EP2372003B1 - Dispositif de came pour aiguille de réception de transfert - Google Patents

Dispositif de came pour aiguille de réception de transfert Download PDF

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Publication number
EP2372003B1
EP2372003B1 EP09830155.9A EP09830155A EP2372003B1 EP 2372003 B1 EP2372003 B1 EP 2372003B1 EP 09830155 A EP09830155 A EP 09830155A EP 2372003 B1 EP2372003 B1 EP 2372003B1
Authority
EP
European Patent Office
Prior art keywords
cam
needle
transfer receiving
butt
end side
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP09830155.9A
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German (de)
English (en)
Other versions
EP2372003A1 (fr
EP2372003A4 (fr
Inventor
Hirotoshi Yamano
Ikuhito Hirai
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shima Seiki Mfg Ltd
Original Assignee
Shima Seiki Mfg Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shima Seiki Mfg Ltd filed Critical Shima Seiki Mfg Ltd
Publication of EP2372003A1 publication Critical patent/EP2372003A1/fr
Publication of EP2372003A4 publication Critical patent/EP2372003A4/fr
Application granted granted Critical
Publication of EP2372003B1 publication Critical patent/EP2372003B1/fr
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Classifications

    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B15/00Details of, or auxiliary devices incorporated in, weft knitting machines, restricted to machines of this kind
    • D04B15/32Cam systems or assemblies for operating knitting instruments
    • D04B15/36Cam systems or assemblies for operating knitting instruments for flat-bed knitting machines
    • D04B15/362Cam systems or assemblies for operating knitting instruments for flat-bed knitting machines with two needle beds in V-formation
    • D04B15/365Cam systems or assemblies for operating knitting instruments for flat-bed knitting machines with two needle beds in V-formation with provision for loop transfer from one needle bed to the other
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B15/00Details of, or auxiliary devices incorporated in, weft knitting machines, restricted to machines of this kind
    • D04B15/32Cam systems or assemblies for operating knitting instruments
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B15/00Details of, or auxiliary devices incorporated in, weft knitting machines, restricted to machines of this kind
    • D04B15/32Cam systems or assemblies for operating knitting instruments
    • D04B15/36Cam systems or assemblies for operating knitting instruments for flat-bed knitting machines

Definitions

  • the present invention relates to a cam device for a transfer receiving needle mounted to a carriage that runs back and forth along a needle bed of a flatbed knitting machine and that drives a transfer receiving needle, and in particular to a cam device according to the preamble of claim 1 and as known from patent citation 1.
  • Fig. 4 shows a structure of a knitting needle 1 that can make stitch transfer motion together with knitting motion.
  • the knitting needle 1 is a latch needle and is equipped with a hook 3 that latches a knitted stitch and a latch 4 that opens and closes the hook 3 to the needle body 2 on the head end side that fronts on the needle bed gap.
  • a needle jack 5 is linked on the base end side, and to one side, a stitch transfer piece 6 is added.
  • the front and the back are shown with the direction in which the needle advances to the needle bed gap designated as the front and the direction in which the needle retracts from the needle bed gap designated as the back.
  • the round mark shows the wire installed to the needle bed in such a manner as to pass through the needle groove.
  • the needle jack 5 is generally in an arc shape, is energized in such a manner that the tail end comes in contact with the bottom of the needle groove and the intermediate portion is lifted up from the needle groove elastically.
  • the rear butt 7 has the upper end side protruded from the needle groove and is subject to the motion of the cam device mounted to the carriage.
  • the front butt 8 has the upper end side constantly protruded from the needle groove. Floating and sinking of the needle jack 5 in the needle groove is changed over by the state for the pressing state of the select jack 9 against the selection butt 10.
  • the pressing state of the selection butt 10 is varied in accordance with a presser disposed on the trajectory of the select jack 9 which is changed over the selector 11.
  • a needle selection butt 14 is installed to the selector 11, together with a lowering butt 12 for retraction and a raising butt 13 for advance.
  • the needle selection butt 14 is installed selectively to one of a plurality of locations in such a manner that the location of the needle selection butt 14 is different from that of the adjacent knitting needle 1.
  • Fig. 5 shows a structure of a principal portion of a cam device 20 that works on the rear butt 7 and the front butt 8 of the knitting needle 1 and makes them perform knitting motion and stitch transfer motion with the carriage running direction set as the lateral direction.
