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EP 0 120 357 B2 |
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NEW EUROPEAN PATENT SPECIFICATION |
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Date of publication and mentionof the opposition decision: |
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24.02.1993 Bulletin 1993/08 |
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Mention of the grant of the patent: |
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04.05.1988 Bulletin 1988/18 |
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Date of filing: 07.03.1984 |
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International Patent Classification (IPC)5: D03D 47/12 |
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Actuator assembly for a picker head in a wire cloth making machine
Antriebsvorrichtung für die Eintragsnadel einer Webmaschine für Metallgewebe
Dispositif d'entraînement de l'aiguille d'insertion d'un métier à tisser des tissus
métalliques
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Designated Contracting States: |
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CH DE FR GB LI |
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Priority: |
11.03.1983 IT 2004983
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Date of publication of application: |
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03.10.1984 Bulletin 1984/40 |
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Proprietor: TRINCA COLONEL SILVIO
& FIGLIO SERGIO S.n.c. |
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I-22079 Villa Guardia
(Province of Como) (IT) |
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Inventor: |
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- Trinca Colonel, Sergio
I-22079 Villa Guardia
Province of Como (IT)
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Representative: Modiano, Guido, Dr.-Ing. et al |
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Modiano & Associati S.r.l.
Via Meravigli, 16 20123 Milano 20123 Milano (IT) |
| (56) |
References cited: :
DE-B- 844 275 GB-A- 1 407 632
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FR-A- 1 465 062 US-A- 1 563 305
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[0001] This invention relates to an actuator assembly for a picker head in shuttleless looms
for making wire cloth, particularly wire cloth for use in the manufacture of strainers,
window screens, etc.
[0002] As is known,in wire cloth looms, a picker head, provided with a wire engaging latch
and being reciprocated in timed relationship with the loom sley, is arranged to pass
the weft wire through the shed formed by warp wires laid on mutually parallel planes,
thereby weaving the wire cloth.
[0003] To that end, the picker head is passed, over an initial portion of its stroke distance,
through the shed up to one side thereof, whereat it will pick up the weft wire by
means of its openable end bill; thereafter, the picker head is returned rapidly through
the shed to take the weft wire in between the warp wires and thus weave, at each back
and forth stroke, a portion of the cloth.
[0004] In such loom types, the picker head movement is implemented by means of complex camming
mechanisms which receive their motion from the loom main drive via additional driving
and timing members.
[0005] This contributes, of course, to the complexity of the loom as a whole. while with
such prior looms, the wire insertion is not entirely satisfactory on account of frequent
breakages caused in the wire by the vibration and irregular motion of the picker head.
IT-A-1 126 425 discloses a picker element and related drive which have been effective
to greatly reduce the occurrence of breakages in the weftwire, so as to result, with
fairly high efficiency, in the production of a wire cloth having satisfactory characteristics.
[0006] However, actual tests conducted on production looms so constructed, and further extensive
studies by the Applicant, have shown that the mechanism proposed in IT-A-1 126 425,
while being generally satisfactory, was not entirely faultless, among its deficiencies
being that it could not provide a very high rate of operation for the cited picker
element.
[0007] A further disadvantage shown by said mechanism was that adjustment for operative
transition from one cloth type to a different, especially heavier grade, one involved
a significant degree of complexity.
[0008] DE-C-844275 dating back to the year 1952 discloses a mechanism for actuating a shuttle
in a ribbon loom wherein the actuating mechanism comprises a cross the axis of rotation
of which is arranged to run over a circular path and the cross is driven by a planetary
gearing in which the shaft of the planet gear coincides with the crankshaft.
[0009] Apart from the fact that this prior disclosure is concerned exclusively with low
speed shuttle looms, it does not provide a solution for the problem of a perfect timing
of the actuating mechanism with the loom sley.
[0010] Thus the task of this invention is to provide an improved actuator assembly and/or
mechanism for a picker head in shuttleless looms for making wire cloth, which can
move the picker head at a very high speed and in perfectly timed relationship with
the position of the loom sley at each operative phase of the picker head.
[0011] Within that task it is an object of the invention to provide an assembly as indicated,
which can actuate the picker head during the return or weft wire drawing stroke thereof
such that the weft wire is held under constantly applied tension, thus preventing
it from becoming entangled and producing a cloth having optimum characteristics.
[0012] It is another object of this invention to provide an assembly as indicated, which
can be readily adjusted for adaptation in an optimum fashion to the production of
the various types of wire cloth presently on demand by the market.
[0013] Still another object of the invention is to provide an assembly as indicated, which
is construction-wise simple and reliable, and in particular which may be easily fitted
on existing looms without involving substantial alteration of the latter.
[0014] It is a further object of this invention to provide an actuator assembly as indicated,
which is compatible, in particular, with currently available commercial picker actuating
carriage assemblies.
[0015] Yet another object of the invention is to provide an actuator assembly as indicated,
which can be easily manufactured from materials and on equipment commonly available
on the market.
[0016] The above task and objects are achieved by an actuator assembly for a picker head
in shuttleless looms as defined in claim 1.
