarns to be knitted on one or more yarn feeding
points (known as feeds) usually arranged above the needle-holding cylinder 101. The
circular intarsia knitting machine shown comprises four yarn feeds, each one configured
for working with a respective group of needles N arranged along an arc of circle (e.g.
a 90° arc) by means of an alternating rotary motion of the needles N around the central
axis X. The four feeds cooperate to form every knitted course by rotating in both
directions.
[0193] The circular knitting machine will be described further on; a shaped sinker according
to the present invention is now described in detail.
[0194] With reference to the figures mentioned, and in particular to Figures 1-7, the numeral
1 globally designates a shaped sinker for knitting machines, according to the present
invention.
[0195] First of all, the shaped sinker 1 is configured in particular for manufacturing open-work
knitted fabrics.
[0196] As shown by way of example in the figures, the shaped sinker 1 comprises a main body
2 shaped like a horizontal flat bar and designed to be slidingly housed inside a radial
groove 103 of the sinker-holding crown 102 of the knitting machine so as to move radially
in a controlled manner inside the groove.
[0197] The main body 2 has a main longitudinal development and extends between a rear portion
(or end) 2A and a front portion (or end) 2B.
[0198] The shaped sinker comprises an upright 3 shaped like a vertical flat element and
developing vertically, i.e. rising, from the main body 2 near or on the front portion
2B. As an alternative, the upright may develop vertically in an intermediate position
between the rear portion 2A and the front portion 2B.
[0199] The upright 3 ends on top with an upper portion 4 defining an upper resting plane
30 designed to receive one or more yarns resting thereupon during stitch formation.
[0200] The main body 2 and the upright 3 preferably lie on one lying plane G of the shaped
sinker. The shaped sinker 1 further comprises a protrusion 6 rising from the upper
portion 4 of the upright 3 and developing on the upright 3 side facing the front portion
2B of the main body 2 (i.e. on a front side 3A of the upright).
[0201] The protrusion 6 has on top a sliding plane 60.
[0202] The protrusion 6 protrudes from the upper portion 4 of the upright 3 so that the
sliding plane 60 of the protrusion 6 is placed forward with respect to the upper resting
plane 30 of the upright 3, according to a direction pointing to the front end 2B of
the main body 2.
[0203] The protrusion 6 is offset or inclined laterally with respect to the upright 3 of
the shaped sinker 1, from which it rises.
[0204] The protrusion 6 is configured for loading and stretching an interstitch and arrange
it on an adjacent needle of the knitting machine so as to form an open work.
[0205] In one aspect, a needle is present between each pair of adjacent grooves: in each
groove the shaped sinker are configured, thanks to their protrusion, for stretching
and expanding the interstitch so as to move it to the needles close to the groove,
i.e. the needles placed on the sides of the groove (one on the right and one on the
left). Thus the adjacent needle picks up the interstitch transferred from the shaped
sinker and an open work in the fabric can be manufactured.
[0206] The sliding plane 60 of the protrusion 6 is at least partially lowerec downwards,
i.e. towards the main body 2, with respect to the upper resting plane 30 of the upright
3.
[0207] The sliding plane 60 of the protrusion 6 is configured for receiving thereon one
or more yarns when loading and stretching the interstitch during open work formation.
[0208] In the framework of the present invention, the terms "offset laterally" or "inclined"
means that the protrusion 6 is bent or curved laterally with respect to the upright
3, in particular with respect to the upper portion 4 of the upright 3.
[0209] In one aspect, the protrusion is inclined or angled with respect to the upright.
[0210] The protrusion 6 is offset or inclined laterally with respect to the upright 3 so
as not to lie on the aforesaid lying plane G of the shaped sinker.
[0211] Preferably, the sliding plane 60, lowered with respect to the upper resting plane
30 of the upright 3, develops in a continuous manner with respect to the upper resting
plane 30, a connecting step 61 being present, downwards, in the transition from the
upper resting plane 30 to the sliding plane 60.
[0212] Preferably, the step 61 is rounded off or connected so that the transition from the
upper resting plane 30 to the sliding plane 60 takes place without discontinuity between
the surface of the upper resting plane and the surface of the sliding plane.
[0213] Thus the yarn, during the radial translation of the shaped sinker 1 in the respective
groove 103, may move from the upper resting plane 30 to the sliding plane 60 of the
protrusion 6 sliding on these planes, maintaining a continuous contact with the surface
of the upper resting plane and the surface of the sliding plane.
[0214] Preferably, the upper resting plane 30 is a planar surface, i.e. lying on one, preferably
horizontal plane, and the sliding plane 60 is a respective surface at least partially
lowered downwards, i.e. towards the main body 2 of the shaped sinker 1.
[0215] Preferably, the resting plane 30 is a planar surface parallel to the development
of the main body 2 of the shaped sinker 1.
[0216] The term "lowered" means that the sliding plane 60 of the protrusion 6 is vertically
lower than the upper resting plane 30 of the upper portion 4 of the upright 3, i.e.
closer to the main body 2 of the shaped sinker 1.
[0217] Preferably, the protrusion 6 is configured so that, in use, the backward movement
of the shaped sinker 1, carrying a yarn on the resting surface 30 of the upright 3,
causes the passage of the yarn on the protrusion 6 which, being offset laterally,
loads and stretches the interstitch so as to arrange it on an adjacent needle. The
sliding plane 60, lowered with respect to the upper resting plane 30, is configured
for counterbalancing/containing the increase in tension on the yarn caused by the
stretching introduced by the lateral offset of the protrusion 6, so as to maintain
a correct and/or constant tension of the interstitch when forming the open work.
[0218] Preferably, the structure, e.g. the respective shape or vertical height, of the resting
plane 30 and the sliding plane 60 is configured for counterbalancing the stretching
caused by the lateral offset of the protrusion 6, so as to maintain a correct length
of the interstitch when forming the open work.
[0219] Preferably, the sliding plane 60 lowered with respect to the upper resting plane
30 is configured for reducing the tension and/or pressure exerted by the interstitch,
during loading, on the protrusion 6.
[0220] Preferably, the sliding plane 60 is lowered with respect of the upper resting plane
30 of an amount of at least 0.1 mm or at least 0.3 mm or at least 0.5 mm or at least
1 mm or at least 2 mm.
[0221] Preferably, the protrusion 6 has a base 62, connected to the front side 3A of the
upper portion of the upright 3, from which the protrusion 6 itself develops and protrudes
as far as an end tip 63 of the protrusion, opposed to said base 62.
[0222] Preferably, the end tip 63 of the protrusion is free and points to the front part
2B of the shaped sinker 1.
[0223] Preferably, the offset or inclination of the protrusion 6 with respect to the upright
3 (i.e. with respect to the lying plane G) is obtained by bending the protrusion itself
on its base 62 so that the protrusion forms an angle with the upright. The bend at
the base of the protrusion makes the whole protrusion advancing outside with respect
to the upright, i.e. with an angle with respect to the lying plane G (see e.g. Figure
3).
[0224] Preferably, the sliding plane 60 of the protrusion 6, lowered with respect to the
upper resting plane 30 of the upright 3, is made like an inclined plane 64 downwards,
developing in a continuous manner from the base 62 of the protrusion to the end tip
63.
[0225] Preferably, the inclination of the sliding plane 60 of the protrusion 6 increases
from the base 62 to the end tip 63, so that the lowering of the sliding plane, with
respect to the resting plane 30, is greater towards the end tip 63.
[0226] Preferably, the aforesaid inclination of the sliding plane 60 can be constant or
variable along the development of the sliding plane itself.
[0227] Preferably, in the sliding plane 60 of the protrusion 6, made like an inclined plane
64 downwards, the inclination points to the main body 2, looking at the shaped sinker
from a lateral position (like e.g. in Figures 2 and 5). Preferably, the lateral offset
of the protrusion 6 with respect to the lying plane G of the shaped sinker 1 increases
from the base 62 to the end tip 63 of the protrusion, i.e. the protrusion 6 gets progressively
away along the protrusion 6 itself, from the base to the end tip.
[0228] Preferably, the protrusion 6 being bent with respect to the lying plane G so as to
get progressively away from the lying plane itself towards the end tip 63, the stretching
of the interstitch placed on the sliding plane 60 increases progressively as the shaped
sinker moves backward, the tension on the yarn increasing at the same time when loading
it onto the protrusion, and the downward inclination of the sliding plane 60 is configured
for retrieving and counterbalancing gradually the progressive increase in tension
on the yarn caused by the stretching introduced by the lateral offset of the protrusion
6, so as to maintain a correct and/or constant tension of the interstitch while forming
the open work.
[0229] In other words, as the protrusion 6, during the backward motion of the shaped sinker
1, expands the interstitch and progressively increases the tension on the yarn, the
inclined plane 64 of the protrusion 6 counterbalances the increase in tension that
would be introduced without a lowering or inclination of the sliding plane 60 of the
protrusion.
[0230] Preferably, the end tip 63 comprises a stopping portion 65, raised with respect to
a lower end of the sliding plane 60.
[0231] Preferably, the stopping portion 65 represents a mechanical abutment at the end of
the sliding plane 60, configured for stopping the sliding of the yarn at the end of
the protrusion 6 and retaining the yarn and preventing it from detaching from the
sliding plane and separating from the protrusion.
[0232] Preferably, the stopping portion 65 is made like a projection on the end tip 63 of
the protrusion, raised with respect to the sliding plane 60.
[0233] Preferably, the protrusion 6 may be offset or inclined laterally, with respect to
the upright, to the right or to the left with respect to the lying plane G of the
shaped sinker 1.
[0234] Traditionally, looking at the lying plane G in a direction pointing towards the front
end 2B of the shaped sinker 1, a left and a right side of the horizontal main boy
and of the vertical upright can be defined, the protrusion being offset or inclined
laterally to the right when it develops advancing from the right side, or vice versa
being offset or inclined laterally to the left when it develops advancing from the
left side.
[0235] The shaped sinker shown by way of example in Figures 1-5 has its protrusion 6 offset
or inclined to the right. Conversely, Figures 6 and 7 show a pair of shaped sinkers
1: in each figure, the highest sinker has its protrusion offset or inclined to the
right, whereas the lowest sinker has its protrusion offset or inclined to the left.
[0236] "Right" and "left" shaped sinkers will be disclosed later in the present description.
[0237] Preferably, the protrusion 6 develops, from its base 62 to its end tip 63, starting
from the upright 3 and advancing (though offset laterally) towards the front end 2B
of the shaped sinker 1.
[0238] Preferably, the end tip 63 of the protrusion 6 or the stopping portion 65 is bent
with respect to the sliding plane 60 in a direction approaching the lying plane G
of the shaped sinker. In other words, the end tip may be inclined in an opposed direction
with respect to the inclination of the protrusion at the base. In this case the protrusion
6 has a first bend, towards the outside of the sinker, at the base 62, and a second
bend, towards the lying plane, at or short before the end tip 63. In this embodiment,
as shown by way of example in the figures (see in particular Figure 3), the protrusion
6 globally takes a plan shape slightly similar to a Z", i.e. with a double bend.
[0239] According to the preferred embodiment shown in the figures, the shaped sinker 1 comprises
a fin 70 placed behind the upper portion 4 of the upright 3, i.e. on the upright 3
side opposed to the side from which the protrusion develops. The fin 70 has on top
a supporting plane 71.
[0240] Preferably, the fin 70 can be positioned so that the supporting plane 71 of the fin
is placed backward with respect to the upper resting plane 30 of the upright 3, according
to a direction towards the rear end 2A of the main body 2.
[0241] Preferably, the fin 70 of the shaped sinker 1 rises from the upper portion 4 of the
upright 3 and develops from the upright side facing the rear portion 2A of the main
body 2.
[0242] Preferably, the fin 70 develops from the upright 3 side opposed to the side from
which the protrusion develops, i.e. the fin develops from a rear side 3B of the upright
3, opposed to the front side 3A.
[0243] Preferably, the fin 70 protrudes on the back from the upper portion 4 of the upright
3 so that the supporting plane 71 is placed backward with respect to the upper resting
plane 30 of the upright 3, according to a direction towards the rear end 2A of the
main body 2.
[0244] Preferably, the fin 70 protrudes on the back from the upright 3 so that the supporting
plane 71 of the fin develops in a continuous manner from the resting plane 30 of the
upright 3.
[0245] Preferably, the supporting plane 71 of the fin 70 and the resting plane 30 of the
upright 3 are coplanar and have the same vertical height.