  • the cam device 20 is able to make the knitting needle 1 perform the equivalent motion whether the running direction is right or left, and one or a plurality of cam devices is mounted to the surface of the bottom board on the side in which the carriage faces on the needle bed. In the event that the plural cam devices 20 are mounted, they are aligned in the lateral direction of the figure.
  • a transfer cam for both sending and receiving 21, a fixed raising cam 22, and movable raising cam 23 are mounted at the center portion, and stitch cams 24 are mounted on both sides in the running direction.
  • the transfer cam for both sending and receiving 21 and movable raising cam 23 are movable type cams that rise and sink from the surface of the carriage bottom board, the movable raising cam 23 and the transfer cam for both sending and receiving 21 are changed over, respectively, in such a manner that the movable raising cam protrudes in the knitting motion and the transfer cam for both sending and receiving 21 protrudes in the stitch transfer motion.
  • a cam device for a transfer receiving needle 26 that has a recess 25 nearly as high as that of the carriage bottom board surface is formed.
  • a chevron shaped full-height cam 27 is included, which has the height from the carriage bottom board surface equivalent to that of the fixed raising cam 22.
  • half-height cams 28 whose height from the bottom board surface is shorter than that of the full-height cam 27 are installed. From the vicinity of the carriage bottom board surface to the half-height cam 28, a slope 29 is formed and the height continuously changes.
  • This kind of cam device for the transfer receiving needle 26 works on the rear butt 7 of the knitting needle 1 and forces the rear butt 7 to perform stitch transfer motion on the receiving needle side.
  • the stitch transfer cam for both sending and receiving 21 works on the front butt 8 of the knitting needle 1 under the protruded state, and at the front edge 21a, forces the stitch transfer needle side to perform the forward motion and on the rear edge 21b, forces the stitch receiving needle side to perform retracting motion.
  • the motions of stitch transfer needle and the stitch receiving needle are changed over in accordance with the trajectory in which the selection butt 10 of the select jack 9 passes.
  • a fixed guide cam 30 is installed to force the stitch transfer needle side to perform retract motion.
  • the selection butt 10 is changed over to any of the A-position 10a where the butt advances, the H-position 10h where the butt is located at the intermediate, or B-position 10b, where the butt is at the base.
  • the A-position 10a no presser is disposed.
  • a tuck presser 31 and a half presser 32 are disposed.
  • the tuck presser 31 and the half presser 32 are movable type pressers that can control rise and sink.
  • the fixed presser 33 is disposed.
  • the tuck presser 31 is allowed to sink and the half presser 32 is held protruded.
  • the rear butt 7 is guided to pass the trajectory 7a that advances along the cam face 22a on the side of the fixed raising cam 22.
  • the front butt 8 reaches the base portion of the front edge 21a of the transfer cam for both sending and receiving 21, the knitting needle 1 further advances through the trajectory 8a and performs motion as a stitch transfer needle. Because the movable raising cam 23 is in the sunken state, the trajectory 7a of the rear butt 7 can pass the position of the movable raising cam 23.
  • the knitted stitch is able to be transferred to the hook 3 of the receiving needle.
  • Fig. 6 shows a structure of an enlarged vicinity portion of the cam device for the transfer receiving needle 26 and side structure 26a as viewed from front.
  • the selection butt 10 is pressurized by the half presser 32, and therefore, the trajectory 7h of the rear butt 7 passes the cam face 22a on the side of the fixed raising cam 22, passes the slope 29, and reaches to the surface of the half-height cam 28 whose height from the bottom board 35 is H.
  • the rear end of the rear butt 7 comes in contact with the cam face 27a on the front edge of the full-height cam 27, whose height from the bottom board 35 is F, on the surface of the half-height cam 28.
  • the rear butt 7 advances in the trajectory 7h along the slope of the cam face 27a and reaches the top of the chevron shaped full-height cam 27. In the vicinity of the top of the full-height cam 27, any half-height cam 28 is not installed, and therefore, the rear butt 7 advances from the surface of the half-height cam 28 to the recess 25, and the rear end of the rear butt 7 comes in contact with the cam face 28a of the front edge of the half-height cam 28, and advances as to pass trajectory 7h.
  • the retracting motion as a receiving needle is performed when the front end of the front butt 8 is guided by the rear edge 21b of the stitch transfer cam for both sending and receiving 21.