[0017] Further features and advantages of the actuator assembly for a picker head in shuttleless
looms for making wire cloth. according to this invention, will be more readily understood
from the following detailed description of a preferred embodiment thereof, with reference
to the accompanying illustrative drawings. where:
Figure 1 is a perspective view of the inventive actuator assembly, as associated with
one abutment shoulder of a shuttletess loom for making wire cloth;
Figure 2 is an exploded view showing the main components of the actuator assembly
of this invention;
Figures 3 to 5 are diagrams showing how the actuator assembly of this invention operates;
Figure 6 is an enlarged scale detail view showing the adjusting carriage element associated
with the actuator assembly according to this invention; and
Figure 7 is a fragmentary perspective view showing the gear case in a closed condition
and the main connecting rod element deriving motion therefrom for t he actuator assembly
of this invention.
[0018] Making now specifc reference to the drawing views, and in particular to Figures 1
and 2, the actuator assembly for a picker head according to this invention will be
next described in detail, although a detailed discussion of the loom incorporating
it is omitted herein inasmuch as reference can be had for its description to the aforementioned
prior Italian patent application by this same Applicant.
[0019] More specifically, the actuator assembly for a picker head, according to the invention,
is generally designated with the reference numeral 1.
[0020] Said assembly, as shown best in Figure 2, comprises a gear case SC affixed to an
abutment shoulder SP (Figure 1) on the loom, which gear case has a substantially cylindrical
shape and contains rigid therewith a first spur gear 2 (Figure 2) journalled to one
end of the loom crankshaft (not shown) and made relatively rotatable therewith, and
a second spur gear 3 arranged to mesh with the first spur gear 2. The first and second
gears 2 and 3 are provided in a 1:1 drive ratio and are supported on a plate-like
gear carrier or holder element 4 of substantially rectangular shape, which supports
the gear 3 rotatably at its upper end, and the gear 2 is relatively rotatable with
respect to its lower end. To that aim, formed in the plate-like carrier 4, respectively
at the upper and lower ends thereof, are two throughgoing round holes, indicated at
5 and 6, respectively, which are arranged to accommodate conventional means of securing
the carrier 4 onto the loom crankshaft and the spur gears 3 and 2, respectively. However,
such conventional means will not be described in detail herein.
[0021] It may suffice to say that the crankshaft (not shown) and cited gears 2 and 3 are
associated with the plate-like element 4, and the gear 3 is in mesh engagement with
the gear 2, thereby, on rotating the loom crankshaft, the plate-like element 4 and
gear 3 are rotated, the gear 3 describing an epicycloid around the gear 2 with which
it meshes.
[0022] On the opposite side of the plate-like element 4 with respect to that side which
carries the gear 3, a disk assembly, generally indicated at 7, is supported which,
in one embodiment, may comprise an outer bearing race 8 and a center disk element
9, between the disk element 9 and bearing race 8 there being arranged, in a manner
known perse, plural bearing balls 10. The center disk element 9 has a slot or throughgoing
aperture 11 formed therein which is sized and configured to receive one end of a first
connecting rod element 13, as explained more detailedly hereinafter.
[0023] It may be seen that between the disk assembly 7 and plate-like gear carrier element
4 there intervenes a cover C, provided to close the gear case as shown more clearly
in Figure 7.
[0024] In particular, the cover C is made pivotally rigid with the disk assembly 7 and gear
carrier plate 4, so that in operation said cover C will also turn. Again with reference
to Figure 2, the elongate slot 11, which may have an enlarged end to facilitate coupling
to the connecting rod 13, is arranged to accommodate, fixedly but adjustably, one
end of said first connecting rod element 13, the other end of which is engaged articulatedly
with a set of rods, generally designated with the reference numeral 16, formed essentially
by six rods which are interconnected to define a substantially triangular arrangement
lying on an essentially vertical plane, with the actuator assembly in a fully assembled
condition. More specifically, the rod set 16 comprise two rods 17 and 18 which have
a substantially yoke-like configuration and define the base of said triangular configuration,
two additional rods 20 and 21 defining one side of said triangular configuration,
and two rods 22 and 23 defining the other side of the triangular configuration. The
yoke-like shape of the rods 20 and 21 causes them to meet each other at a substantially
common end, e.g. their welded end indicated at 19, having a through connection hole
19'. As may be seen, the common end 19 of the rod pair 20 and 21 projects farther
than the two base rods 17 and 18, which have their common end located more to the
rear than said end 19, the common end of the rods 17 and 18 being for example welded
at said rearward location.
[0025] On the other hand, the rods 22 and 23 are substantially straight and parallel ones,
and have coupling holes, not referenced herein, formed at each end, their respective
lower ends also projecting from the aforementioned two base rods 17 and 18 defining
the aforementioned triangular configuration.
[0026] In particular, the two base rods 17 and 18 in the triangular configuration set, or
bow divider-like set, are formed at their diverging ends with two slots or elongate
longitudinal apertures, indicated at 24 and 25, respectively, for engaging adjustably
therewith the pair of substantially parallel rods 22 and 23.
[0027] For said adjustable coupling, there is provided a throughgoing peg element, orthreaded
bolt, 26 which couples the two rods 22 and 23 together at their lower end portions,
said peg being passed, as may be seen, through the slots 24 and 25. The peg 26, which
comprises as mentioned a releasable bolt, will enable, as is apparent, adjustment
of the positions of the rods 23 and 24 in the slots 24 and 25, and such rods to be
locked in the adjusted positions.