[0246] Preferably, the supporting plane 71 of the fin 70 and the resting plane 30 of the
upright 3 are aligned along a longitudinal direction.
[0247] Preferably, the supporting plane 71 of the fin 70 and the resting plane 30 of the
upright 3 are both horizontal surfaces, preferably parallel to the underlying main
body 2 of the shaped sinker 1.
[0248] Preferably, the sliding plane 71 of the fin 70 is not lowered with respect to the
resting plane 30 of the upright 3. Preferably, the supporting plane 71 of the fin
and the resting plane 30 of the upright globally form a summit surface, preferably
horizontal, of the upright and of the whole shaped sinker.
[0249] According to the present invention, a shaped sinker 1 in use:
- during a knitting operation combining an open work with the use of at least one yarn
having at least one of its portions with a low trajectory, i.e. passing at a lower
height that the height of the resting plane 30 of the upright;
- for making the open work the shaped sinker 1, in order to transfer the interstitch
to one of the adjacent needles, has to perform a backward motion during which the
rear side 3B of the upright 3 might push, deviate or interfere with the yarn portion
having a low trajectory;
- the fin 70 is configured for supporting, by means of the supporting plane 71, the
aforesaid at least one yarn portion having a low trajectory, by letting said trajectory
pass above the supporting plane 71 of the fin and preventing the rear side 3B of the
upright 3 from pushing or interfering with said at least one yarn portion during the
backward shifting movement of the shaped sinker 1.
[0250] In the framework of the present invention, "yarn having a low trajectory" means a
yarn, or at least a portion thereof, fed below a yarn guiding element (typically known
as a "box" or "
throat plate").
[0251] It should be noticed that a yarn fed below the guiding element is a yarn with at
least one of its portions having a trajectory passing below said element, although
the thread guide feeding it may also be placed above said element.
[0252] Preferably, the yarn having at least one portion with a low trajectory is a yarn
destined to take part in a plated operation.
[0253] The yarn having at least one portion with a low trajectory can be one of the two
yarns taking part in a two-yarn plated operation.
[0254] Preferably, the fin 70 is configured for working, supporting a yarn by means of the
supporting plane 71, when the shaped sinker 1 makes an open work and at the same time
adjacent needles make plain or terrycloth knitted structures.
[0255] It should be noticed that "fin" means a portion of the shaped sinker 1 protruding
on the back from the upper portion 4 of the upright 3 or positioned behind the upper
portion of the upright.
[0256] In a possible embodiment, as shown in the figures, the fin 70 can be offset or inclined
laterally with respect to the upright 3 of the shaped sinker, from which it rises.
[0257] Preferably, the fin 70 is inclined or angled with respect to the upright.
[0258] Preferably, the fin 70 is offset or inclined laterally with respect to the upright
3 so as not to lie on the lying plane G of the shaped sinker 1.
[0259] Preferably, the lateral offset of the fin 70 with respect to the lying plane G of
the shaped sinker increases from the base of the fin to an end tip of the fin, i.e.
the fin gets progressively away from the lying plane G along the fin itself.
[0260] Preferably, the lateral offset of the fin 70 is configured for avoiding interferences
with a further sinker placed laterally.
[0261] Preferably, the fin 70 is offset or inclined laterally, with respect to the upright
3, in the same offset direction of the protrusion 6 of the same shaped sinker.
[0262] In other words, the lateral offsets of the protrusion 6 and of the fin 70 with respect
to upright 3 correspond; if the protrusion is inclined to the right, the fin is inclined
to the right, too, and vice versa if the protrusion is inclined to the left, the fin
is inclined to the left, too.
[0263] Preferably, the lateral inclination of the fin 70 has a smaller angle with respect
to the respective angle of lateral inclination of the protrusion 6. In other words,
the protrusion 6 is preferably more inclined laterally, with respect to the upright
3, than the fin 70.
[0264] As an alternative, the fin can be coplanar with the upright as well as lie on the
lying plane of the shaped sinker. Preferably, the main body 2, the upright 3 and the
protrusion 6 are made as one piece, thus forming a single-piece shaped sinker.
[0265] Preferably, as shown in the figures, the fin 70 is made as one piece with the upright
3.
[0266] Preferably, the shaped plate 1 is made completely as one piece.
[0267] In a possible alternative embodiment (not shown), the fin can be a distinct element
from the upright, placed behind the upper portion of the upright, so that the supporting
plane of the fin is placed backward and aligned with respect to the upper plane of
the upright.
[0268] Should the fin be a distinct element from the upright (and in general from the body
of the shaped sinker), it can be moved through suitable means independently from the
main body and the upright of the sinker, e.g. so as to be positioned behind the upright
when the supporting plane has to be arranged behind the upper resting plane.
[0269] Preferably, the shaped sinker 1 has in all its parts a basically constant thickness.
[0270] Preferably, the shaped sinker 1 is wholly made as a flat, thin plate, its length
and height being greater than its thickness.
[0271] The shaped sinker 1 can be made up of a single flat metal part, e.g. a cut, stamped
and/or bent part. Preferably, the sinker comprises a pin 80 shaped as a horizontal
flat element developing horizontally, i.e. rising, from an intermediate position of
the upright 3 between the upper portion 4 of the upright 3 and a lower coupling point
of the upright to the main body 2.
[0272] The pin rises from the front side 3A of the upright 3 pointing towards the end of
the front portion 2B of the main body 2.
[0273] Preferably, the pin 80 lies on said lying plane G of the shaped sinker.
[0274] Preferably, the protrusion 6 is vertically superimposed above the pin 80.
[0275] Preferably, the pin 80 develops parallel to the front portion 2B of the main body
2, vertically above it. Preferably, the main body, the upright and the pin lie on
one lying plane G of the shaped sinker.
[0276] The use of the shaped sinkers 1 according to the present invention in a circular
knitting machine will now be described. Let us observe Figures 8-11.
[0277] As stated above, the knitting machine comprises a knitting head 100, a needle-holding
cylinder 101, a plurality of needles N and a crown 102 provided with a plurality of
radial grooved 103.
[0278] According to a possible embodiment of the present invention, one or more of the radial
grooves 103 houses a first assembly A made up of a plurality of metal flat parts that
can slide radially in the respective radial groove 103 and also one with respect to
the other. This first assembly A, better shown in Figures 10 and 11, comprises a knockover
sinker 7, a right shaped sinker 8, a left shaped sinker 9, two pushing units 10, one
associated to the right shaped sinker 8 and the other one to the left shaped sinker
9, and a selector 11 for each of the pushing units 10.
[0279] The knockover sinker 7 comprises a main body shaped as a horizontal flat bar 12 oriented
as the groove 103, i.e. along a radial direction, and a vertical flat upright developing
from the horizontal flat bar 12. A pin 13 having a per se known shape is arranged
on an upper end of the vertical flat upright and faces the central axis X when the
assembly is properly mounted to the machine. The knockover sinker 7 further comprises
a flat butt 14 extending vertically upwards from the horizontal flat bar 12 and at
a distance from a radially outer end (with respect to the central axis X) of the horizontal
flat bar 12. The knockover sinker 7 is made up of a single flat metal part, e.g. a
cut part.
[0280] As disclosed above, the right shaped sinker 8 and the left shaped sinker 9 are both
embodiments of a shaped sinker 1 according to the present invention. In further detail:
- the right shaped sinker 8 has its protrusion 6 offset laterally to the right with
respect to its upright 3;
- the left shaped sinker 9 has its protrusion 6 offset laterally to the left with respect
to its upright 3.
[0281] The right shaped sinker 8 comprises a main body shaped as a horizontal flat bar 15
and a vertical flat upright developing from the horizontal flat bar 15. The protrusion
6 of the right shaped sinker 8 extends like a sort of arm, when the first assembly
A is properly mounted to the machine, towards the central axis X and is offset laterally
with respect to the lying plane of the respective main body. The right shaped sinker
8 further comprises a flat butt 17 extending vertically upwards from the horizontal
flat bar 15 and is placed near a radially outer end (with respect to the central axis
X) of the horizontal flat bar 15. The right shaped sinker 8 is made up of a single
flat metal part, e.g. a cut, stamped and/or bent part.
[0282] The left shaped sinker 9 comprises the same elements as the right shaped sinker 8
and is structurally identical with or corresponding to the right shaped sinker 8,
except for the fact that the respective protrusion 6 is offset/displaced, with respect
to its main body, to the opposed side. The right shaped sinker 8 and the left shaped
sinker 9 therefore have respective protrusions 6 that are laterally displaced in opposed
directions with respect to its main body and with respect to the knockover sinker
7 placed between them.
[0283] When the first assembly A is properly mounted in the respective groove 103, the right
shaped sinker 8 and the left shaped sinker 9 are arranged on opposed sides of the
respective knockover sinker 7 (Figure 11). The right shaped sinker 8 and the left
shaped sinker 9 exhibit respective protrusions 6 that are laterally offset towards
opposed sides of said knockover sinker 7 and placed above the pin 13 of the respective
knockover sinker 7. Moreover, the butt 14 of the knockover sinker 7 is radially placed
between the butt 17 and the protrusion 6 of the respective shaped sinkers 8, 9.
[0284] Preferably, the two pushing units 10 of the first assembly A are identical with one
another. Each of the pushing units 10 comprises a horizontal flat bar 18 and a butt
19 that is flat, is placed on a radially outer end, with respect to the central axis
X, of the horizontal flat bar 18 and extends vertically upwards. The pushing unit
10 further has an abutment surface 20 facing the central axis X and configured for
resting against the respective shaped sinker 8, 9. The abutment surface 20 of the
pushing unit 10 is placed near the butt 19 of said pushing unit 10, i.e. near said
radially outer end of the horizontal flat bar 18. More particularly, a portion of
the pushing unit placed near said radially outer end extends vertically upwards and
defines the abutment surface 20 and the respective butt 19. Also the pushing unit
10 is made up of a single flat metal part, e.g. a cut part.
[0285] When the first assembly A is properly mounted in the respective groove 103 (Figure
11), the horizontal flat bar 18 of each pushing unit 10 is located under and in contact
with the flat bar 15 of the respective shaped sinker 8, 9 and the abutment surface
20 faces the radially outer end of the respective shaped sinker 8, 9. The knockover
sinker 7 is placed between the first and the second shaped sinker 8, 9.
[0286] Each of the two selectors 11 is a metal, basically flat element mainly developing
vertically when it is properly mounted in the machine. The selector 11 has a base
portion 21 with a rounded profile and configured for oscillating around an axis tangent
to a horizontal circumference with its center in the central axis X. The selector
11 lies and oscillates in a radial plane. The selector 11 further exhibits an abutment
portion 22 at a distance from the base portion 21, pointing towards the central axis
X and configured for indirectly acting upon the respective shaped sinker 8, 9 through
the respective pushing unit 10. The selector 11 further has a tooth 23 located on
an edge of the flat element radially opposed to the abutment portion 22 and radially
pointing outwards, i.e. to the opposed side with respect to the central axis X.
[0287] The abutment portion 22 has a rounded projection configured and sized for resting
against the radially outer end of the horizontal flat bar 18 of the respective pushing
unit 10 of the first assembly A.
[0288] Each selector 11 is oscillating in the radial plane between a rest position and an
operating position. In the rest position, the abutment portion 22 of the selector
11 is located in a radially outer position and does not get in contact with the respective
pushing unit 10. In the operating position, the selector 11 is rotated towards the
central axis X, the abutment portion 22 of the selector 11 is located in a radially
inner position and is configured for resting and pushing against the respective pushing
unit 10 towards the central axis X. The pushing units 10 are configured in their turn
for pushing the shaped sinkers 8, 9.
[0289] The switching from the rest to the operating position of the selector 11 is caused
by selecting actuators (not shown, e.g. of known type) acting upon a tooth 23 of the
selector 11. By way of example, the number of the selecting actuators can be the same
as the feeds of the knitting machine. The selecting actuators are stationary with
respect to the casing and are preferably arranged at the same angular distance around
the crown 102. Preferably, the selecting actuators comprise a plurality of selecting
levers (e.g. of know type), each lever movable between a first position, in which
it lies at a distance from the selectors, and a second position, in which it interferes
with the selectors moving in front of the selecting actuator when the crown rotates
with respect to the guiding ring and around the central axis, so as to move the selectors
from the rest position to the operating position.
[0290] In one aspect, the selecting actuator is of magnetic or piezoelectric type.
