FIELD OF THE INVENTION
[0001] The present invention relates to a circular knitting machine structure, in particular
to a circular knitting machine structure which can be used for knitting an interchanged
plating by changing a position of a surface yarn.
BACKGROUND OF THE INVENTION
[0002] US11,136,698 discloses a weft knitting machine knitting structure capable of changing positions
of yarns. According to the weft knitting machine knitting structure, each of knitting
needles is controlled to carry out a first retracting track and a second retracting
track; and when each of the knitting needles moves according to the first retracting
track, each of the knitting needles is used for knitting a standard plating without
changing positions of a surface yarn and a bottom yarn in a needle hook. In a process
that each of the knitting needles moves according to the second retracting track,
when the positions of the surface yarn and the bottom yarn are not limited by a sinker
adjacent to each of the knitting needles, the bottom yarn is stirred by a needle latch,
and the bottom yarn is pushed by a nose part of the sinker to change the positions
of the surface yarn and the bottom yarn in the needle hook, so that an interchanged
plating is knitted.
[0003] In another aspect,
US9,834,871 discloses a method of knitting an interchanged plating on a technical positive-side
and single-side manner by a flat knitting machine. The method is that a sinker can
be used for simultaneously pushing a bottom yarn (i.e. a first color yarn described
in the scheme) and a surface yarn (i.e. a second color yarn described in the scheme)
to slide downwards for knitting by a front edge of a nose portion in a period that
a knitting needle is located at a second retracting segment, so as to form a normal
plating (i.e. a standard plating described in the scheme). When a machine head enables
the knitting needle to move according to a yarn interchanging and retracting stroke,
the sinker can be at a junction of a rear edge of the nose portion and a groove in
a period that the knitting needle is located at the yarn interchanging and retracting
stroke, and the bottom yarn is stirred up to the position above the surface yarn and
then is released for knitting, so as to form an interchanged plating.
[0004] Although both the
US11,136,698 and
US9,834,871 can achieve the yarn interchanging purpose, the two schemes are realized by changing
the position of the bottom yarn. However, for the current implementation of a circular
knitting machine, a space in the needle hook of each of the knitting needles is limited;
and when the bottom yarn and the surface yarn are fed into the needle hook, the bottom
yarn is closer to the position of the needle latch, and the above position is a narrower
part of the space in the needle hook, leading to the problem of unsmooth interchanging
of the bottom yarn. Besides, the sinker disclosed in the
US9,834,871 is used for stirring the bottom yarn through two-dimensional movement, but a sinker
of the circular knitting machine cannot carry out two-dimensional movement.
SUMMARY OF THE INVENTION
[0005] The present invention mainly aims to solve the problem of unsmooth interchanging
of yarns caused by that the existing implementation scheme is implemented mainly by
changing a bottom yarn.
[0006] In order to achieve the above purpose, the present invention provides a circular
knitting machine structure, which comprises a plurality of knitting needles and a
plurality of sinkers. Each of the plurality of knitting needles comprises a needle
hook, each of the plurality of knitting needles is controlled to move on one of a
first half knitting track and a second half knitting track, and a retracting time
point of the first half knitting track is later than a retracting time point of the
second half knitting track. Each of the plurality of sinkers is arranged correspondingly
to each of the plurality of knitting needles, patterns of the plurality of sinkers
are uniform, and one side of each of the plurality of sinkers facing each of the plurality
of knitting needles is formed with an inclined plane, wherein when each of the plurality
of knitting needles is used for knitting, a surface yarn and a bottom yarn are fed
into each of the plurality of knitting needles, and a position of the surface yarn
in the needle hook is higher than a position of the bottom yarn; when one of the plurality
of knitting needles moves on the first half knitting track, a standard plating is
knitted without changing the position of the surface yarn; and when one of the plurality
of knitting needles moves on the second half knitting track, the surface yarn transitorily
leans against the inclined plane of one of the sinkers, and the position of the surface
yarn is changed relative to the bottom yarn so that an interchanged plating is knitted.