[0028] Thus, the actuator assembly of this invention provides at least two adjustment points
already, namely the aforementioned coupling of the first connecting rod 13 within
the slot 11 and the coupling just described of the two rods 22 and 23 within the slots
24 and 25 of the rods 17 and 18. Said dual adjustment affords the faculty of synchronizing
in an optimum fashion the motion transmitted by the actuator assembly of this invention
with the motion of the other main loom members, and in particular the sley.
[0029] The triangular rod arrangement described hereinabove is articulated at one side,
respectively at the lower ends of the rods 22 and 23, to an adjustment carriage assembly,
generally indicated at 30, shown more detailedly on an enlarged scale in Figure 6.
[0030] In particular, the lower ends of the rods 22 and 23 are made rigid, e.g. through
a pin 32, with a pivot connection 33, which pivot connection 33 is made rigid with
a plate-like element 34 of substantially C-like configuration, which plate-like element
34 is adapted for sliding movement in a longitudinal slot 35 formed in the lower body
36 of the carriage. For producing said sliding movement of the plate 34, and hence
of the pivot connection 33 attached thereto, a handwheel element, indicated at 37,
is provided, the handwheel 37 being coupled to the sliding plate 34 through any suitable
means, such as a worm and gear means, not shown.
[0031] It may be appreciated that the adjusting carriage assembly 30 is substantially rigid
with the abutment SP of the loom, a plate-like element 40 being also made rigid, via
a support41, with the abutment of the loom, the element 40 being provided to function
as a stop for the sliding motion of the plate 34 associated with the adjusting carriage
assembly 30.
[0032] Again in connection with the cited adjusting assembly 30, it should be noted that
it is quite easy to adjust the positions of the two rods 22 and 23 in the cited triangular
arrangement by simply threading out substantially no more than three bolts, namely
the bolt or pin 26 joining the two rods 22 and 23, and the two bolts 41 and 42 which
locate the sliding positions of the sliding plate 34 in the longitudinal slots 35
of the carriage body 36. This easily carried out adjustment, required to suit the
motion supplied by the inventive assembly to the type of cloth being weaved, constitutes
a peculiar aspect of the invention not to be found with the complex camming devices
of the prior art, which were on the contrary quite difficult to adjust, the adjustment
thus achieved being less fine than that to be obtained with the carriage assembly
of the inventive actuator assembly.
[0033] At the end portion 19 of the two rods 20 and 21, and through the hole 19', the cited
triangular rod arrangement, or bow divider-like arrangement, are articulated, by conventional
means, such as a pin 50, to a twin connecting rod element 51 which has its opposite
end connected, through an additional pin element 52, for example to a picker head
actuating carriage 54. The carriage 54 is a part of an actuating assembly 55, which
is available commercially and requires no further detailed discussion herein.
[0034] It is considered that the foregoing description is adequate for understanding the
operation of the actuator assembly according to the invention.
[0035] Making reference to Figures 3 to 5, which illustrate different operative steps in
the actuation of the picker head, the operation of the actuator assembly according
to the invention will be next described. The main motion is in particular derived
from the loom main shaft as drive by the motor M (Figure 1), through a drive belt
56 and flywheel-pulley 57. Assuming that the flywheel-pulley 57 turns in a clockwise
direction, as indicated by the arrowA in Figure 1, the rotary motion is transmitted
from the main shaft to the crankshaft mentioned hereinabove, which in turn drives
the gearsystem of the actuator mechanism according to the invention, thereby the rotation
of the outward gear 3 and elements connected thereto, in particular to the plate 4,
cover C, and disk assembly 7, will occur in a counterclockwise direction, as shown
by the arrow B. Consequently to the rotation of the crankshaft, the gear 3 will describe
an epicycloidal path around the gear 2, wherein the disk assembly 7 turns togeth-
erwith the cover C. The rotary motion imparted to the disk assembly 7 will cause the
first connecting rod element 13 to drive in a push-pull mode the triangular rod arrangement
which, being pivoted at 33, reciprocates the picker head actuating carriage. In particular,
Figure 3 shows the main connecting rod 13 in the fully backward position, which in
accordance with the invention is a picker rest position. Of course, the dimensions
of the connecting rod 3 and rod mechanism as a whole should be selected to determine
a desired rest interval for the picker head after drawing the weft wire through the
shed. In Figure 4, the connecting rod 13, under the drive from the gears 2 and 3,
plate 4, and disk assembly 7, begins its outward travel, which corresponds to a working
stroke during which the picker head (not shown) starts through the shed in its movement
across it for picking up the weft wire from the left-hand extremity of the shed.
[0036] In particular, the weft wire is engaged with the connecting rod in its fully extended
position and the carriage 54 at the bottom travel limit of its back-and- forth stroke
distance. Said fully extended position of the connecting rod 13 is shown schematically
in Figure 5. Thus, in the condition corresponding substantially to that shown in Figure
5, the picker head is engaged with the weft wire. As the crankshaft is rotated further,
the connecting rod element 3 starts its backward movement, thereby the picker head
will be caused to move backward through the shed with the wire (not shown) engaged
therewith, dimensions being selected such that the picker head is at a standstill
over an angle of substantially 120-130°. This standstill phase of the picker head
constitutes an advantageous aspect of the invention, because during that phase, the
weft wire may be cut in ideal conditions to yield an optimum cloth in a nearly finished
condition.