[0291] Also the knockover sinker 7 may be driven by a respective pushing unit 10' which
may interact with a respective selector 11', which are wholly similar to the pushing
unit 10 and to the selector 11. For this reason the same elements have been referred
to with the same reference numerals with an apostrophe.
[0292] The selector 11' exhibits a base portion 21' and an abutment portion 22' at a distance
from the base portion 21', pointing towards the central axis X and configured for
indirectly acting upon the respective knockover sinker 7 through the respective pushing
unit 10'.
[0293] The selector 11' further has a tooth 23' located on an edge of the flat element radially
opposed to the abutment portion 22' and radially pointing outwards, i.e. to the opposed
side with respect to the central axis X. The abutment portion 22' has a rounded projection
configured for resting against the radially outer end of the respective horizontal
flat bar 18' of the pushing unit 10'.
[0294] Each of the pushing units 10' further exhibits a respective butt 19' and a respective
abutment surface 20' configured for resting against the respective knockover sinker
7.
[0295] The knockover sinker 7 is further provided with a spring 31 so as to make terry stitches
in cooperation with the needles N.
[0296] As can be observed, the position of the tooth 23' of the selector 11' differs from
the one of the teeth 23 of the two selectors 11, so that the selecting actuators can
catch the teeth 23 or as an alternative the teeth 23' depending on whether the first
assembly A should work for making a hole in the fabric or make a terry stitch, respectively.
[0297] A guiding ring 90, consisting of one or more parts, is operatively associated to
the crown 102. The guiding ring is coaxial with the central axis X and is stationary
like the casing, i.e. the circular crown 102 is rotatable with respect to the guiding
ring around the central axis X. The selecting actuators are therefore stationary with
respect to the guiding ring and laterally face the crown. In one embodiment, the guiding
ring 90 has a plurality of guides extending around the central axis X and configured
for engaging with the above described metal parts of the first assembly A. These guides
are for instance grooves delimited by cams.
[0298] The butt 14 of the knockover sinker 7 of each first assembly A engages into a first
guide 91 obtained in an upper portion of the guiding ring 90. The first guide 91 is
configured for radially moving the knockover sinkers 7 along the respective radial
grooves 103 when the circular crown 102 rotates with respect to the guiding ring 90
and around the central axis X.
[0299] A further object of the present invention will now be described. Let us observe Figures
12 and 13.
[0300] According to a further possible embodiment of the present invention, these figures
show a second assembly B comprising a group of metal flat parts which can slide radially
in a respective radial groove 103 as well as one with respect to the other. This second
assembly B comprises an "interstitch-knockover" sinker (referred to with the numeral
7'), a right shaped sinker 8, a left shaped sinker 9, two pushing units 10, one associated
to the right shaped sinker 8 and the other one to the left shaped sinker 9, and a
selector 11 for each of the pushing units 10. Note that by way of example, in Figures
8 and 9 a groove out of two (of said plurality of radial grooves 103) houses a respective
second assembly B.
[0301] Considering the plurality of radial grooves 103, a possible embodiment might envisage
a continuous alternation of a first assembly A and of a second assembly B, along the
whole circumferential development of the crown 102.
[0302] The interstitch-knockover sinker 7' comprises a respective main body shaped as a
horizontal flat bar 12' oriented as the groove 103, i.e. along a radial direction,
and a vertical flat upright 50 developing from the horizontal flat bar 12'.
[0303] Preferably, a pin 13' having a per se known shape develops from a front side of the
vertical flat upright towards the central axis X when the second assembly B is properly
mounted to the machine.
[0304] The interstitch-knockover sinker 7' further comprises a vertical tooth 51 developing
above said upright 50. Preferably, the tooth 51 develops rising from the top of the
upright 50.
[0305] Preferably, the tooth 51 has a front surface 52 configured for retaining, or in technical
jargon "knocking over", the interstitch loaded and stretched by the protrusions 6
of the right shaped sinker 8 and of the left shaped sinker 9. Preferably, the tooth
51 is configured for retaining, by means of the front surface 52, the interstitch
carried by the protrusions of the right shaped sinker 8 and of the left shaped sinker
9 during their backward motion made so as to place the interstitch one or more adjacent
needles so as to form an open work.
[0306] Preferably, the front surface 52 of the tooth 51 is configured from preventing the
interstitch, during the backward motion of the right and left shaped sinkers 8 and
9 so as to form an open work, from being drawn radially backwards, towards the outside
of the crown of the sinkers.
[0307] Preferably, the front surface 52 of the tooth 51 is configured for pushing forward
the interstitch on the protrusions 6, during the backward motion of the right 8 and
left 9 shaped sinkers so as to form an open work, so that the interstitch is spread
at its maximum on the protrusions themselves.
[0308] Preferably, the front surface 52 of the tooth 51 is configured for pushing forward
the interstitch on the protrusions 6, during a forward motion of the interstitch-knockover
sinker 7' (towards the central axis X).
[0309] Preferably, the front surface 52 points towards the central axis X.
[0310] Preferably, the front surface 52 is basically vertically, i.e. it develops parallel
to the central axis X.
[0311] Preferably, the tooth 51 has a rear surface 53, opposed to the front surface 52.
[0312] Preferably, the rear surface 53 points towards the outside to the crown of the sinkers.
[0313] Preferably, the tooth 51 develops starting (below) from a base integral with the
top of the upright 50, and ends above with a free end (or tip).
[0314] Preferably, the tooth 51 is shaped so that, with the second assembly B positioned
in the respective groove 103, it rises above from the upper resting plane 30 of the
upright 3 of each of the two right 8 and left 9 shaped sinkers belonging to the same
assembly B and placed on the sides of the interstitch-knockover sinker 7'. "Rises
above" means that the tooth 51 ends with its tip at a higher vertical level than the
upper resting plane 30.
[0315] Preferably, the rear surface 53 is rounded off or inclined so as to reduce the overall
rear size of the tooth 51 and avoid contacts with further elements of the cover of
the sinkers, e.g. control cams.
[0316] Preferably, the tooth 51 develops above the upright so as to be higher than the pin
13'.
[0317] The interstitch-knockover sinker 7' comprises a flat butt 14' extending vertically
upwards from the horizontal flat bar 12' and at a distance from a radially outer end
(with respect to the central axis X) of the horizontal flat bar 12'. The interstitch-knockover
sinker 7' is made up of a single flat metal part, e.g. a cut part.
[0318] As disclosed above, the right shaped sinker 8 and the left shaped sinker 9 are both
embodiments of a shaped sinker 1 according to the present invention. In further detail:
- the right shaped sinker 8 has its protrusion 6 offset laterally to the right with
respect to its upright 3;
- the left shaped sinker 9 has its protrusion 6 offset laterally to the left with respect
to its upright 3.
[0319] Note that the right shaped sinker 8 and the left shaped sinker 9 of Figures 12 and
13 are the same as the respective right shaped sinker 8 and left shaped sinker 9 of
Figures 10 and 11. In other words, the first assembly A and the second assembly B
share the same right 8 an left 9 shaped sinkers, and differ in the central element
of the assembly, which is the knockover sinker 7 in the first assembly A and the interstitch-knockover
sinker 7' in the second assembly B. The right and left sinkers can operate correctly
both in a first assembly A and in a second assembly B.
[0320] In the second assembly B, the right shaped sinker 8 and the left shaped sinker 9
have the respective protrusions 6 that are laterally displaced in opposed directions
with respect to their main body and with respect to the interstitch-knockover sinker
7' placed between them.
[0321] When the second assembly B is properly mounted in the respective groove 103, the
right shaped sinker 8 and the left shaped sinker 9 are arranged on opposed sides of
the respective interstitch-knockover sinker 7' (Figure 13). The right shaped sinker
8 and the left shaped sinker 9 exhibit respective protrusions 6 that are laterally
offset towards opposed sides of said knockover interstitch-sinker 7' and placed above
the pin 13' of the respective interstitch-knockover sinker 7'. Moreover, the butt
14' of the interstitch-knockover sinker 7', with the assembly mounted to the machine,
is radially placed between the butt 17 and the protrusion 6 of the respective shaped
sinkers 8, 9.
[0322] As shown by way of example, through in a non-limiting manner, in Figures 12 and 13
the second assembly B may comprises pushing units 10 that are similar to the ones
described with reference to the first assembly A.
[0323] When the second assembly B is properly mounted in the respective groove 103, the
horizontal flat bar 18 of each pushing unit 10 is located under and in contact with
the flat bar 15 of the respective shaped sinker 8, 9 and the abutment surface 20 faces
the radially outer end of the respective shaped sinker 8, 9. The interstitch-knockover
sinker 7' is placed between the first and the second shaped sinker 8, 9.
[0324] The second assembly B may further comprises selectors 11 that are similar to the
ones described with reference to the first assembly A.
[0325] Preferably, the butt 14' of the interstitch-knockover sinker 7' of each second assembly
B engages into the first guide 91 obtained in an upper portion of the guiding ring
90. The first guide 91 is configured for radially moving the interstitch-knockover
sinkers 7' along the respective radial grooves 103 when the circular crown 102 rotates
with respect to the guiding ring 90 and around the central axis X.
[0326] Figures 8 and 9 show by way of example an embodiment in which a groove 103 out of
two grooves houses a respective second assembly B; single knockover sinkers are present
in the remaining grooves. However, it should be considered that, in a further embodiment,
a groove out of two may house a respective first assembly A as an alternative to the
second assembly B.
[0327] In accordance with further possible embodiments, the plurality of grooves may house,
alternating one after the other, an assembly A and an assembly B. In this case, each
assembly A would be placed between two assemblies B and vice versa, according to an
alternation along the circumferential development of the crown. In the framework of
the present invention, "knockover sinker" may refer to and identify, depending on
the embodiment, both the knockover sinker 7 (as shown in Figures 10 and 11 and being
part of the first assembly A) and the interstitch-knockover sinker 7' (as shown in
Figures 12 and 13 and being part of the second assembly B).
[0328] Preferably, the first assembly A or the second assembly B may comprise one or more
separators (not shown), placed between two adjacent elements of the assembly itself.
In further detail, when mounting the assembly (A or B) into the respective radial
groove of the crown of the sinkers, a plate-like separator should be installed between
the left shaped sinker and the knockover (or interstitch-knockover) sinker, and a
further separator should be installed between the right shaped sinker and the knockover
(or interstitch-knockover) sinker. The separator is a flat element, basically a thin
plate, placed between two adjacent elements of the assembly so as to keep them separate
and not in contact with each other. The separator, differently from shaped or knockover
sinkers, is inserted into the groove in a fixed position, and cannot move during the
operation of the knitting machine. In particular, the separator cannot shift inside
the groove and is blocked on both sides in the groove itself. Conversely, in each
assembly the right and left shaped sinkers and the central knockover (or interstitch-knockover)
sinker shift inside the groove one with respect to the other when manufacturing the
knitted fabric. The separators placed between adjacent elements of the assembly maintain
the correct position thereof and prevent the translational motion of an element (e.g.
a shaped sinker or the knockover sinker) from dragging in an undesired manner the
adjacent element.
[0329] Preferably, an assembly includes:
- a first single-piece separator having a given length and shape, in the groove, so
as to separate the left shaped sinker, the respective pushing unit and the respective
selector of the knockover (or interstitch-knockover) sinker, the respective pushing
unit and the respective selector (if present);
- a second single-piece separator having a given length and shape, in the groove, so
as to separate the right shaped sinker, the respective pushing unit and the respective
selector of the knockover (or interstitch-knockover) sinker, the respective pushing
unit and the respective selector (if present).
[0330] An electronic control unit, not shown, is operatively connected to the motor or motors
causing the rotation of the needle-holding cylinder 101 and of the crown 102, to the
selecting actuators and to further actuating units, if any, of the machine. The electronic
control unit is configured/programmed for commanding the motor or motors and the selecting
actuators and said further actuating units, if any, of the machine. In particular,
the electronic control unit is configured/programmed for selectively moving the levers
of the selecting actuators so as to move the selectors 11, 11' singularly from the
rest position to the operating position.
[0331] In a possible embodiment, the machine comprises only first assemblies circumferentially
placed one beside the other, and each of said first assemblies can comprise one or
two shaped sinkers 8, 9 for forming the open work. The present invention achieves
important advantages both from a structural and a functional point of view. First
of all, the Applicant has found out that the invention enables to solve the problems
listed above related to the prior art and thus to obtain the intended aims.