  • the fixed raising cam 22 no recess 25 is provided and the cam face 28a of the half height cam 28 may be formed up to the bottom board 35.
  • the rear end of the rear butt 7 is guided by the cam face 27a of the full-height cam 27.
  • the front edge of the full-height cam 27 approximately has a chevron shape, and the cam face 27a formed in the front edge has the center portion tilted as to protrude forwards, and the receiving needle therefore advances.
  • the route of the rear butt 7 along the trajectory 7h has the height from the bottom board 35 varied stepwise from the surface of the half-height cam 28 to the bottom surface of the recess 25 in the vicinity of the top of the full-height cam 27 and a level difference D is generated.
  • the rear butt 7 passes the portion of the level difference D, since the pressing force to the top end of the rear butt 7 is released, the needle jack 5 therefore is lifted up inside the needle groove by the elastic force, and the rear butt 7 further protrudes from the needle groove surface.
  • the rear butt 7 enters into the recess 25 and then protrudes until the head end comes closer to the surface of the bottom board 35 surface rather than to the surface of the half-height cam 28.
  • the rear butt 7 advances with the rear end guided by the cam face 28a of the half-height cam 28.
  • This kind of level difference D is provided in such a manner that the rear butt 7 passes the surface at the half-height cam 28 on the preceding side and is guided by the cam face 28a of the front edge at the half-height cam 28 on the following side when the carriage runs both back and forth ways.
  • the level difference D is provided inside the full height F, hanging margins 27b, 28b of the rear butt 7 with respect to the cam faces 27a, 28a are decreased.
  • the cam faces 27a, 28a are susceptible to fatigue or possibly cause damage or seizure because the force exerted on the rear butt 7 is concentrated to generate excessive stress.
  • the rear end of the rear butt 7 comes in contact with the cam face 28a of the half-height cam 28 before the protrusion based on the elastic force of the needle jack 5 does not satisfactorily take place at the portion of the level difference D, and the practical hanging margin is still more reduced.
  • the protrusion of the rear butt 7 may not take place in time, and the rear butt 7 may deviate from the original trajectory 7h, possibly overrides the cam face 28a, and may pass the cam face.
  • the present invention relates to a cam device for a transfer receiving needle, mounted to a bottom board of a carriage which runs back and forth along needle beds of a flatbed knitting machine, as part of a knitting cam device including an approximately chevron shaped raising cam, having a cam surface of a full-height from the carriage bottom board on an outside front edge, for knitting needles which are provided in parallel on the needle bed and have two butts spaced in front-rear direction respectively, to advance them in the front of the needle bed gap and to retreat in the rear of the needle bed gap, under the action of the cam surface to the rear butt so as to make the knitting needle to do knitting motion and to do transfer sending motion, and disposed inside the raising cam, for working on the rear butt to be guided by the fun-height cam face as the upper end of the rear butt coming in contact with a half-height surface, to make the knitting needle to do transfer receiving motion, comprising:
  • said support elongated holes (42d) are formed so as to the base end side and the idle end side of said transfer receiving cam (46) are disposed along the running direction of said carriage.
  • a pair of transfer receiving cams are mounted separately on one side and on the other side in the carriage running direction.
  • the transfer receiving cam that serves as the preceding side sinks when the surface is pressurized by the rear butt, and therefore, the rear butt is allowed to advance by a chevron-shaped intermediate cam, and a level difference is decreased or cancelled at the portion in which the state is shifted to that guided by the cam face of the transfer receiving cam on the following side where the protruded state is maintained by a spring energizing, and the rear butt is able to be smoothly passed.
  • a hanging margin on the cam face of the transfer receiving cam on the following side that comes in contact with the rear end of the rear butt and drives is sufficiently secured and reliable guidance is able to be performed.
  • Rising and sinking of the transfer receiving cam are performed by the spring energizing and pressurization by the rear butt after the butt passes, and the mechanism is able to be simplified and is able to be compactly installed on the carriage bottom board.
  • the transfer receiving cam has a contact surface from an intermediate section between the base end and the idle end to the idle end side and the contact surface comes in contact with the bottom surface of the recess of the raising cam in a protruded state, so that the protruded state is able to be restricted not to protrude too high.
  • the transfer receiving cam because the base end an idle en transfer receiving cam are disposed along the running direction of the carriage, securely supports the base end side, and the idle end side is able to be reliably raised and sunk by a swing displacement.