[0007] In one embodiment, each of the plurality of sinkers comprises a sinker track, and
each sinker track comprises a push-out segment carried out when each of the knitting
needles is used for retracting and a pull-back segment carried out following the push-out
segment.
[0008] In one embodiment, each of the plurality of sinkers is provided with a belly part,
a nose part connected with the belly part, and a throat part between the belly part
and the nose part; and the inclined plane and a flat plane connected with the inclined
plane are formed on one side of the nose part distant from the belly part.
[0009] In one embodiment, the circular knitting machine structure comprises at least one
knitting cam for providing movement paths for the plurality of knitting needles, and
at least one needle selector which is controlled to drive each of the plurality of
knitting needles to move on one of the first half knitting track and the second half
knitting track.
[0010] In one embodiment, the circular knitting machine structure comprises at least one
sinker cam for guiding the plurality of sinkers to move.
[0011] In one embodiment, each of the plurality of knitting needles is controlled to move
on the first half knitting track, the second half knitting track and a plain knitting
track. Further, the circular knitting machine structure is provided with the at least
one knitting cam for providing movement paths for the plurality of knitting needles,
and at least one needle selector which is controlled to drive each of the plurality
of knitting needles to move on one of the first half knitting track, the second half
knitting track and the plain knitting track.
[0012] Through the above implementation of the present invention, compared with conventional
use, the circular knitting machine structure has the following characteristic: besides
the circular knitting machine structure can enable each of the plurality of knitting
needles to move on one of the first half knitting track and the second half knitting
track, the problem of blocking of the yarns or unsmooth interchanging of the yarns
in a yarn interchanging process is avoided by changing the position of the surface
yarn relative to the bottom yarn.
BRIEF DESCRIPTION OF THE DRAWINGS
[0013]
Fig. 1 is a schematic diagram of a circular knitting machine structure in one embodiment
of the present invention;
Fig. 2 is a structural schematic diagram of a knitting needle and a knitting cam in
the embodiment of the present invention;
Fig. 3 is a cross-section schematic diagram of the circular knitting machine structure
in the embodiment of the present invention;
Fig. 4 is a schematic diagram of trajectories of the knitting needle and a sinker
in the embodiment of the present invention;
Fig. 5 is schematic diagram of implementation of the knitting needle and the sinker
in the embodiment of the present invention;
Fig. 6 is a schematic diagram of a retracting action when the knitting needle moves
according to a first half knitting track in the embodiment of the present invention;
Fig. 7 is a schematic diagram of positions of a surface yarn and a bottom yarn in
a needle hook when a standard plating is knitted in the embodiment of the present
invention;
Fig. 8 is a schematic diagram of a retracting action when the knitting needle moves
according to a second half knitting track in the embodiment of the present invention;
Fig. 9 is a schematic diagram of positions of the surface yarn and the bottom yarn
in the needle hook when an interchanged plating is knitted in the embodiment of the
present invention;
Fig. 10 is a schematic diagram of a fabric with color changing blocks in the embodiment
of the present invention;
Fig. 11 is a schematic diagram of trajectories of a knitting needle and a sinker in
another embodiment of the present invention; and
Fig. 12 is a schematic diagram of a fabric with meshes and color changing blocks in
the embodiment of the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0014] The detailed description and the technical contents of the present invention are
described as follows through combination with the drawings:
With reference to Fig. 1, Fig. 2, Fig. 3, Fig. 4 and Fig. 5, the present invention
provides a circular knitting machine structure 10, and the circular knitting machine
structure 10 comprises a plurality of knitting needles 11 and a plurality of sinkers
12. Each of the plurality of knitting needles 11 is provided with a needle hook 111
and a needle latch 112 which can be used for performing an opening-closing action
relative to the needle hook 111. When each of the plurality of knitting needles 11
moves to hook yarns, the needle latch 112 is opened relatively to the needle hook
111, so that the yarns can be fed into the needle hook 111. When each of the plurality
of knitting needles 11 is used for retracting, the needle latch 112 is used for performing
a closing action relatively to the needle hook 111 under an affect of a former knitted
plating. In the present invention, each of the plurality of knitting needles 11 is
controlled to move according to one of a first half knitting track 20 and a second
half knitting track 21, and a retracting time point of the first half knitting track
20 is later than a retracting time point of the second half knitting track 21. Further,
the circular knitting machine structure 10 comprises one or more knitting cams 13
for defining movable paths of each of the plurality of knitting needles 11, and at
least one needle selector 14 for determining movement trajectories of the plurality
of knitting needles 11. The one or more knitting cams 13 can be formed by a plurality
of cam blocks 131, and patterns of the plurality of cam blocks 131 are not limited
to fixed patterns and are designed according to requirements of paths. In addition,
the needle selector 14 is in information connection with a controller (not shown in
the drawings) arranged on the circular knitting machine 10; the needle selector 14
is used for selecting the movement trajectories of the plurality of knitting needles
11 based on a signal sent by the controller according to a knitting process. That
is to say, the plurality of knitting needles 11 move on the first half knitting track
20 or the second half knitting track 21, is determined by the needle selector 14 according
to the signal sent by the controller.