[0037] It should be noted in this respect that the cited standstill interval of the picker
head does not jeopardize, as actual tests have shown, the cloth production rate, which
is higher than the rates currently achieved with conventional looms of the same general
type.
[0038] It should be further pointed out that the inventive actuator assembly enables, by
virtue of its peculiar construction, the picker head to hold the weft wire at all
times under tension, which is effective to prevent the wire from becoming entangled
and further improve the quality of the resulting wire cloth.
[0039] Also to be enhanced is the cited dual adjustment ability of the inventive actuator
assembly, which adjustment is easy to make as well as being extremely accurate. Thus,
ease of adjustment brings about a corresponding ready adaptability of the whole machine
to produce a desired cloth type, especially as regards the cloth grade.
[0040] It may be appreciated from the foregoing that the invention fully achieves its objects.
[0041] While but one, presently preferred embodiment of the invention has been described
by way of example, the skilled one in the art will readily recognize that many modifications
and variations may be introduced therein without departing from the true scope of
the inventive idea. As an example, the specific dimensions of the main component parts
of the actuator assembly according to the invention may be selected contingent on
individual application requirements.
1. An actuator assembly for a picker head in shuttleless looms for making wire cloth
and the like, characterized in that it comprises a meshing gear pair (2, 3) having
a 1:1 gear ratio, whereof one gear (2) is rigid with the frame of the loom and is
journalled on to the loom crankshaft and the other (3) is caused to follow a substantially
epicycloidal path around it, said other gear (3) being rigid with a disk assembly
(7) with which a first connecting rod element (13) is articulatedly engaged, which
connecting rod element is coupled to one end of a rod linkage (16) comprising three
points of articulation (16, 33, 50) and having a second end articulated to the frame
of the loom and a third end articulated to a second connecting rod element (51) for
reciprocating the picker head actuating carriage (54), the position of at least one
(33) of said points of articulation being adjustable.
2. An actuator assembly according to claim 1, characterized in that said second gear
(3) is supported rotatably on a gear holder element of platelike, substantially rectangular
configuration (4) and in mesh engagement with said first gear (2), said disk assembly
(7) is carried on said gear holder element (4) at the opposite side thereof to the
side carrying said second gear (3), said first connecting rod element (13) is engaged
at one end thereof with said disk assembly (7) and extending on a substantially vertical
plane, said rod linkage comprises a set of rods interconnected to define a substantially
triangular arrangement and lying on a substantially vertical plane with two sides
projecting by preset distances beyond the base of said triangle, the upper vertex
of said triangle being pivoted to the other end of said first connecting rod element
(13), the lower end of one of said projecting sides from said triangle being pivoted
to an adjustment carriage (30), and the lower end of the other of said projecting
sides from said triangle being pivoted to one end of a second twin connecting rod
element (51) having the other end connected to said actuator carriage element (54)
for actuating said picker head, said preceding elements are interconnected and constructed
such that, on rotating said crankshaft, said second gear (3) performs, along with
said plate-like element (4), a substantially epicycloidal movement around said first
gear (2), and said second twin connecting rod element (51) linearly reciprocates said
actuator carriage (54) for said picker head, said reciprocating motion being timed
to the sley motion in said loom and including a forward stroke of said picker head
to pick up the weft wire and a return stroke of said picker head to release the weft
wire, on completion of said return stroke and prior to the successive forward stroke
a standstill phase being provided for said picker head for an adjustable preset time
period.
3. An actuator assembly according to claim 2, characterized in that said plate-like
gear holding element (4) of substantially rectangular configuration has two substantially
round apertures (5, 6) formed near the ends thereof, one (6) of said apertures (5,
6) being engaged rotatably, on opposite sides of said gear holding element (4), by
said first gear (2) whereas said supporting disk assembly (7), and the other of said
apertures (5) are engaged rotatably with respect to each other and with respect to
said second gear (3).
4. An actuator assembly according to Claim 1, characterized in that said supporting
disk assembly (7) includes a bearing outer race (8) and center disk-like portion (9)
provided with a substantially diametrically extending aperture (11) which widens at
one end for adjustably securing said one end of said first connecting rod element
(13) therein.
5. An actuator assembly according to Claim 1, characterized in that said first gear
(2), said second gear (3), and said gear holding element (4) are accommodated within
a bearing case (SC) of substantially cylindrical shape and attached, on a substantially
vertical plane, to an abutment shoulder (SP) on said loom, said disk assembly (7)
protruding from the cover (C) of said case (SC) and also extending on a substantially
vertical plane, said case (SC) cover (C) being made pivotally rigid with said gear
holding element (4).
6. An actuator assembly according to any of the preceding claims, characterized in
that said adjustment carriage (30) having the projecting end of said one side of said
substantially triangular arrangement pivoted thereto includes a substantially parallelepipedal
carriage body (36) made rigid with the frame of said loom, said body having two longitudinal
guide slots (35) formed through opposite sides thereof, a supporting plate (34) being
slidably engaged in said guide slots (35), said supporting plate supporting rigidly
therewith the articulation or pivot means (33) for said projecting end of said one
side, and a handwheel control means (37) being operatively coupled to said plate (34)
to translate said plate and time the motion of said assembly to the motion of said
sley in accordance with the type of wire cloth to be made.