[0332] In particular, the structure of the protrusion (with lowered and/or inclined sliding
plane) advantageously enables to:
- correctly manage yarn tension when loading the interstitch for making open work;
- counterbalance the increase in tension on the yarn caused by the stretching introduced
by the protrusion;
- counterbalance the stretching caused by the protrusion (6) while maintaining a correct
length of the interstitch when making open work;
- reduce the pressure exerted by the interstitch upon the protrusion and the whole sinker.
[0333] Globally, the shaped sinker enables to effectively manufacture open-work knitted
fabrics with the most different features.
[0334] Moreover, the structure of the fin (creating the rear supporting plane with respect
to the resting plane of the upright) advantageously enables to:
- support yarns having at least a low trajectory portion, e.g. those fed below the throat
plate, thus preventing the rear side of the upright from pushing, deviating or interfering
with these yarns during the shifting motion of the shaped sinker;
- correctly operate when the shaped sinker makes an open work and at the same time adjacent
needles make plain or terrycloth knitted structures;
- correctly manage also the trajectory (typically low at least in one portion thereof)
of the yarns contributing to a plated operation.
[0335] The shaped sinker allows to manufactured high-quality open-work knitted fabrics,
which may also be highly complex, in relatively short times.
[0336] A further advantage of the shaped sinker of the present invention consists in that
it may be implemented in a simple and cost-effective way and be used in existing knitting
machines, too.
[0337] Moreover, the knitting machine according to the present invention (preferably an
intarsia machine or argyle machine) is able to manufacture open-work knitted fabrics
and at the same time to integrate further motifs and/or effects on the knitted fabric,
preferably without having to reconfigure the machine itself or parts of it from a
mechanical point of view. Moreover, the shaped sinker according to the present invention
represents an alternative solution to prior art. More to the point, by programming
the control unit commanding the selecting actuators it is easily possible to make
the desired selectors operating and thus manufacture complex open-work and/or terrycloth
knitted fabrics with the most different features.
[0338] The combination of shaped sinkers, for making open work, and knockover sinkers allows
to manufacture plain, terrycloth and open-work knitted fabric on the same machine
with high flexibility and with the possibility of an alternating motion. The machine
according to the invention further allows to make open work and/or terry stitches
and also other types of motifs with high speeds, thus dramatically reducing manufacturing
times for even complex and sophisticated tubular knitted fabrics.
1. A shaped sinker (1) for knitting machines, the shaped sinker being configured in particular
for manufacturing open-work knitted fabrics and comprising:
- a main body (2) shaped like a horizontal flat bar and destined to be slidingly housed
inside a radial groove (103) of a sinker-holding crown (102) of a knitting machine
so as to move radially in a controlled manner inside the groove, the main body (2)
having a main longitudinal development and extending between a rear portion (2A) and
a front portion (2B);
- an upright (3) shaped like a vertical flat element and developing vertically, i.e.
rising, from said main body (2) near or at said front portion (2B) or in an intermediate
position between the rear portion (2A) and the front portion (2B),
wherein said main body (2) and said upright (3) lie on one lying plane (G) of the
shaped sinker (1); the shaped sinker (1) further comprising a protrusion (6) rising
from said upper portion (4) of the upright (3) and developing on the upright side
facing the front portion (2B) of the main body (2), the shaped sinker being characterized in that said said upright (3) ends on top with an upper portion (4) defining an upper resting
plane (30) destined to receive one or more yarns resting thereupon during stitch formation;
and
wherein said protrusion (6) has on top a sliding plane (60), the protrusion (6) protruding
from the upper portion (4) of the upright (3) so that the sliding plane (60) of the
protrusion is placed forward with respect to the upper resting plane (30) of the upright
(3), according to a direction pointing to the front portion of the main body, wherein
said protrusion (6) is laterally offset or inclined with respect to the lying plane
(G) of the upright (3) of the shaped sinker (1) from it rises, the protrusion (6)
being configured for loading and stretching an interstitch and arranging it on an
adjacent needle of the knitting machine so as to form an open work,
and wherein said sliding plane (60) of the protrusion (6) is at least partially lowered
downwards, i.e. towards the main body (2), with respect to the upper resting plane
(30) of the upright (3), the sliding plane (60) of the protrusion being configured
for receiving thereon one or more yarns when loading and stretching the interstitch
during open work formation.
2. The shaped sinker (1) according to claim 1, wherein the protrusion (6) is bent, inflected
or curved laterally with respect to the upright (3), in particular with respect to
the upper portion (4) of the upright (3), and/or wherein the protrusion (6) can be
offset or inclined laterally, with respect to the upright, to the right or to the
left with respect to the lying plane (G) of the shaped sinker.
3. The shaped sinker (1) according to claim 1 or 2, wherein the sliding plane (60), lowered
with respect to the upper resting plane (30) of the upright (3), develops in a continuous
manner with respect to the upper resting plane (30), by means of a connecting step
(61) present, downwards, in the transition from the upper resting plane to the sliding
plane, and wherein said connecting step (61) is rounded off or connected so that the
passage from the upper resting plane (30) to the sliding plane (60) takes place without
discontinuity between the surface of the upper resting surface (30) and the surface
of the sliding plane (60), and/or wherein the resting plane (30) is a planar surface,
i.e. lying on one, preferably horizontal plane.
4. The shaped sinker (1) according to any one of the preceding claims, wherein the protrusion
(6) is configured so that, in use, the backward movement of the shaped sinker (1),
carrying a yarn on the resting surface (30) of the upright, causes the passage of
the yarn on the protrusion (6) which, being offset laterally, loads and stretches
the interstitch so as to arrange it on an adjacent needle, wherein the sliding plane
(60), lowered with respect to the upper resting plane (30), is configured for counterbalancing/containing
the increase in tension on the yarn caused by the stretching introduced by the lateral
offset of the protrusion (6), so as to maintain a correct and/or constant tension
of the interstitch when forming the open work, and/or wherein the structure, e.g.
the respective shape or vertical height, of the resting plane (30) and the sliding
plane (60) is configured for counterbalancing the stretching caused by the lateral
offset of the protrusion (6), so as to maintain a correct length of the interstitch
when forming the open work, and/or wherein the sliding plane (60) lowered with respect
to the upper resting plane (30) is configured for reducing the tension and/or pressure
exerted by the interstitch, during loading, on the protrusion (6).
5. The shaped sinker (1) according to any one of the preceding claims, wherein the protrusion
(6) has a base (62), connected to a front side (3A) of the upper portion (4) of the
upright (3), from which the protrusion itself develops and protrudes as far as an
end tip (63) of the protrusion, opposed to said base (62), and wherein the sliding
plane (60) of the protrusion, lowered with respect to the upper resting plane (30)
of the upright, is made like an inclined plane (64) downwards, developing in a continuous
manner from the base (62) of the protrusion to the end tip (63), and wherein the inclination
of the sliding plane (60) of the protrusion (6) increases from the base (62) to the
end tip (63), so that the lowering of the sliding plane (60), with respect to the
resting plane (30), is greater towards the end tip.
6. The shaped sinker (1) according to the preceding claim, wherein the lateral offset
of the protrusion (6) with respect to the lying plane (G) of the shaped sinker increases
from the base (62) to the end tip of the protrusion (63), i.e. the protrusion (6)
gets progressively away along the protrusion itself, from the base (62) to the end
tip (63), and/or wherein, the protrusion (6) being bent with respect to the lying
plane (G) so as to get progressively away from the lying plane itself towards the
end tip (63), the stretching of the interstitch placed on the sliding plane (60) increases
progressively as the shaped sinker moves backward, the tension on the yarn increasing
at the same time when loading it onto the protrusion, and the downward inclination
of the sliding plane (60) is configured for retrieving and counterbalancing gradually
the progressive increase in tension on the yarn caused by the stretching introduced
by the lateral offset of the protrusion (6), so as to maintain a correct and/or constant
tension of the interstitch while forming the open work, and/or as the protrusion (6),
with the shaped sinker moving backward, widens the interstitch and increases progressively
the tension on the yarn, the inclined plane (64) of the protrusion counterbalances
the increase in tension that would be introduced without a lowering or an inclination
of the sliding plane of the protrusion (6), and/or wherein the end tip (63) comprises
a stopping portion (65), raised with respect to a lower end of the sliding plane (60),
and wherein the stopping portion (65) represents an abutment at the end of the sliding
plane, configured for stopping the sliding of the yarn at the end of the protrusion
(6) and retaining the yarn and preventing it from detaching from the sliding plane
(60) and separating from the protrusion.
7. The shaped sinker (1) according to any one of the preceding claims, comprising a fin
(70) placed behind the upper portion (4) of the upright (3), i.e. on the upright side
opposed to the side from which the protrusion (6) develops, wherein the fin (70) has
on top a supporting plane (71), and wherein the fin (70) can be positioned so that
its supporting plane (71) is placed backward with respect to the upper resting plane
(30) of the upright (3), according to a direction towards the rear end (2A) of the
main body (2).
8. The shaped sinker (1) according to claims 5 and 7, wherein the fin (70) rises from
the upper portion (4) of the upright (3) and develops from the upright side facing
the rear portion of the main body, and/or wherein the fin (70) develops from a rear
side (3B) of the upright, opposed to the front side (3A) from which the protrusion
(6) develops, and/or wherein the fin (70) protrudes on the back from the upper portion
(4) of the upright (3) so that said supporting plane (71) is placed backward with
respect to the upper resting plane (30) of the upright (3), according to a direction
towards the rear end (2A) of the main body (2), and/or wherein the fin (70) protrudes
on the back from the upright (3) so that the supporting plane (71) of the fin develops
in a continuous manner from the resting plane (30) of the upright, and/or wherein
the supporting plane (71) of the fin (70) and the resting plane (30) of the upright
(3) are coplanar and have the same vertical height.
9. The shaped sinker (1) according to claim 7 or 8, wherein:
- during a knitting operation combining an open work with the use of at least one
yarn having at least one low trajectory portion, i.e. passing at a lower height that
the height of the resting plane (30) of the upright (3);
- for making the open work the shaped sinker, in order to transfer the interstitch
to one of the adjacent needles, has to perform a backward motion during which the
rear side (3B) of the upright (3) might push, deviate or interfere with the yarn having
said at least one low trajectory portion;
- the fin (70) is configured for supporting, by means of said supporting plane (71),
said at least one yarn having said at least one low trajectory portion, by letting
said trajectory pass above the supporting plane of the fin and preventing the rear
side of the upright from pushing or interfering with said at least one yarn during
the backward shifting movement of the shaped sinker, and wherein the yarn having at
least one low trajectory portion is a yarn fed below a yarn guiding element, typically,
a "box", and/or wherein said yarn having at least one low trajectory portion is a
yarn design to take part in a plated design, and/or wherein the fin (70) is configured
for working, supporting a yarn by means of said supporting plane (71), when the shaped
sinker (1) makes an open works and at the same time adjacent needles make plain or
terrycloth knitted structures.
10. The shaped sinker (1) according to any claims 7 to 9, wherein the supporting plane
(71) of the fin (70) and the resting plane (30) of the upright (3) are both horizontal
surfaces, preferably parallel to the underlying main body of the shaped sinker, and/or
wherein the supporting plane (71) of the fin (70) is not lowered with respect to the
resting plane (30) of the upright (3), and/or wherein the supporting plane (71) of
the fin and the resting plane (30) of the upright are aligned along a longitudinal
direction, i.e. the fin (70) is coplanar with the upright (3) and lies on said lying
plane (G) of the shaped sinker, or wherein the fin (70) is offset or inclined laterally
with respect to the upright (3), from it rises, so as not to lie on said lying plane
(G) of the shaped sinker (1), and/or wherein the lateral offset of the fin (70) is
configured for avoiding interferences with a further sinker placed laterally, and/or
wherein the fin (70) is offset or inclined laterally, with respect to the upright
(3), in the same offset direction of the protrusion (6).
11. The shaped sinker (1) according to any claims 7 to 10, wherein the main body (2),
the upright (3) and the protrusion (6) are made as one piece, thus forming a single-piece
shaped sinker, and/or wherein the fin (70) is made as one piece with said upright
(3), or wherein the fin (70) is a distinct element from the upright (3), placed behind
the upper portion of the upright, so that the supporting plane (71) of the fin is
placed backward and aligned with respect to the upper plane of the upright, and/or
wherein the shaped sinker (1) is completely made as one piece, and/or wherein the
shaped sinker (1) has in all its part a constant thickness.