  • the transfer receiving cam on the preceding side is pressurized by the passage of the rear butt from the base end side which is supported in a state capable of a swing displacement even if the rear butt is protruded before it first passes, and the rear butt is able to be definitely sunk before the rear butt passes the idle end side.
  • Fig. 1 shows a schematic structure of a cam device for a transfer receiving needle 40 as one embodiment of the present invention.
  • the cam device for the transfer receiving needle 40 is substituted for the cam device for the transfer receiving needle 26 shown in Fig. 5 and Fig. 6 and is able to be used in the cam device 20 of Fig. 5 and is able to drive the knitting needle 1 as shown in Fig. 4 .
  • Fig. 1 same as Fig. 6 , the structure of the main part of the cam device for the transfer receiving needle 40 is shown in correspondence to the side structure 40a as viewed from the front.
  • the cam device for the transfer receiving needle 40 is assembled into inside of a fixed raising cam 42 mounted on the carriage bottom board 35. To the front edge of the outside of the fixed raising cam 42, a cam face 42a is installed. To the portion in the vicinity of the center of the fixed raising cam 42, there formed is an intermediate cam 42c whose front edge serves as a cam face 42b and has a chevron shape, and comes in contact with the rear end of the rear butt 7 and advances the rear butt 7. On both sides of the vicinity of the top part of the intermediate cam 42c, one pair of transfer receiving cams 46 are disposed.
  • the transfer receiving cam 46 has a cam face 46a formed on the front edge side, swing shaft 46b on the base end side fitted to support elongated hole 42d formed on the rear side of fixed raising cam 42, and the idle end side is supported in a state capable of swing in which the idle side rises and sinks with respect to the bottom board 35 around the swing shaft 46b parallel to the surface of the bottom board 35.
  • surface 46c which becomes as high as that of the surface of the fixed raising cam 42 when the cam protrudes from the bottom board 35 of the carriage by a swing displacement, is provided as well as slopes 46d, 46e linked to the surface 46c.
  • a compression spring 47 is inserted between the bottom board 35 of the carriage and energizes in such a manner that the idle end side protrudes from the bottom board 35.
  • a recess 35a which houses the transfer receiving cam 46 is formed.
  • the rear butt 7 of the knitting needle 1 which serves as a receiving needle moves relative to the cam device for the transfer receiving needle 40 as shown as a trajectory 7H.
  • the front end of the upper end of the rear butt 7 hangs on the slope 46d and the rear end of the rear butt 7 is driven to advance by the guidance at the cam face 42b of the front edge of the intermediate cam 42c.
  • the position where the rear butt 7 hangs on the transfer receiving cam 46 may become ahead from the position shown in the figure.
  • the rear butt 7 comes close to the cam face 42b not from the slope 46d but in the passage that passes from the slope 46e to the surface 46c.
  • slopes 46d, 46e are pressed in opposition to the energizing force of the compression spring 47, and the idle end side of the transfer receiving cam 46 is sunk and the upper end of the rear butt 7 comes in contact with the surface 46c of the transfer receiving cam 46.
  • the surface 46c of the transfer receiving cam 46 is pressurized by the upper end of the rear butt 7 and sinks on the carriage bottom board 35 side.
  • the rear butt 7 moves to the idle end side of the transfer receiving cam 46 on the following side, the rear butt 7 advances from the cam face 46a and the upper end faces on the bottom board 35. Since the surface 46c on the idle end side of the transfer receiving cam 46 on the preceding side sinks, the level difference may be decreased or cancelled when the rear butt 7 passes the vicinity of the top portion of the intermediate cam 42c. Since the level difference becomes small, even when the carriage runs at a high speed, smooth passage is enabled.
  • the rear butt 7 passes the top portion of the intermediate cam 42c as the rear butt 7 runs along the trajectory 7H, the rear end of the rear butt 7 comes in contact with the cam face 46a of the right-side transfer receiving cam 46 and is guided by the cam face 46a.
  • the right-side transfer receiving cam 46 which serves as the following side has the idle end side protruded from the bottom board 35 by energizing of the compression spring 47.
  • the height of the cam face 46a from the bottom board 35 becomes equivalent to the height of the surface of the fixed raising cam 42, that is, the height of the cam face 42b formed on the front edge of the intermediate cam 42c.