7. An actuator assembly according to any of the preceding claims, characterized in
that said rod set (16) includes essentially six rods (17, 18, 20, 21, 22, 23) in juxtaposed
pairs to define said substantially triangular arrangement, the two base rods (17,18)
in said triangular arrangement being bent yoke-like to provide respective end portions
converging to a point located inwardly of the projecting end from said base of said
triangular arrangement, to said same point there also converging the respective ends
of two rods (20, 21) defining said side of said triangular arrangement, the remaining
rod pair (22, 23) defining the other side of said triangular arrangement being juxtaposed
in substantially mutually parallel relationship.
8. An actuator assembly according to Claim 7, characterized in that said two base
rods (17, 18) are each provided, near the non-converging ends thereof, with a respective
longitudinal slot (24, 25), said longitudinal slots (24, 25) extending in juxtaposed
relationship and each said slot being engaged in an adjustable fashion by a respective
end portion of said two substantially parallel rods (23, 22) of said other side of
said substantially triangular arrangement.
9. An actuator assembly according to Claim 8, characterized in that said end portions
of said two substantially parallel rods (22, 23) are engaged in an adjustable fashion
within said longitudinal slots (25, 24) of said two base rods (18, 17) by means of
a cross bolt (26) passed through said two slots (25, 24) and coupling together said
end portions of said two substantially parallel rods (22, 23), the coupling region
being located more to the rear than said end portions of said projecting rods from
said base side.
10. An actuator assembly according to any of the preceding claims, characterized in
that said supporting plate (34) for said adjustment carriage (30) has a substantially
U-like configuration and is slidably engaged on said carriage body (36), said plate
(34) being lockable at each adjustment position thereof by means of two bolts passed
through said two guide slots (35) in said carriage body (36) and coupling together
the parallel wing portions of said plate and wherein said adjustable duration time
preset for said standstill phase of said picker head corresponds substantially to
a 120-130° rotation of said second gear (3), said gear holding element (4), said disk
assembly (7), and said first connecting rod element (13) around said first gear (2)
and wherein the drive ratio of said first gear (2) to said second gear (3) is substantially
1:1.
1. Antriebsvorrichtung für einen Greiferkopf in schützenlosen Webstühlen zur Herstellung
von Drahtgeweben und dergleichen, dadurch gekennzeichnet, daß sie ein kämmendes Zahnradpaar
(2, 3) mit einem Zahnradübersetzungsverhältnis von 1 : 1 umfaßt, wovon ein Zahnrad
(2) standfest bezüglich des Rahmens des Webstuhls ist und auf der Webstuhlkurbelwelle
gelagert ist und das andere (3) veranlaßt wird, einer im wesentlichen epizykloidischen
Bahn um es herum zu folgen, und das andere Zahnrad (3) starr mit einer Scheibenanordnung
(7) verbunden ist, mit der ein erstes Verbindungsstangenelement (13) gelenkig in Eingriff
kommt, wobei dieses Verbindungsstangenelement gegen ein Ende eines Lenkergestänges
(16) gekuppelt ist, welches drei Gelenkpunkte (15,33,50) umfaßt und mit einem zweiten
Ende gelenkig am Rahmen des Webstuhls ist und ein drittes Ende gelenkig bezüglich
eines zweiten Verbindungsstangenelementes (51) ist, um den den Greiferkopf betätigenden
Schlitten (54) hin- und herzubewegen, wobei die Position wenigstens eines (33) dieser
Gelenkpunkte verstellbar ist.
2. Antriebsvorrichtung nach Anspruch 1, dadurch gekennzeichnet, daß das zweite Zahnrad
(3) drehbar auf einer plattenartigen, im wesentlichen rechteckigen Zahnradhalterung
(4) gelagert ist und mit dem ersten Zahnrad (2) kämmt, die Scheibenanordnung (7) auf
der Zahnradhalterung (4) an der Seite, die zu der das zweite Zahnrad (3) tragenden
Seite entgegengesetzt liegt, gehaltert ist, die erste Verbindungsstange (13) mit einem
ihrer Enden mit der Scheibenanonrdnung (7) im Eingriff steht und sich auf einer im
wesentlichen vertikalen Ebene erstreckt, das Gestänge aus einem Satz von Stangen besteht,
die miteinander derart verbunden sind, daß sie eine im wesentlichen dreieckige Anordnung
definieren und in einer im wesentlichen vertikalen Ebene liegen, wobei zwei deren
Seiten um einen voreingestellten Abstand über die Basis des genannten Dreieckes vorstehen,
der Scheitel des Dreiecks am anderen Ende der ersten Verbindungsstange (13) angelenkt
ist, das untere Ende von einer der vom Dreieck vorstehenden Seiten an einen Regelschlitten
(30) angelenkt ist, und das untere Ende der anderen vom Dreieck vorstehenden Seite
an ein Ende einer zweiten doppelten Verbindungsstange (51) angelenkt ist, deren anderes
Ende mit dem Betätigungsschlitten (54) fürden Greiferkopf verbunden ist, die vorgenannten
Elemente derart miteinander verbunden und derart konstruiert sind, daß bei Drehung
der Kurbelwelle das zweite Zahnrad (3) zusammen mit dem Plattenteil (4) eine im wesentlichen
epicycloidale Bewegung um das erste Zahnrad (2) durchführt und die zweite doppelte
Verbindungsstange (51) den Betätigungsschlitten (54) für den Greiferkopf linear hin-und
herbewegt, welche Hin- und Herbewegung zeitlich auf die Schlagbewegung in der Webmaschine
abgestimmt ist und einen Vorwärtshub des Greiferkopfes, um den Schußdraht aufzunehmen,
und einen Rückwärtshub, um den Schußdraht freizugeben, beinhaltet, wobei nach Beendigung
des Rückwärtshubes und vor dem folgenden Vorwärtshub eine Stillstandsphase für den
Greiferkopf während einer regelbar voreingestellten Zeitperiode vorgesehen ist.