12. An assembly (A; B) of flat parts of a circular knitting machine, the assembly comprising:
- a knockover sinker (7) or an interstitch-knockover sinker (7'), provided with a
pin (13, 13') configured for cooperating with the needles (N) of a knitting machine
and with a butt (14, 14') destined to cooperate with suitable driving means of the
knitting machine so as to cause a shifting movement of the knockover sinker (7) or
interstitch-knockover sinker (7'), in radial direction with respect to a central axis
(X) of the knitting machine;
- at least one shaped sinker (1) according to any one of the preceding claims, the
shaped sinker (1) being movable with respect to the knockover sinker (7) or interstitch-knockover
sinker (7');
wherein the assembly (A; B) is configured for being housed in a respective radial
groove (103) of a crown (102) arranged around a needle-holding cylinder (101) of the
knitting machine, so that said at least one shaped sinker (1) lies beside said knockover
sinker (7) or interstitch-knockover sinker (7'), said at least one shaped sinker (1)
and said knockover sinker (7) or interstitch-knockover sinker (7') being movable radially,
in an independent manner, in the respective radial groove (103).
13. The assembly according to the preceding claim comprising a group of flat metal parts
destined to slide radially in a respective radial groove (103) and one with respect
to the other, too, the assembly comprising an interstitch-knockover sinker (7'), a
right shaped sinker (8) and a left shaped sinker (9);
wherein the interstitch-knockover sinker (7') comprises a respective main body shaped
like a horizontal flat bar (12') oriented as the groove (103), and a vertical flat
upright (50) developing from the horizontal flat bar (12'), the interstitch-knockover
sinker (7') further comprising a vertical tooth (51) developing above said upright
(50), wherein the tooth (51) has a front surface (52) configured for retaining, or
"knocking over", the interstitch loaded and stretched by the protrusions (6) of the
right shaped sinker (8) and of the left shaped sinker (9),
and wherein the tooth (51) is configured for retaining, by means of the front surface
(52), the interstitch carried by the protrusions of the right shaped sinker (8) and
of the left shaped sinker (9) during their backward motion made so as to place the
interstitch one or more adjacent needles so as to form an open work, and wherein the
front surface (52) of the tooth (51) is configured from preventing, during the backward
motion of the right and left shaped sinker so as to form an open work, the interstitch
from being drawn radially backwards, and wherein the front surface (52) of the tooth
(51) is configured for pushing forward the interstitch on the protrusions (6), during
the backward motion of the right (8) and left (9) shaped sinkers so as to form an
open work, so that the interstitch is spread at its maximum on the protrusions themselves.
14. A circular knitting machine for manufacturing open-work knitted fabric, comprising:
- a needle-holding cylinder (101) having a plurality of longitudinal grooves arranged
around a central axis (X) of the needle-holding cylinder (101);
- a plurality of needles (N), each being housed in a respective longitudinal groove;
- at least one yarn feed operatively associated to the needles (N);
- a crown (102) arranged around the needle-holding cylinder (101) and having a plurality
of radial grooves (103);
- at least one guiding ring (90) operatively associated to the crown (102), wherein
the crown (102) is rotatable with respect to the guiding ring (90) and around the
central axis (X);
- a plurality of knockover sinkers (7) and/or of interstitch-knockover sinkers (7'),
each housed in one of the radial grooves (103) and radially movable in the respective
radial groove (103), each knockover sinker (7) or interstitch-knockover sinker (7')
having a pin (13, 13') configured for cooperating with the needles (N) and a butt
(14, 14') engaged with a first guide (91) obtained in the guiding ring (90) and developing
around the central axis (X); wherein the first guide (91) is configured for moving
the knockover sinker (7) or the interstitch-knockover sinker (7') radially along the
respective radial groove (103) when the crown (102) rotates with respect to the guiding
ring (91) and around the central axis (X);
wherein the machine comprises at least one shaped sinker (1) according to any one
of the claims 1 to 11, beside a respective knockover sinker (7) or interstitch-knockover
sinker (7'), wherein the shaped sinker (1) is movable with respect to the knockover
sinker (7) or interstitch-knockover sinker (7').
15. The knitting machine according to claim 14, wherein said at least one shaped sinker
(1) comprises a right shaped sinker (8) and a left shaped sinker (9) arranged on opposed
sides of the respective knockover sinker (7) or interstitch-knockover sinker (7'),
and wherein:
- the right shaped sinker (8) has its protrusion offset laterally to the right with
respect to the respective upright;
- the left shaped sinker (9) has its protrusion offset laterally to left the with
respect to the respective upright; and wherein the right shaped sinker (8) and the
left shaped sinker (9) have their protrusions offset laterally to opposed sides of
said knockover sinker (7) or interstitch-knockover sinker (7') and preferably located
above the respective knockover sinker (7) or interstitch-knockover sinker (7'), and
wherein the protrusions (6) are configured for loading and stretching the interstitch
and arrange it on two adjacent needles placed on opposed sides of the respective knockover
sinker (7) or interstitch-knockover sinker (7') and form the open work,
and wherein said at least one shaped sinker (1) is housed in one of the radial grooves
(103) together with the respective knockover sinker (7) or interstitch-knockover sinker
(7'), and wherein one of the radial grooves (103) houses:
- a first assembly (A) made up of the knockover sinker (7) and of the shaped sinker
(1), or right shaped sinker (8) and left shaped sinker (9); or
- a second assembly (B) made up of the interstitch-knockover sinker (7') and of the
shaped sinker (1), or right shaped sinker (8) and left shaped sinker (9).
1. Formplatine (1) für Strickmaschinen, wobei die Formplatine insbesondere zum Herstellen
von Lochgewirk-Strickgeweben eingerichtet ist und umfasst:
- einen Hauptkörper (2), welcher wie ein horizontaler flacher Stab geformt und dazu
vorgesehen ist, gleitbar innerhalb einer radialen Nut (103) einer Platine-Haltekrone
(102) einer Strickmaschine aufgenommen zu sein, um sich so in einer gesteuerten Weise
innerhalb der Nut radial zu bewegen, wobei der Hauptkörper (2) eine Haupt-Längenausdehnung
aufweist und sich zwischen einem hinteren Abschnitt (2A) und einem vorderen Abschnitt
(2B) erstreckt;
- einen Ständer (3), welcher wie ein vertikales flaches Element geformt ist und sich
vertikal, d.h. ansteigend, von dem Hauptkörper (2) in der Nähe von oder an dem vorderen
Abschnitt (2B) oder in einer Zwischenposition zwischen dem hinteren Abschnitt (2A)
und dem vorderen Abschnitt (2B) erstreckt,
wobei der Hauptkörper (2) und der Ständer (3) an einer Liegeebene (G) der Formplatine
(1) liegen; die Formplatine (1) ferner einen Vorsprung (6) umfasst, welcher von dem
oberen Abschnitt (4) des Ständers (3) ansteigt und sich an der Ständerseite erstreckt,
welche zu dem vorderen Abschnitt (2B) des Hauptkörpers (2) weist,
wobei die Formplatine dadurch gekennzeichnet ist, dass der Ständer (3) an einer Oberseite mit einem oberen Abschnitt (4) endet, welcher
eine obere Ruheebene (30) definiert, welche dazu vorgesehen ist, ein oder mehrere
Garne aufzunehmen, welche darauf während einer Maschenbildung ruhen; und
wobei der Vorsprung (6) an einer Oberseite eine Gleitebene (60) aufweist, wobei der
Vorsprung (6) von dem oberen Abschnitt (4) des Ständers (3) vorsteht, so dass die
Gleitebene (60) des Vorsprungs nach vorne bezüglich der oberen Ruheebene (30) des
Ständers (3) gemäß einer Richtung platziert ist, welche zu dem vorderen Abschnitt
des Hauptkörpers zeigt,
wobei der Vorsprung (6) bezüglich der Liegeebene (G) des Ständers (3) der Formplatine
(1) lateral versetzt oder geneigt ist, von welcher er ansteigt, wobei der Vorsprung
(6) dazu eingerichtet ist, eine Zwischenmasche zu laden und zu strecken und sie an
einer benachbarten Nadel der Strickmaschine anzuordnen, um so ein Lochgewirk zu bilden,
und wobei die Gleitebene (60) des Vorsprungs (6) wenigstens teilweise nach unten abgesenkt
ist, d.h. in Richtung des Hauptkörpers (2), bezüglich der oberen Ruheebene (30) des
Ständers (3), wobei die Gleitebene (60) des Vorsprungs dazu eingerichtet ist, daran
ein oder mehrere Garne aufzunehmen, wenn die Zwischenmasche während des Bildens des
Lochgewirks geladen und gestreckt wird.
2. Formplatine (1) nach Anspruch 1, wobei der Vorsprung (6) lateral bezüglich des Ständers
(3) gebogen, abgelenkt oder gekrümmt ist, insbesondere bezüglich des oberen Abschnitts
(4) des Ständers (3), und/oder wobei der Vorsprung (6) lateral bezüglich des Ständers
nach rechts oder nach links bezüglich der Liegeebene (G) der Formplatine versetzt
oder geneigt sein kann.
3. Formplatine (1) nach Anspruch 1 oder 2, wobei sich die Gleitebene (60), welche bezüglich
der oberen Ruheebene (30) des Ständers (3) abgesenkt ist, in einer kontinuierlichen
Weise bezüglich der oberen Ruheebene (30) erstreckt, mittels einer Verbindungsstufe
(61), welche nach unten in dem Übergang von der oberen Ruheebene zu der Gleitebene
vorliegt, und wobei die Verbindungsstufe (61) derart abgerundet oder verbunden ist,
dass der Durchgang von der oberen Ruheebene (30) zu der Gleitebene (60) ohne Diskontinuität
zwischen der Fläche der oberen Ruhefläche (30) und der Fläche der Gleitebene (60)
stattfindet, und/oder wobei die Ruheebene (30) eine planare Fläche ist, d.h. an einer
vorzugsweise horizontalen Ebene liegt.
4. Formplatine (1) nach einem der vorhergehenden Ansprüche, wobei der Vorsprung (6) derart
eingerichtet ist, dass in Verwendung die Rückwärtsbewegung der Formplatine (1), welche
ein Garn an der Ruhefläche (30) des Ständers trägt, den Durchgang des Garns an dem
Vorsprung (6) veranlasst, welcher lateral versetzt die Zwischenmasche lädt und streckt,
um sie so an einer benachbarten Nadel anzuordnen, wobei die Gleitebene (60), welche
bezüglich der oberen Ruheebene (30) abgesenkt ist, dazu eingerichtet ist, die Erhöhung
einer Spannung an dem Garn auszugleichen/aufzunehmen, welche durch das Strecken verursacht
wird, welches durch den lateralen Versatz des Vorsprungs (6) eingeführt wird, um so
eine korrekte und/oder konstante Spannung der Zwischenmasche beizubehalten wenn das
Lochgewirk gebildet wird, und/oder wobei die Struktur, z.B. die entsprechende Form
oder vertikale Höhe der Ruheebene (30) und der Gleitebene (60) für ein Ausgleichen
des Streckens eingerichtet ist, welches durch den lateralen Versatz des Vorsprungs
(6) hervorgerufen wird, um so eine korrekte Länge der Zwischenmasche beizubehalten,
wenn das Lochgewirk gebildet wird, und/oder wobei die Gleitebene (60), welche bezüglich
der oberen Ruheebene (30) abgesenkt ist, dazu eingerichtet ist, die Spannung und/oder
den Druck zu reduzieren, welche/r durch die Zwischenmasche während des Ladens an dem
Vorsprung (6) ausgeübt wird.
5. Formplatine (1) nach einem der vorhergehenden Ansprüche, wobei der Vorsprung (6) eine
Basis (62) aufweist, welche mit einer vorderen Seite (3A) des oberen Abschnitts (4)
des Ständers (3) verbunden ist, von welcher sich der Vorsprung selbst erstreckt und
sich so weit wie eine Endspitze (63) des Vorsprungs gegenüber der Basis (62) erstreckt
und vorsteht, und wobei die Gleitebene (60) des Vorsprungs, welcher bezüglich der
oberen Ruheebene (30) des Ständers abgesenkt ist, wie eine geneigte Ebene (64) nach
unten hergestellt ist, welche sich in einer kontinuierlichen Weise von der Basis (62)
des Vorsprungs zu dem Spitzenende (63) erstreckt, und wobei die Neigung der Gleitebene
(60) des Vorsprungs (6) von der Basis (62) zu der Endspitze (63) zunimmt, so dass
das Absenken der Gleitebene (60) bezüglich der Ruheebene (30) größer in Richtung der
Endspitze ist.