[0015] In another aspect, with reference to Fig. 4, Fig. 5, Fig. 6 and Fig. 7, each of the
plurality of sinkers 12 is arranged correspondingly to each of plurality of the knitting
needles 11, the patterns of the plurality of sinkers 12 are uniform, and one side
of each of the plurality of sinkers 12 facing each of the plurality of knitting needles
11 is formed with an inclined plane 121. Further, the circular knitting machine structure
10 comprises at least one sinker cam 15 guiding the plurality of sinkers 12 to move,
each of the plurality of sinkers 12 is guided by the at least one sinker cam 15 to
have a sinker track 22, and the sinker track 22 comprises a push-out segment 221 carried
out when each of the plurality of knitting needles 11 is used for retracting and a
pull-back segment 222 carried out following the push-out segment 221. It can be understood
that in the present invention, a push-out time point and a pull-back time point of
each of the plurality of sinkers 12 are not changed due to a movement of the plurality
of knitting needles 11, namely, no matter one of the plurality of knitting needles
11 moves on the first half knitting track 20 or the second half knitting track 21,
the sinker 12 coordinated thereof does not change the movement. Moreover, each of
the plurality of sinkers 12 only carries out one-dimensional movement, and namely,
each of the plurality of sinkers 12 is pushed out or pulled back relative to one of
the plurality of knitting needles 11 only. A push-out action described by the present
invention refers to that each of the plurality of sinkers 12 displaces towards feeding
points of a surface yarn 30 and a bottom yarn 31, and similarly, a pull-back action
described by the present invention refers to that each of the plurality of sinkers
12 displaces towards the direction distant from the feeding points of the surface
yarn 30 and the bottom yarn 31. Positions of the plurality of sinkers 12 on the sinker
track 22 are continuously changed and is not fixed at a single position.
[0016] With reference to Fig. 5, Fig. 6, Fig. 7, Fig. 8 and Fig. 9, each of the knitting
needles 11 is fed with the surface yarn 30 and the bottom yarn 31 upon knitting, and
a position of the surface yarn 30 in the needle hook 111 is higher than a position
of the bottom yarn 31. When one of the plurality of knitting needles 11 is controlled
by the needle selector 14 to move on the first half knitting track 20, the position
of the surface yarn 30 of one of the plurality of knitting needles 11 relative to
the bottom yarn 31 is not changed in a process that is used for retracting to form
a loop, as shown in Fig. 6 and Fig. 7, and a standard plating is knitted. The standard
plating refers to a plating of the surface yarn 30 that is located above the bottom
yarn 31, when viweing a front side of a fabric. In addition, when one of the plurality
of knitting needles 11 is controlled by the needle selector 14 to move on the second
half knitting track 21, in a process that one of the plurality of knitting needles
11 is used for pulling the surface yarn 30, the surface yarn 30 transitorily leans
against the inclined plane 121 of one of the plurality of sinkers 12, and the inclined
plane 121 enables the surface yarn 30 to slide, and change the position of the surface
yarn 30 relative to the bottom yarn 31, as shown in Fig. 8 and Fig. 9, and an interchanged
plating is knitted. The interchanged plating refers to a plating of the surface yarn
30 that is located under the bottom yarn 31, when viewing the front side of the fabric.