3. Antriebsvorrichtung nach Anspruch 2, dadurch gekennzeichnet, daß die plattenartige
Zahnradhalterung (4) von im wesentlichen rechteckiger Form zwei im wesentlichen runde,
in der Nähe der Enden derselben ausgebildete Offnungen (5,6) besitzt, wobei in eine
(6) der Offnungen (5,6) drehbar an entgegengesetzten Seiten der Zahnradhalterung (4)
das erste Zahnrad (2) eingreift, wogegen die Haltescheibenanorndnung (7) und die andere
der Offnungen (5) drehbar miteinander und mit dem zweiten Zahnrad (3) im Eingriff
stehen.
4. Antriebsvorrichtung nach Anspruch 1, dadurch gekennzeichnet, daß die Haltescheibenanordnung
(7) einen äußeren Laufkranz (8) und einen zentralen, scheibenartigen Teil (9) aufweist,
der mit einer sich im wesentlichen diametral erstreckenden Offnung (11) versehen ist,
welche sich an einem Ende erweitert, um verstellbar das genannte eine Ende der ersten
Verbindungsstange (13) darin zu sichern.
5. Antriebsvorrichtung nach Anspruch 1, dadurch gekennzeichnet, daß das erste Zahnrad
(2), das zweite Zahnrad (3) und die Zahnradhalterung (4) im Inneren eines Lagergehäuses
(SC) von im wesentlichen zylindrischer Form untergebracnt sind, das auf einer im wesentlichen
vertikalen Ebene an einer Anschlagschulter (SP) der Webmaschine angebracht ist, wobei
die Scheibenanordnung (7) vom Deckel (C) des Gehäuses (SC) wegsteht und sich ebenfalls
in einer im wesentlichen vertikalen Ebene erstreckt und der Deckel (C) des Gehäuses
(SC) schwenkfest mit der Zahnradhalterung (4) ausgebildet ist.
6. Antriebsvorrichtung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet,
daß der Regelschlitten (30), an den das vorstehende Ende der genannten einen Seite
der im wesentlichen dreieckigen Anordnung angelenkt ist, einen im wesentlichen parallelepipedischen
Schlittenkörper (36) aufweist, der starr mit dem Rahmen der Webmaschine verbunden
ist und zwei an entgegengesetzten Seiten desselben in Längsrichtung verlaufende Führungsschlitze
(35) besitzt, in welche eine Halteplatte (34) verschiebbar eingreift, die, starr mit
ihr verbunden, die Anlenkeinrichtungen (33) für das genannte vorstehende Ende der
einen Seite trägt, wobei eine Handradsteuerung (37) operativ mit der Platte (34) verbunden
ist, um die Platte zu verschieben und die Bewegung der Anordnung zeitlich auf die
Schlagbewegung in Ubereinstimmung mit dem jeweils herzustellenden Drahtgewebe abzustimmen.
7. Antriebsvorrichtung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet,
daß der Stangensatz (16) aus im wesentlichen sechs paarweise nebeneinander angeordneten
Stangen (17,18,20,21,22,23) besteht, um die im wesentlichen dreieckige Anordnung zu
bilden, wobei die beiden Basisstangen (17,18) in der dreieckigen Anordnung jochförmig
unter Bildung von Endteilen gebogen sind, die zu einer Stelle innerhalb des von der
Basis der dreieckigen Anordnung vorstehenden Endes konvergieren, zu welcher Stelle
hin auch die betreffenden Enden von zwei Stangen (20,21) konvergieren, welche die
genannte Seite der dreieckigen Anordnung definieren, wobei das verbleibende, die andere
Seite der dreieckigen Anordnung bildende Stangenpaar (22,23) im wesentlichen parallel
nebeneinanderliegend angeordnet ist.
8. Antriebsvorrichtung nach Anspruch 7, dadurch gekennzeichnet, daß die beiden Basisstangen
(17,18) jeweils in der Nähe ihrer nicht konvergierenden Enden mit Längsschlitzen (24,25)
versehen sind, welche sich nebeneinanderliegend erstrecken und von denen jeder verstellbar
mit dem Endteil der zwei im wesentlichen parallelen Stangen (23,22) der anderen Seite
der im wesentlichen dreieckigen Anordnung im Eingriff steht.