6. Formplatine (1) nach dem vorhergehenden Anspruch, wobei der laterale Versatz des Vorsprungs
(6) bezüglich der Liegeebene (G) der Formplatine von der Basis (62) zu der Endspitze
des Vorsprungs (63) zunimmt, d.h. dass der Vorsprung (6) progressiv entlang dem Vorsprung
selbst von der Basis (62) zu der Endspitze (63) wegläuft, und/oder wobei, da der Vorsprung
(6) bezüglich der Liegeebene (G) gebogen ist, um so progressiv von der Liegeebene
selbst in Richtung der Endspitze (63) wegzulaufen, das Strecken der Zwischenmasche,
welche an der Gleitebene (60) platziert ist, progressiv zunimmt, wenn sich die Formplatine
nach hinten bewegt, die Spannung an dem Garn zu derselben Zeit zunimmt, wenn es auf
den Vorsprung geladen wird, und die Neigung der Gleitebene (60) nach unten dazu eingerichtet
ist, graduell die progressive Zunahme in der Spannung an dem Garn aufzunehmen und
auszugleichen, welche durch das Strecken hervorgerufen wird, welches durch den lateralen
Versatz des Vorsprungs (6) eingeführt wird, um so eine korrekte und/oder konstante
Spannung der Zwischenmasche beizubehalten, während das Lochgewirk gebildet wird, und/oder
wenn der Vorsprung (6) mit der sich nach hinten bewegenden Formplatine die Zwischenmasche
aufweitet und progressiv die Spannung auf das Garn erhöht, die geneigte Ebene (64)
des Vorsprungs die Zunahme in der Spannung ausgleicht, welche eingeführt werden würde
ohne ein Absenken oder eine Neigung der Gleitebene des Vorsprungs (6), und/oder wobei
die Endspitze (63) einen Stoppabschnitt (65) umfasst, welcher bezüglich einem unteren
Ende der Gleitebene (60) angehoben ist, und wobei der Stoppabschnitt (65) eine Anlage
an dem Ende der Gleitebene repräsentiert, welche dazu eingerichtet ist, das Gleiten
des Garns an dem Ende des Vorsprungs (6) zu stoppen und das Garn zurückzuhalten und
es daran zu hindern, sich von der Gleitebene (60) zu lösen und sich von dem Vorsprung
zu trennen.
7. Formplatine (1) nach einem der vorhergehenden Ansprüche, umfassend eine Rippe (70),
welche hinter dem oberen Abschnitt (4) des Ständers (3) platziert ist, d.h. an der
Ständerseite gegenüber der Seite, von welcher sich der Vorsprung (6) erstreckt, wobei
die Rippe (70) an einer Oberseite eine Trageebene (71) aufweist, und wobei die Rippe
(70) derart positioniert werden kann, dass ihre Trageebene (71) nach hinten bezüglich
der oberen Ruheebene (30) des Ständers (3) platziert ist, gemäß einer Richtung zu
dem hinteren Ende (2a) des Hauptkörpers (2) hin.
8. Formplatine (1) nach den Ansprüchen 5 und 7, wobei die Rippe (70) von dem oberen Abschnitt
(4) des Ständers (3) ansteigt und sich von der Ständerseite erstreckt, welche zu dem
hinteren Abschnitt des Hauptkörpers weist, und/oder wobei sich die Rippe (70) von
einer hinteren Seite (3B) des Ständers erstreckt, gegenüber der vorderen Seite (3A),
von welcher sich der Vorsprung (6) erstreckt, und/oder wobei die Rippe (70) an der
Hinterseite von dem oberen Abschnitt (4) des Ständers (3) vorsteht, so dass die Trageebene
(71) nach hinten bezüglich der oberen Ruheebene (30) des Ständers (3) platziert ist,
gemäß einer Richtung zu dem hinteren Ende (2A) des Hauptkörpers (2) hin, und/oder
wobei die Rippe (70) an der Hinterseite von dem Ständer (3) vorsteht, so dass sich
die Trageebene (71) der Rippe in einer kontinuierlichen Weise von der Ruheebene (30)
des Ständers erstreckt, und/oder wobei die Trageebene (71) der Rippe (70) und die
Ruheebene (30) des Ständers (3) koplanar sind und dieselbe vertikale Höhe aufweisen.
9. Formplatine (1) nach Anspruch 7 oder 8, wobei:
- während eines Strickbetriebs, welcher ein Lochgewirk kombiniert, mit der Verwendung
von wenigstens einem Garn, welches wenigstens einen Abschnitt mit niedriger Bahnkurve
aufweist, d.h. an einer niedrigeren Höhe als die Höhe der Ruheebene (30) des Ständers
(3) verläuft;
- zum Herstellen des Lochgewirks die Formplatine, um die Zwischenmasche zu einer der
benachbarten Nadeln zu transferieren, eine Bewegung nach hinten durchzuführen hat,
während welcher die hintere Seite (3B) des Ständers (3) das Garn drücken, ablenken
oder behindern kann, welches wenigstens einen Abschnitt mit niedriger Bahnkurve aufweist;
- die Rippe (70) dazu eingerichtet ist, mittels der Trageebene (71) wenigstens ein
Garn zu tragen, welches den wenigstens einen Abschnitt mit niedriger Bahnkurve aufweist,
indem die niedrige Bahnkurve über die Trageebene der Rippe laufen gelassen wird und
die hintere Seite des Ständers daran gehindert wird, das wenigstens eine Garn während
der Verschiebungsbewegung der Formplatine nach hinten zu drücken oder zu behindern,
und wobei das Garn, welches wenigstens einen Abschnitt mit niedriger Bahnkurve aufweist,
ein Garn ist, welches unter einem Garn-Führungselement zugeführt wird, typischerweise
eine "Kiste", und/oder wobei das Garn, welches wenigstens einen Abschnitt mit niedriger
Bahnkurve aufweist, ein Garndesign ist, um in einem beschlagenen Design teilzunehmen,
und/oder wobei die Rippe (70) dazu eingerichtet ist, zu arbeiten, indem ein Garn mittels
der Trageebene (71) getragen wird, wenn die Formplatine (1) ein Lochgewirk herstellt
und zur selben Zeit benachbarte Nadeln gestrickte einfache oder Frottee-Strukturen
herstellen.
10. Formplatine (1) nach einem der Ansprüche 7 bis 9, wobei die Trageebene (71) der Rippe
(70) und die Ruheebene (30) des Ständers (3) beide horizontale Flächen sind, vorzugsweise
parallel zu dem darunterliegenden Hauptkörper der Formplatine, und/oder wobei die
Trageebene (71) der Rippe (70) bezüglich der Ruheebene (30) des Ständers (3) nicht
abgesenkt ist, und/oder wobei die Trageebene (71) der Rippe und die Ruheebene (30)
des Ständers entlang einer longitudinalen Richtung ausgerichtet sind, d.h. die Rippe
(70) koplanar mit dem Ständer (3) ist und an der Liegeebene (G) der Formplatine liegt,
oder wobei die Rippe (70) bezüglich des Ständers (3), von welchem sie ansteigt, lateral
versetzt oder geneigt ist, um so nicht an der Liegeebene (G) der Formplatine (1) zu
liegen, und/oder wobei der laterale Versatz der Rippe (70) dazu eingerichtet ist,
Behinderungen mit einer weiteren Platine zu verhindern, welche lateral platziert ist,
und/oder wobei die Rippe (70) bezüglich des Ständers (3) in derselben Versatzrichtung
des Vorsprungs (6) lateral versetzt oder geneigt ist.
11. Formplatine (1) nach einem der Ansprüche 7 bis 10, wobei der Hauptkörper (2), der
Ständer (3) und der Vorsprung (6) einstückig hergestellt sind, wodurch eine einstückige
Formplatine gebildet ist, und/oder wobei die Rippe (70) einstückig mit dem Ständer
(3) hergestellt ist, oder wobei die Rippe (70) ein gesondertes Element von dem Ständer
(3) ist, welches hinter dem oberen Abschnitt des Ständers platziert ist, so dass die
Trageebene (71) der Rippe nach hinten platziert ist und bezüglich der oberen Ebene
des Ständers ausgerichtet ist, und/oder wobei die Formplatine (1) vollständig einstückig
hergestellt ist, und/oder wobei die Formplatine (1) in allen ihrer Teile eine konstante
Dicke aufweist.
12. Anordnung (A; B) von flachen Teilen einer Rundstrickmaschine, wobei die Anordnung
umfasst:
- eine Abschlagplatine (7) oder eine Zwischenmasche-Abschlagplatine (7'), welche mit
einem Stift (13, 13`) bereitgestellt ist, welcher dazu eingerichtet ist, mit den Nadeln
(N) einer Strickmaschine und mit einem Stumpf (14, 14') zusammenzuwirken, welcher
dazu eingerichtet ist, mit geeigneten Antriebsmitteln der Strickmaschine zusammenzuwirken,
um so eine Verschiebungsbewegung der Abschlagplatine (7) oder Zwischenmasche-Abschlagplatine
(7') in einer radialen Richtung bezüglich einer zentralen Achse (X) der Strickmaschine
hervorzurufen;
- wenigstens eine Formplatine (1) nach einem der vorhergehenden Ansprüche, wobei die
Formplatine (1) bezüglich der Abschlagplatine (7) oder der Zwischenmasche-Abschlagplatine
(7') bewegbar ist;
wobei die Anordnung (A; B) dazu eingerichtet ist, in einer entsprechenden radialen
Nut (103) einer Krone (102) aufgenommen zu sein, welche um einen Nadel-Haltezylinder
(101) der Strickmaschine herum angeordnet ist, so dass die wenigstens eine Formplatine
(1) neben der Abschlagplatine (7) oder der Zwischenmasche-Abschlagplatine (7') liegt,
wobei die wenigstens eine Formplatine (1) und die Abschlagplatine (7) oder Zwischenmasche-Abschlagplatine
(7') in einer unabhängigen Weise in der entsprechenden radialen Nut radial bewegbar
sind.
13. Anordnung nach dem vorhergehenden Anspruch, umfassend eine Gruppe von flachen Metallteilen,
welche dazu vorgesehen sind, radial in einer entsprechenden radialen Nut (103) und
ebenfalls das eine bezüglich dem anderen zu gleiten, wobei die Anordnung eine Zwischenmasche-Abschlagplatine
(7'), eine rechte Formplatine (8) und eine linke Formplatine (9) umfasst;
wobei die Zwischenmasche-Abschlagplatine (7') einen entsprechenden Hauptkörper umfasst,
welcher wie ein horizontaler flacher Stab (12') geformt ist, welcher wie die Nut orientiert
ist, sowie einen vertikalen flachen Ständer (50), welcher sich von dem horizontalen
flachen Stab (12') erstreckt, wobei die Zwischenmasche-Abschlagplatine (7') ferner
einen vertikalen Zahn (51) umfasst, welcher sich oberhalb des Ständers (50) erstreckt,
wobei der Zahn (51) eine vordere Fläche (52) aufweist, welche dazu eingerichtet ist,
die von den Vorsprüngen (6) der rechten Formplatine (8) und der linken Formplatine
(9) geladene und gestreckte Zwischenmasche zu halten oder "abzuschlagen",
und wobei der Zahn (51) dazu eingerichtet ist, mittels der vorderen Fläche (52) die
von den Vorsprüngen der rechten Formplatine (8) und der linken Formplatine (9) getragene
Zwischenmasche während ihrer Rückwärtsbewegung zu halten, welche ausgeführt wird,
um die Zwischenmasche an einer oder mehreren benachbarten Nadeln zu platzieren, um
ein Lochgewirk zu bilden, und wobei die vordere Fläche (52) des Zahns (51) dazu eingerichtet
ist, während der Rückwärtsbewegung der rechten und linken Formplatine, um so ein Lochgewirk
zu bilden, die Zwischenmasche daran zu hindern, radial nach hinten gezogen zu werden,
und wobei die vordere Fläche (52) des Zahns (51) dazu eingerichtet ist, die Zwischenmasche
an den Vorsprüngen (6) während der Rückwärtsbewegung der rechten (8) und linken (9)
Formplatinen nach vorne zu schieben, um so ein Lochgewirk zu bilden, so dass die Zwischenmasche
um ihr Maximum an den Vorsprüngen selbst gestreckt ist.