The fabric knitted by adopting the circular knitting machine structure 10 of the present
invention is shown in Fig. 10. Further, the present invention utilizes changing the
position of the surface yarn 30 relative to the bottom yarn 31. When the surface yarn
30 is fed into the needle hook 111, the position of the surface yarn 30 is obviously
higher than the position of the bottom yarn 31, and the position of the surface yarn
30 has a farer distance with a pivot junction of the needle latch 112 and the needle
hook 111 than the bottom yarn 31. Therefore the surface yarn 30 is located at a wider
part of the needle hook 111 so that the problem of blocking of the yarns or unsmooth
interchanging of the yarns can be avoided in a process of changing the position of
the surface yarn 30.
[0017] Referring to Fig. 4 and Fig. 5, in one embodiment, each of the plurality of sinkers
12 is provided with a belly part 122, a nose part 123 connected with the belly part
122, and a throat part 124 between the belly part 122 and the nose part 123, the inclined
plane 121 and a flat plane 125 connected with the inclined plane 121 are formed on
one side of the nose part 123 which is distant from the belly part 122. More specifically,
when one of the plurality of knitting needles 11 moves on the second half knitting
track 21, one of the plurality of sinkers 12 of the present invention interferes the
movement of the surface yarn 30 by the inclined plane 121 of the nose part 123 to
change the position of the surface yarn 30 at a time point of the push-out segment
221 converting to the pull-back segment 222 on the sinker track 22.
[0018] With reference to Fig. 2, the plurality of cam blocks 131 included in the one or
more knitting cams 13 of the present invention are different from conventional use,
each of the plurality of cam blocks 131 comprises a space 132 allowing various paths
to be generated, and patterns of a plurality of spaces 132 of the plurality of cam
blocks 131 are not limited to the same.
[0019] With reference to Fig. 11, in one embodiment, each of the plurality of knitting needles
11 can be controlled to move on one of the first half knitting track 20, the second
half knitting track 21 and a plain knitting track 23, wherein the first half knitting
track 20 and the second half knitting track 21 respectively enable each of the plurality
of knitting needles 11 to hook and guide the surface yarn 30 and the bottom yarn 31
to generate a plating, and the plain knitting track 23 enables each of the plurality
of knitting needles 11 to hook and guide the bottom yarn 31 to generate a plating.
Therefore, when each of the plurality of knitting needles 11 is implemented on the
plain knitting track 23, a mesh is generated on a fabric so that the fabric has a
style besides a color changing style, and a pattern of the fabric is shown in Fig.
12, a zone 40 in Fig. 12 represent the standard plating is formed and a zone 41 in
Fig. 12 represent the interchanged plating is formed, and the mesh is shown as 42
in Fig. 12 of the present invention. Therefore, the present invention can thereby
generate the mesh at predetermined knitting points in a process of color changing
knitting to increase the variation of the fabric.
[0020] Further, in the embodiment, although the movement of the plurality of knitting needles
11 are increased with the plain knitting track 23, the one or more knitting cams 13
used for guiding the plurality of knitting needles 11 do not need to be replaced due
to the design of the plurality of spaces 132, and each of the plurality of knitting
needles 11 moving on one of the first half knitting track 20, the second half knitting
track 21 and the plain knitting track 23 can be controlled by the needle selector
14 only.