9. Antriebsvorrichtung nach Anspruch 8, dadurch gekennzeichnet, daß die Endteile der
zwei im wesentichen parallelen Stangen (22,23) verstellbar mit den Längsschlitzen
(25,24) der beiden Basisstangen (18,17) über einen Querbolzen (26) im Eingriff stehen,
der durch die beiden Schlitze (25,24) geführt ist und die beiden Endteile der beiden
im wesentlichen parallelen Stangen (22,23) miteinander verbindet, wobei die Verbindungszone
weiter hinten liegt als die Endteile der von der Basisseite vorstehenden Stangen.
10. Antriebsvorrichtung nach der vorhergehenden Ansprüche, dadurch gekennzeichnet,
daß die Halteplatte (34) für den Regelschlitten (30) eine im wesentlichen U-förmige
Gestalt besitzt, verschiebbar am Schlittenkörper (36) angeordnet und in jeder seiner
Einstellpositionen mittels zweier Bolzen blockierbar ist, die durch die beiden Führungsschlitze
(35) im Schlittenkörper (36) gesteckt sind und die parallelen Flügelabschnitte der
Platte miteinander verbinden, wobei die regelbare Zeitvoreinstellung für die Stillstandsphase
des Greiferkopfes im wesentlichen einer Drehung um 120-130% des zweiten Zahnrades
(3), der Zahnradhalterung (4), der Scheibenanordnung (7) und der ersten Verbindungsstange
(13) um das erste Zahnrad (2) entspricht und das Antriebsverhältnis des ersten Zahnrades
(2) zum zweiten Zahnrad (3) im wesentlichen 1:1 beträgt.
1. Dispositif d'entraînement d'une aiguille d'insertion dans des métiers à tisser
sans navette pour réaliser des tissus métalliques et analogues, caractérisé en ce
qu'il comprend une paire de roues dentées ongrenées (2,3) ayant un rapport d'engrenage
de 1:1, dont une roue (2) est solidaire du bâti du métier à tisser et est tourillonnée
sur le vilebreguin du métier à tisser, et l'autre (3) est entraînée à suivre une voie
sensiblement épicycloïdale autour de celle-ci, ladite autre roue (3) étant solidaire
d'un emsemble le de disque (7) avec lequel est engagée, de façon articulée, une première
bielle de liaison (13), laquelle bielle de liaison est couplée à une extrémité d'une
tringlerie (16) comprenant trois points d'articulation (15, 33, 50) et ayant une deuxième
extrémité articulée au bâti du métier à tisser, et une troisième extrémité articulée
à une seconde bielle de liaison (51) pour entraîner selon un mouvement de va-et-vient
le chariot d'entraînement (54) de l'aiguille d'insertion, la position d'au moins l'un
(33) desdits points d'articulation étant réglable.
2. Dispositif d'entraînement selon la revendication 1, caractérisé en ce que ladite
seconde roue dentée (3) est supportée, de façon rotative, sur un support en forme
de plaque, de configuration sensiblement rectangulaire (4) et est en engrènement avec
ladite première roue dentée (2), ledit ensemble de disque (7) est porté sur ledit
support (4) sur son côté opposé au côté portant ladite seconde roue dentée (3), ladite
première bielle se liaison (13) est engagée à une extrémité de celle-ci avec ledit
ensemble de disque (7) et s'étend dans un plan sensiblement vertical, ladite tringlerie
comprend une série de bielles interconnec- tées pour définir un agencement sensiblement
triangulaire et s'étendant dans un plan sensiblement vertical en ayant deux côtés
faisant saillie de distances prédéterminées au-delà de la base dudit triangle, le
sommet supérieur dudit triangle pouvant pivoter à l'autre extrémité de ladite première
bielle de liaison (13), l'extrémité inférieure de l'un desdits côtés en saillie dudit
triangle pouvant pivoter sur un chariot de réglage (30), et l'extrémité inférieure
de l'autre desdits côtés en saillie dudit triangle pouvant pivoter sur une extrémité
d'une seconde bielle de liaison double (51) dont l'autre extrémité est reliée audit
chariot d'entraînement (54) de ladite aiguille d'insertion, lendits éléments précédents
sont interconnectés et construits de sorte que, en faisant tourner leditvi- lebrequin,
ladite seconde roue dentée (3) réalise, en même temps que ledit élément en forme de
plaque (4), un mouvement sensiblement épicycloïdal autour de ladite première roue
dentée (2), et ladite seconde bielle de liaison double (51) entraîne ledit chariot
(54) pour ladite aiguille d'insertion selon un mouvement de va-et-vient linéaire,
ledit mouvement de va-et-vient étant synchronisé avec le déplacement du peigne dans
ledit métier à tisser et comportant une course en avant de ladite aiguille d'insertion
pour prendre le fil de trame et une course de retour de ladite aiguille d'insertion
pour relâcher le fil se trame, un temps mort étant prévu pour ladite aiguille s'insertion
pendant une période de temps prédéterminé réglable, à la fin de ladite course se retour
et avant la course en avant suivante.