14. Rundstrickmaschine zum Herstellen eines Lochgewirk-Strickgewebes, umfassend:
- einen Nadel-Haltezylinder (101), welcher eine Mehrzahl von longitudinalen Nuten
aufweist, welche um eine zentrale Achse (X) des Nadel-Haltezylinders (101) herum angeordnet
sind;
- eine Mehrzahl von Nadeln (N), welche jeweils in einer entsprechenden longitudinalen
Nut aufgenommen sind;
- wenigstens eine Garnzuführung, welche betriebsmäßig den Nadeln (N) zugeordnet ist;
- eine Krone (102), welche um den Nadel-Haltezylinder (101) herum angeordnet ist und
eine Mehrzahl von radialen Nuten (103) aufweist;
- wenigstens einen Führungsring (90), welcher betriebsmäßig der Krone (102) zugeordnet
ist, wobei die Krone (102) bezüglich des Führungsrings (90) und um die zentrale Achse
(X) herum rotierbar ist;
- eine Mehrzahl von Abschlagplatinen (7) und/oder von Zwischenmasche-Abschlagplatinen
(7'), welche jeweils in einer der radialen Nuten (103) aufgenommen und radial in der
entsprechenden radialen Nut (103) bewegbar sind, wobei jede Abschlagplatine (7) oder
Zwischenmasche-Abschlagplatine (7') einen Stift (13, 13') aufweist, welcher für ein
Zusammenwirken mit den Nadeln (N) und einem Stumpf (14, 14') eingerichtet ist, welcher
mit einer ersten Führung (91) eingreift, welche in dem Führungsring (90) erhalten
ist und sich um die zentrale Achse (X) erstreckt; wobei die erste Führung (91) dazu
eingerichtet ist, die Abschlagplatine (7) oder die Zwischenmasche-Abschlagplatine
(7') radial entlang der entsprechenden radialen Nut (103) zu bewegen, wenn die Krone
(102) bezüglich des Führungsrings (91) und um die zentrale Achse (X) rotiert;
wobei die Maschine wenigstens eine Formplatine (1) nach einem der Ansprüche 1 bis
11 neben einer entsprechenden Abschlagplatine (7) oder Zwischenmasche-Abschlagplatine
(7') umfasst, wobei die Formplatine (1) bezüglich der Abschlagplatine (7) oder Zwischenmasche-Abschlagplatine
(7') bewegbar ist.
15. Strickmaschine nach Anspruch 14, wobei die wenigstens eine Formplatine (1) eine rechte
Formplatine (8) und eine linke Formplatine (9) umfasst, welche an gegenüberliegenden
Seiten der entsprechenden Abschlagplatine (7) oder Zwischenmasche-Abschlagplatine
(7') angeordnet sind, und wobei:
- die rechte Formplatine (8) ihren Vorsprung lateral nach rechts bezüglich des entsprechenden
Ständers versetzt aufweist;
- die linke Formplatine (9) ihren Vorsprung lateral nach links bezüglich des entsprechenden
Ständers versetzt aufweist;
und wobei die rechte Formplatine (8) und die linke Formplatine (9) ihre Vorsprünge
lateral zu gegenüberliegenden Seiten der Abschlagplatine (7) oder der Zwischenmasche-Abschlagplatine
(7') versetzt aufweisen und vorzugsweise oberhalb der entsprechenden Abschlagplatine
(7) oder Zwischenmasche-Abschlagplatine (7') angeordnet, und wobei die Vorsprünge
(6) dazu eingerichtet sind, die Zwischenmasche zu laden und strecken und sie an zwei
benachbarten Nadeln anzuordnen, welche an gegenüberliegenden Seiten der entsprechenden
Abschlagplatine (7) oder Zwischenmasche-Abschlagplatine (7') angeordnet sind, und
das Lochgewirk zu bilden,
und wobei die wenigstens eine Formplatine (1) in einer der radialen Nuten (103) zusammen
mit der entsprechenden Abschlagplatine (7) oder Zwischenmasche-Abschlagplatine (7')
aufgenommen ist, und wobei eine der radialen Nuten (103) aufnimmt:
- eine erste Anordnung (A), welche aus der Abschlagplatine (7) und der Formplatine
(1) oder rechten Formplatine (8) und linken Formplatine (9) aufgebaut ist; oder
- eine zweite Anordnung (B), welche aus der Zwischenmasche-Abschlagplatine (7`) und
der Formplatine (1) oder rechten Formplatine (8) und linken Formplatine (9) aufgebaut
ist.
1. Platine façonnée (1) pour machines à tricoter, la platine façonnée étant configurée
en particulier pour la fabrication de textiles tricotés à jours et comprenant :
- un corps principal (2) mis en forme comme une barre horizontale plate et destiné
à être logé de manière coulissante à l'intérieur d'une rainure radiale (103) d'une
couronne (102) de maintien de platine d'une machine à tricoter pour un déplacement
radialement d'une manière contrôlée à l'intérieur de la rainure, le corps principal
(2) ayant un développement longitudinal principal et s'étendant entre une partie arrière
(2A) et une partie avant (2B) ;
- un montant (3) mis en forme comme un élément vertical plat et se développant verticalement,
c'est-à-dire s'élevant, depuis ledit corps principal (2) près ou au niveau de ladite
partie avant (2B) ou dans une position intermédiaire entre la partie arrière (2A)
et la partie avant (2B),
dans laquelle ledit corps principal (2) et ledit montant (3) reposent sur un plan
de repos (G) de la platine façonnée (1) ;
la platine façonnée (1) comprenant en outre une protubérance (6) s'élevant depuis
ladite partie supérieure (4) du montant (3) et se développant sur le côté du montant
faisant face à la partie avant (2B) du corps principal (2), la platine façonnée étant
caractérisée en ce que ledit montant (3) se termine sur le dessus avec une partie supérieure (4) définissant
un plan de repos supérieur (30) destiné à recevoir un ou plusieurs fils reposant dessus
durant la formation de maille ; et,
dans laquelle ladite protubérance (6) présente sur le dessus un plan de coulissement
(60), la protubérance (6) faisant saillie depuis la partie supérieure (4) du montant
(3) de sorte que le plan de coulissement (60) de la protubérance est placé vers l'avant
par rapport au plan de repos supérieur (30) du montant (3), selon un sens pointant
vers la partie avant du corps principal,
dans laquelle ladite protubérance (6) est latéralement décalée ou inclinée par rapport
au plan de repos (G) du montant (3) de la platine façonnée (1) depuis laquelle il
s'élève, la protubérance (6) étant configurée pour charger et étirer une intermaille
et pour l'agencer sur une aiguille adjacente de la machine à tricoter afin de former
un jour, et
dans laquelle ledit plan de coulissement (60) de la protubérance (6) est au moins
partiellement abaissé vers le bas, c'est-à-dire vers le corps principal (2), par rapport
au plan de repos supérieur (30) du montant (3), le plan de coulissement (60) de la
protubérance étant configuré pour recevoir dessus un ou plusieurs fils lors du chargement
et de l'étirage de l'intermaille durant la formation de jour.
2. Platine façonnée (1) selon la revendication 1, dans laquelle la protubérance (6) est
fléchie, infléchie ou incurvée latéralement par rapport au montant (3), en particulier
par rapport à la partie supérieure (4) du montant (3), et/ou dans laquelle la protubérance
(6) peut être décalée ou inclinée latéralement, par rapport au montant, vers la droite
ou vers la gauche par rapport au plan de repos (G) de la platine façonnée.
3. Platine façonnée (1) selon la revendication 1 ou 2, dans laquelle le plan de coulissement
(60), abaissé par rapport au plan de repos supérieur (30) du montant (3), se développe
d'une manière continue par rapport au plan de repos supérieur (30), à l'aide d'une
étape de raccordement (61) présente, vers le bas, dans la transition depuis le plan
de repos supérieur vers le plan de coulissement, et dans laquelle ladite étape de
raccordement (61) est arrondie ou raccordée de sorte que le passage depuis le plan
de repos supérieur (30) vers le plan de coulissement (60) a lieu sans discontinuité
entre la surface de le plan de repos supérieur (30) et la surface du plan de coulissement
(60), et/ou dans laquelle le plan de repos (30) est une surface plane, c'est-à-dire
reposant sur un plan, préférablement horizontal.
4. Platine façonnée (1) selon l'une quelconque des revendications précédentes, dans laquelle
la protubérance (6) est configurée de sorte que, durant l'utilisation, le mouvement
vers l'arrière de la platine façonnée (1), portant un fil sur le plan de repos (30)
du montant, entraîne le passage du fil sur la protubérance (6) qui, lorsque décalée
latéralement, charge et étire l'intermaille afin de l'agencer sur une aiguille adjacente,
dans laquelle le plan de coulissement (60), abaissé par rapport au plan de repos supérieur
(30), est configuré pour contrebalancer/contenir l'augmentation de tension sur le
fil causée par l'étirage introduit par le décalage latéral de la protubérance (6),
afin de maintenir une tension correcte et/ou constante de l'intermaille lors de la
formation du jour, et/ou dans laquelle la structure, par exemple la forme ou la hauteur
verticale respective, du plan de repos (30) et du plan de coulissement (60) est configurée
pour contrebalancer l'étirage causé par le décalage latéral de la protubérance (6),
afin de maintenir une longueur correcte de l'intermaille lors de la formation du jour,
et/ou dans laquelle le plan de coulissement (60) abaissé par rapport au plan de repos
supérieur (30) est configuré pour réduire la tension et/ou la pression exercée par
l'intermaille, durant la charge, sur la protubérance (6).
5. Platine façonnée (1) selon l'une quelconque des revendications précédentes, dans laquelle
la protubérance (6) présente une base (62), raccordée à un côté avant (3A) de la partie
supérieure (4) du montant (3), depuis laquelle la protubérance elle-même se développe
et fait saillie aussi loin qu'une pointe d'extrémité (63) de la protubérance, opposée
à ladite base (62), et dans laquelle le plan de coulissement (60) de la protubérance,
abaissé par rapport au plan de repos supérieur (30) du montant, est en forme de plan
incliné (64) vers le bas, se développant d'une manière continue depuis la base (62)
de la protubérance vers la pointe d'extrémité (63), et dans laquelle l'inclinaison
du plan de coulissement (60) de la protubérance (6) augmente depuis la base (62) vers
la pointe d'extrémité (63), de sorte que l'abaissement du plan de coulissement (60),
par rapport au plan de repos (30), est supérieur vers la pointe d'extrémité.
6. Platine façonnée (1) selon la revendication précédente, dans laquelle le décalage
latéral de la protubérance (6) par rapport au plan de repos (G) de la platine façonnée
augmente depuis la base (62) vers la pointe d'extrémité de la protubérance (63), c'est-à-dire
que la protubérance (6) s'éloigne progressivement le long de la pointe d'extrémité
elle-même, depuis la base (62) vers la pointe d'extrémité (63), et/ou dans laquelle,
la protubérance (6) étant fléchie par rapport au plan de repos (G) afin de s'éloigner
progressivement du plan de repos lui-même vers la pointe d'extrémité (63), l'étirage
de l'intermaille placée sur le plan de coulissement (60) augmente progressivement
lorsque la platine façonnée se déplace vers l'arrière, la tension sur le fil croissant
en même temps lors de sa charge sur la protubérance, et l'inclinaison vers le bas
du plan de coulissement (60) est configurée pour récupérer et contrebalancer graduellement
l'augmentation progressive dans la tension sur le fil causée par l'étirage introduit
par le décalage latéral de la protubérance (6), afin de maintenir une tension correcte
et/ou constante de l'intermaille tout en formant le jour, et/ou lorsque la protubérance
(6), avec la platine façonnée se déplaçant vers l'arrière, élargit l'intermaille et
augmente progressivement la tension sur le fil, le plan incliné (64) de la protubérance
contrebalance l'augmentation de tension qui serait introduite sans un abaissement
ou une inclinaison du plan de coulissement de la protubérance (6), et/ou dans laquelle
la pointe d'extrémité (63) comprend une partie d'arrêt (65), élevée par rapport à
une extrémité inférieure du plan de coulissement (60), et dans laquelle la partie
d'arrêt (65) représente une butée à l'extrémité du plan de coulissement, configurée
pour stopper le coulissement du fil à l'extrémité de la protubérance (6) et retenant
le fil et l'empêchant de se détacher du plan de coulissement (60) et de se séparer
de la protubérance.