1. A circular knitting machine structure (10), comprising:
a plurality of knitting needles (11), wherein each of the plurality of knitting needles
(11) is provided with a needle hook (111), each of the plurality of knitting needles
(11) is controlled to move on one of a first half knitting track (20) and a second
half knitting track (21), and a retracting time point of the first half knitting track
(20) is later than a retracting time point of the second half knitting track (21);
and
a plurality of sinkers (12), wherein each of the plurality of sinkers (12) is arranged
correspondingly to each of the plurality of knitting needles (11), patterns of the
plurality of sinkers (12) are uniform, and one side of each of the plurality of sinkers
(12) facing each of the plurality of knitting needles (11) is formed with an inclined
plane (121),
wherein when each of the plurality of knitting needles (11) is used for knitting,
a surface yarn (30) and a bottom yarn (31) are fed into each of the knitting needles
(11), and a position of the surface yarn (30) in the needle hook (111) is higher than
a position of the bottom yarn (31), when one of the plurality of knitting needles
(11) moves on the first half knitting track (20), a standard plating is knitted without
changing the position of the surface yarn (30), and when one of the plurality of knitting
needles (11) moves on the second half knitting track (21), the surface yarn (30) transitorily
leans against the inclined plane (121) of one of the plurality of sinkers (12), and
the position of the surface yarn (30) is changed relative to the bottom yarn (31)
so that an interchanged plating is knitted.
2. The circular knitting machine structure (10) according to claim 1, wherein each of
the plurality of sinkers (12) comprises a sinker track (22), and the sinker track
(22) comprises a push-out segment (221) carried out when each of the plurality of
knitting needles (11) is used for retracting, and a pull-back segment (222) carried
out following the push-out segment (221).
3. The circular knitting machine structure (10) according to claim 1 or claim 2, wherein
each of the plurality of sinkers (12) is provided with a belly part (122), a nose
part (123) connected with the belly part (122), and a throat part (124) between the
belly part (122) and the nose part (123), and the inclined plane (121) and a flat
plane (125) connected with the inclined plane (121) are formed on one side of the
nose part (123) distant from the belly part (122).
4. The circular knitting machine structure (10) according to claim 3, wherein the circular
knitting machine structure (10) is provided with at least one knitting cam (13) for
providing movement paths for the plurality of knitting needles (11), and at least
one needle selector (14) which is controlled to drive each of the plurality of knitting
needles (11) to move on one of the first half knitting track (20) and the second half
knitting track (21).
5. The circular knitting machine structure (10) according to claim 4, wherein the circular
knitting machine structure (10) is provided with at least one sinker cam (15) for
guiding the plurality of sinkers (12) to move.
6. The circular knitting machine structure (10) according to one of claims 3-5, wherein
each of the plurality of knitting needles (11) is controlled to move on the first
half knitting track (20), the second half knitting track (21) or a plain knitting
track (23).
7. The circular knitting machine structure (10) according to claim 6, wherein the circular
knitting machine structure (10) is provided with the at least one knitting cam (13)
for providing one of movement paths comprising the first half knitting track (20),
the second half knitting track (21) and the plain knitting track (23) for the plurality
of knitting needles (11), and the at least one needle selector (14) which is controlled
to drive each of the plurality of knitting needles (11) to move on one of the first
half knitting track (20) and the second half knitting track (21).
8. The circular knitting machine structure (10) according to claim 7, wherein the circular
knitting machine structure (10) comprises at least one sinker cam (15) for guiding
the plurality of sinkers (12) to move.
9. The circular knitting machine structure (10) according to one of the preceding claims,
wherein each of the plurality of knitting needles (11) is controlled to move on the
first half knitting track (20), the second half knitting track (21) or a plain knitting
track (23).
10. The circular knitting machine structure (10) according to claim 9, wherein the circular
knitting machine structure (10) is provided with at least one knitting cam (13) for
providing movement paths for the plurality of knitting needles (11), and at least
one needle selector (14) which is controlled to drive each of the plurality of knitting
needles (11) to move on one of the first half knitting track (20), the second half
knitting track (21) and the plain knitting track (23).
11. The circular knitting machine structure (10) according to claim 10, wherein the circular
knitting machine structure (10) comprises at least one sinker cam (15) for guiding
the plurality of sinkers (12) to move.