3. Dispositif d'entraînement selon la revendication 2, caractérisé en ce que le support
de roue dentée en forme de plaque (4) de configuration sensiblement rectangulaire
présente deux ouvertures sensiblement circulaires (5,6) formées à proximité de ses
extrémités, l'une (6) desdites ouvertures (5,6) étant engagée de façon rotative, sur
des côtés opposés dudit support (4), par ladite première roue dentée (2), tandis que
ledit ensemble de disque de support (7), et l'autre desdites ouvertures (5) sont engagés
de façon rotative l'un par rapport à l'autre et par rapport à ladite seconde roue
dentée (3).
4. Dispositif d'entraînement selon la revendication 1, caractérisé en ce que ledit
ensemble de disque de support (7) comprend une bague externe de roulement (8) et une
partie centrale en forme de disque (9) munie d'une ouverture s'étendant sensiblement
sur un diamètre (11) qui s'élargit à une extrémité pour y fixer de façon réglable
ladite première extrémité de ladite première bielle de liaison (13).
5. Dispositif d'entraînement selon la revendication 1, caractérisé en ce que ladite
première roue dentée (2), ladite seconde roue dentée (3), et ledit support (4) sont
logés à l'intérieur d'un carter (SC) de forme sensiblement cylindrique et fixé, dans
un plan sensiblement vertical, à un épaulement d'aboutement (SP) dudit métier à tisser,
ledit ensemble de disque (7) faisant saillie du couvercle (C) dudit carter (SC) et
s'étendant également dans un plan sensiblement vertical, ledit couvercle (C) du carter
(SC) étant solidaire en pivotement dudit support (4).
6. Dispositif d'entraînement selon une quelconque des revendications précédentes,
caractérisé en ce que ledit chariot de réglage (30), par rapport auquel peut pivoter
l'extrémité en saillie dudit côté dudit agencement sensiblement triangulaire, comporte
un corps de chariot sensiblement parallélépipèdique (36) solidaire du châssis du métier
à tisser, ledit corps présentant deux fentes de guidage longitudinales (35) formées
à travers des côtés opposés de celui-ci, une plaque de support (34) étant engagée
de façon coulissante dans lesdites fentes de guidage (35), ladite plaque supportant
de façon solidaire de celle-ci des moyens d'articulation ou de pivot (33) pour ladite
extrémité en saillie dudit côté, et des moyens de commande d'une roue à main (37)
étant couplés de façon active à ladite plaque (34) pour déplacer ladite plaque et
synchroniser le déplacement dudit dispositif avec le déplacement dudit peigne selon
le type de tissu métallique à réaliser.
7. Dispositif d'entraînement selon une quelconque des revendications précédentes,
caractérisé en ce que ladite tringlerie (16) comporte essentiellement six bielles
(17,18,20,21,22,23) en paires juxtaposées pour définir ledit agencement sensiblement
triangulaire, les deux bielles de base (17,18) dans ledit agencement triangulaire
étant courbées en forme d'étrier pour fournir des parties d'extrémité respectives
convergeant en un point situé à l'intérieur de l'extrémité en saillie de ladite base
dudit agencement triangulaire, au même dit point convergeant également les extrémités
respectives de deux bielles (20,21) définissant ledit côté dudit agencement triangulaire,
la paire se bielles restante (22,23) définissant l'autre côté dudit agencement triangulaire
en étant juxtaposées de façon sensiblement parallèle.
8. Dispositif d'entraînement selon la revendication 7, caractérisé en ce que lesdites
deux bielles de base (17,18) sont chacune munies, à proximité se leurs extrémités
non convergentes, d'une fente longitudinale respective (24,25), lesdites fentes longitudinales
(24,25) s'étendant de façon juxtaposée et chacune desdites fentes étant engagée, de
façon réglable, par une partie d'extrémité respective desdites deux bielles sensiblement
parallèles (23,22) dudit autre côté dudit agencement sensiblement triangulaire.
9. Dispositif d'entraînement selon la revendication 8, caractérisé en ce que lesdites
parties d'extrémité desdites deux bielles sensiblement parallèles (22,23) sont engagées,
de façon réglable, dans lesdites fentes longitudinales (25,24) desdites deux bielles
de base (18,17) au moyen d'un bouchon transversal (26) traversant lesdites deux fentes
(25,24) et couplant ensemble lesdites parties d'extrémité desdites deux bielles sensiblement
parallèles (22,23), la zone de couplage étant située plus en arrière que lesdites
parties d'extrémité desdites bielles en saillie dudit côté de base.
10. Dispositif d'entraînement selon une quelconque des revendications précédentes,
caractérisé en ce que ladite plaque de support (34) pour ledit chariot de réglage
(30) présente une configuration sensiblement en U et est engagée de façon coulissante
sur ledit corps de chariot (36), ladite plaque (34) pouvant être verrouillée en chaque
position de réglage de celle-ci au moyen de deux boulons traversant lesdites deux
fentes de guidage (35) dans ledit corps de chariot (36) et couplant ensemble les parties
d'aile parallèles de ladite plaque, et en ce que ladite période de temps réglage prédéterminée
pour ledit temps mort de l'aiguille d'insertion correspond sensiblement à une rotation
de 120-130° de ladite seconde roue dentée (3), dudit support (4), dudit ensemble de
disque (7), et de ladite première bielle de liaison (13) autour de ladite première
roue dentée (2), et en ce que le rapport d'entraînement de ladite première roue (2)
à ladite seconde roue (3) est sensiblement 1:1.