7. Platine façonnée (1) selon l'une quelconque des revendications précédentes, comprenant
une ailette (70) placée à l'arrière de la partie supérieure (4) du montant (3), c'est-à-dire
sur le côté du montant opposé au côté depuis lequel la protubérance (6) se développe,
dans laquelle l'ailette (70) présente sur le sommet un plan de support (71), et dans
laquelle l'ailette (70) peut être positionnée de sorte que son plan de support (71)
est placé vers l'arrière par rapport au plan de repos supérieur (30) du montant (3),
selon un sens vers l'extrémité arrière (2A) du corps principal (2).
8. Platine façonnée (1) selon les revendications 5 et 7, dans laquelle l'ailette (70)
s'élève depuis la partie supérieure (4) du montant (3) et se développe depuis le côté
du montant faisant face à la partie arrière du corps principal, et/ou dans laquelle
l'ailette (70) se développe depuis un côté arrière (3B) du montant, opposé au côté
avant (3A) depuis lequel la protubérance (6) se développe, et/ou dans laquelle l'ailette
(70) fait saillie sur l'arrière depuis la partie supérieure (4) du montant (3) de
sorte que ledit plan de support (71) est placé vers l'arrière par rapport au plan
de repos supérieur (30) du montant (3), selon un sens vers l'extrémité arrière (2A)
du corps principal (2), et/ou dans laquelle l'ailette (70) fait saillie sur l'arrière
depuis le montant (3) de sorte que le plan de support (71) de l'ailette se développe
d'une manière continue depuis le plan de repos (30) du montant, et/ou dans laquelle
le plan de support (71) de l'ailette (70) et le plan de repos (30) du montant (3)
sont coplanaires et présentent la même hauteur verticale.
9. Platine façonnée (1) selon la revendication 7 ou 8, dans laquelle :
- durant une opération de tricotage combinant un jour avec l'utilisation d'au moins
un fil ayant au moins une partie de trajectoire basse, c'est-à-dire passant à une
hauteur inférieure à la hauteur du plan de repos (30) du montant (3) ;
- pour fabriquer le jour, la platine façonnée, afin de transférer l'intermaille vers
l'une des aiguilles adjacentes, doit exécuter un mouvement vers l'arrière durant lequel
le côté arrière (3B) du montant (3) doit être poussé, dévié ou interféré avec le fil
ayant ladite au moins une partie de trajectoire basse ;
- l'ailette (70) est configurée pour supporter, à l'aide dudit plan de support (71),
ledit au moins un fil ayant ladite au moins une partie de trajectoire basse, en laissant
ladite trajectoire passer au-dessus du plan de support de l'ailette et en empêchant
le côté arrière du montant de pousser ou d'interférer avec ledit au moins un fil durant
le mouvement de décalage vers l'arrière de la platine façonnée, et
dans laquelle le fil ayant au moins une partie de trajectoire basse est un fil alimenté
en-dessous d'un élément de guidage de fil, typiquement, une « boîte », et/ou dans
laquelle ledit fil ayant au moins une partie de trajectoire basse est une conception
de fil pour sa partie d'une conception plaquée, et/ou dans laquelle l'ailette (70)
est configurée pour travailler, en supportant un fil à l'aide dudit plan de support
(71), lorsque la platine façonnée (1) fabrique un jour et qu'en même temps des aiguilles
adjacentes fabriquent des structures tricotées de type toile ou bouclettes.
10. Platine façonnée (1) selon l'une quelconque des revendications 7 à 9, dans laquelle
le plan de support (71) de l'ailette (70) et le plan de repos (30) du montant (3)
sont tous deux des surfaces horizontales, préférablement parallèles au corps principal
sous-jacent de la platine façonnée, et/ou dans laquelle le plan de support (71) de
l'ailette (70) n'est pas abaissé par rapport au plan de repos (30) du montant (3),
et/ou dans laquelle le plan de support (71) de l'ailette et le plan de repos (30)
du montant sont alignés le long d'un sens longitudinal, c'est-à-dire que l'ailette
(70) est coplanaire avec le montant (3) et repose sur ledit plan de repos (G) de la
platine façonnée, ou dans laquelle l'ailette (70) est décalée ou inclinée latéralement
par rapport au montant (3), depuis lequel elle s'élève, afin de ne pas reposer sur
ledit plan de repos (G) de la platine façonnée (1), et/ou dans laquelle le décalage
latéral de l'ailette (70) est configuré pour éviter des interférences avec une platine
supplémentaire placée latéralement, et/ou dans laquelle l'ailette (70) est décalée
ou inclinée latéralement, par rapport au montant (3), dans le même sens décalé de
la protubérance (6).
11. Platine façonnée (1) selon l'une quelconque des revendications 7 à 10, dans laquelle
le corps principal (2), le montant (3) et la protubérance (6) sont fabriqués d'une
seule pièce, formant ainsi une platine façonnée de pièce unique, et/ou dans laquelle
l'ailette (70) est constituée d'une seule pièce avec ledit montant (3), ou dans laquelle
l'ailette (70) est un élément distinct du montant (3), placé à l'arrière de la partie
supérieure du montant, de sorte que le plan de support (71) de l'ailette est placé
vers l'arrière et aligné par rapport au plan supérieur du montant, et/ou dans laquelle
la platine façonnée (1) est entièrement constituée d'une pièce, et/ou dans laquelle
la platine façonnée (1) présente dans toute sa pièce une épaisseur constante.
12. Ensemble (A ; B) de pièces plates d'une machine à tricoter circulaire, l'ensemble
comprenant :
- une platine d'abattage (7) ou une platine d'intermaille-abattage (7'), pourvue d'une
goupille (13, 13') configurée pour coopérer avec les aiguilles (N) d'une machine à
tricoter et d'une butée (14, 14') destinée à coopérer avec un moyen d'entraînement
approprié de la machine à tricoter afin d'amener un mouvement de décalage de la platine
d'abattage (7) ou de la platine d'intermaille-abattage (7'), dans un sens radial par
rapport à un axe central (X) de la machine à tricoter ;
- au moins une platine façonnée (1) selon l'une quelconque des revendications précédentes,
la platine façonnée (1) étant mobile par rapport à la platine d'abattage (7) ou à
la platine d'intermaille-abattage (7') ;
dans lequel l'ensemble (A ; B) est configuré pour être logé dans une rainure radiale
(103) respective d'une couronne (102) agencée autour d'un cylindre porte-aiguilles
(101) de la machine à tricoter, de sorte que ladite au moins une platine façonnée
(1) repose à côté desdites platine d'abattage (7) ou platine d'intermaille-abattage
(7'), ladite au moins une platine façonnée (1) et ladite platine d'abattage (7) ou
platine d'intermaille-abattage (7') étant radialement mobiles, d'une manière indépendante,
dans la rainure radiale (103) respective.
13. Ensemble selon la revendication précédente comprenant un groupe de pièces métalliques
plates destinées à coulisser radialement dans une rainure radiale (103) respective
et l'une par rapport à l'autre, également, l'ensemble comprenant une platine d'intermaille-abattage
(7'), une platine façonnée droite (8) et une platine façonnée gauche (9) ;
dans lequel la platine d'intermaille-abattage (7') comprend un corps principal respectif
mis en forme comme une barre horizontale plate (12') orientée comme la rainure (103),
et un montant (50) vertical plat se développant depuis la barre horizontale plate
(12'), la platine d'intermaille-abattage (7') comprenant en outre une dent (51) verticale
se développant au-dessus dudit montant (50),
dans lequel la dent (51) présente une surface avant (52) configurée pour retenir,
ou « abattre dessus », l'intermaille chargée et étirée par les protubérances (6) de
la platine façonnée droite (8) et de la platine façonnée gauche (9), et
dans lequel la dent (51) est configurée pour retenir, à l'aide de la surface avant
(52), l'intermaille portée par les protubérances de la platine façonnée droite (8)
et de la platine façonnée gauche (9) durant leur mouvement vers l'arrière fabriquée
ainsi pour placer l'intermaille sur une ou plusieurs aiguilles adjacentes afin de
former un jour, et dans lequel la surface avant (52) de la dent (51) est configurée
pour empêcher, durant le mouvement vers l'arrière des platines façonnée droite et
gauche de former un jour, l'intermaille étant étirée radialement vers l'arrière, et
dans lequel la surface avant (52) de la dent (51) est configurée pour pousser vers
l'avant l'intermaille sur les protubérances (6), durant le mouvement vers l'arrière
des platines façonnées droite (8) et gauche (9) afin de former un jour, de sorte que
l'intermaille s'étale à son maximum sur les protubérances elles-mêmes.
14. Machine à tricoter circulaire pour fabriquer un textile tricoté à jours, comprenant
:
- un cylindre porte-aiguilles (101) ayant une pluralité de rainures longitudinales
agencées autour d'un axe central (X) du cylindre porte-aiguilles (101) ;
- une pluralité d'aiguilles (N), étant chacune logée dans une rainure longitudinale
respective ;
- au moins une alimentation de fil associée fonctionnellement aux aiguilles (N) ;
- une couronne (102) agencée autour du cylindre porte-aiguilles (101) et ayant une
pluralité de rainures radiales (103) ;
- au moins une bague de guidage (90) fonctionnellement associée à la couronne (102),
dans laquelle la couronne (102) peut tourner par rapport à la bague de guidage (90)
et autour de l'axe central (X) ;
- une pluralité de platines d'abattage (7) et/ou de platines d'intermaille-abattage
(7'), chacune logée dans l'une des rainures radiales (103) et mobile radialement dans
la rainure radiale (103) respective, chaque platine d'abattage (7) ou platine d'intermaille-abattage
(7') ayant une goupille (13, 13') configurée pour coopérer avec les aiguilles (N)
et une butée (14, 14') engagée avec un premier guide (91) obtenu dans la bague de
guidage (90) et se développant autour de l'axe central (X) ; dans laquelle le premier
guide (91) est configuré pour déplacer la platine d'abattage (7) ou la platine d'intermaille-abattage
(7') radialement le long de la rainure radiale (103) respective lorsque la couronne
(102) tourne par rapport à la bague de guidage (90) et autour de l'axe central (X)
;
dans laquelle la machine comprend au moins une platine façonnée (1) selon l'une quelconque
des revendications 1 à 11, à côté d'une platine d'abattage (7) ou une platine d'intermaille-abattage
(7') respective, dans laquelle la platine façonnée (1) est mobile par rapport à la
platine d'abattage (7) ou la platine d'intermaille-abattage (7').
15. Machine à tricoter selon la revendication 14, dans laquelle ladite au moins une platine
façonnée (1) comprend une platine façonnée droite (8) et une platine façonnée gauche
(9) agencées sur des côtés opposés de la platine d'abattage (7) ou de la platine d'intermaille-abattage
(7') respective, et dans laquelle :
- la platine façonnée droite (8) a sa protubérance décalée latéralement vers la droite
par rapport au montant respectif ;
- la platine façonnée gauche (9) a sa protubérance décalée latéralement vers la gauche
par rapport au montant respectif ;
et dans laquelle la platine façonnée droite (8) et la platine façonnée gauche (9)
ont leurs protubérances décalées latéralement vers des côtés opposés de ladite platine
d'abattage (7) ou platine d'intermaille-abattage (7') et préférablement localisées
au-dessus de la platine d'abattage (7) ou de la platine d'intermaille-abattage (7')
respective, et dans laquelle les protubérances (6) sont configurées pour charger et
étirer l'intermaille et l'agencer sur deux aiguilles adjacentes placées sur des côtés
opposés de la platine d'abattage (7) ou de la platine d'intermaille-abattage (7')
respective et former le jour,
et dans laquelle ladite au moins une platine façonnée (1) est logée dans l'une des
rainures radiales (103) conjointement à la platine d'abattage (7) ou la platine d'intermaille-abattage
(7') respective, et dans laquelle l'une des rainures radiales (103) loge :
- un premier ensemble (A) constitué de la platine d'abattage (7) et de la platine
façonnée (1), ou de la platine façonnée droite (8) et de la platine façonnée gauche
(9) ; ou
- un second ensemble (B) constitué de la platine d'intermaille-abattage (7') et de
la platine façonnée (1), ou de la platine façonnée droite (8) et de la platine façonnée
gauche (9).