  • Fig. 2 shows the shape of the left-side transfer receiving cam 46 of Fig. 1 as viewed from the plane, front, and right surface side.
  • the right-side transfer receiving cam 46 also has a similar shape basically symmetrical.
  • a spring receiving hole 46f which houses the head end of the compression spring 47 is provided, and at the head end, a flat contact surface 46g that comes in contact with the bottom surface of the recess 35a of the bottom board 35 is provided in the sunk state shown in the left side of Fig. 1 .
  • a flat contact surface 46h is also provided, in the protruded state with respect to the rear surface side of the fixed raising cam 22.
  • the contact surface 46g tilts against the contact surface 46h as to come in contact with the bottom surface of the flat recess 35a when the contact surface 46g sinks on the bottom board 35 side by swing displacement.
  • Fig. 3 shows the shape of the fixed raising cam 42 of Fig. 1 as viewed from the plane, side cross-section, and back surface.
  • the fixed raising cam 42 is approximately in the form of plates and the cam face 42a on the outside and the cam face 42b of the intermediate cam 42c have the equivalent height.
  • support elongated holes 42d that house and supports in a state capable of swing displacement the swing shaft 46b on the base end side of the transfer receiving cam 46 are provided at intervals in the running direction.
  • a recess 42e that has the bottom surface which comes in contact with the contact surface 46h, is installed on the rear surface side of the fixed raising cam 42.
  • the transfer receiving cam 46 on the preceding side is protruded from the bottom board 85 by energizing of the compression spring 47 before the rear butt 7 passes for the first time.
  • the slope 46d is subject to pressurization and swing displacement and the idle end side sinks on the bottom board 35 side.
  • the surface 46c is pressurized and is definitely sunk when the rear butt 7 passes on the idle end side of the transfer receiving cam 46.
  • the intermediate cam 42c is installed to part of the fixed raising cam 42, but the cam corresponding to the intermediate cam 42c may be installed independently from the fixed raising cam 42.
  • the transfer receiving cam 46 the base end side and the idle end side are disposed in the running direction, but even if they are disposed in the direction that intersects with the running direction, adjusting the directions of slopes 46d, 46e and the like can make the idle end side rise and sink in the state nearly equivalent to that of the transfer receiving cam 46.
  • a cam corresponding to the half-height cam 28 shown in Fig 5 and Fig. 6 may be translated in the height direction from the bottom board 35 of the carriage not in the-swing displacement but in the elevate displacement, and may be allowed to rise and sink.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Knitting Machines (AREA)
  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)

Claims (2)

  1. Dispositif de cames pour une aiguille de réception de transfert (40),
    qui est monté sur une de plaque de fond d'un chariot qui se déplace en va-et-vient le long de fontures d'une machine à tricoter à plat, en tant que partie d'un dispositif de cames de tricotage comprenant une came d'élévation approximativement en forme de chevron (42), ayant une surface de came (42a, 42b) et une pleine hauteur par rapport à la plaque de fond du chariot sur un bord avant extérieur, pour des aiguilles à tricoter (1) qui sont prévues parallèles sur la fonture et comportent deux talons (7, 8) espacés dans la direction avant-arrière respectivement, pour les faire avancer vers l'avant de l'intervalle entre fontures et pour les faire reculer vers l'arrière de l'intervalle entre fontures, sous l'action de la surface de came (42a, 42b) sur le talon arrière (7) de façon à faire en sorte que l'aiguille à tricoter (1) réalise un mouvement de tricotage et réalise un mouvement d'envoi de transfert, et
    qui est disposé à l'intérieur de la came d'élévation (42), pour travailler sur le talon arrière (7) qui doit être guidé par la face de came à pleine hauteur (42b) lorsque l'extrémité supérieure du talon arrière (7) vient en contact avec une surface à demi hauteur, pour faire en sorte que l'aiguille à tricoter (1) réalise un mouvement de réception de transfert, comprenant :
    une came intermédiaire (42c), ayant une forme de chevron dont l'extrémité avant sert de face de came et vient en contact avec le bord arrière du talon arrière (7) pour le faire avancer, et ayant une hauteur aussi élevée que celle de la came d'élévation (42) ;
    une paire de cames de réception de transfert (46), disposées sur les deux côtés du voisinage de la partie supérieure de la came intermédiaire (42c), ayant une face de came (46a) formée sur le côté du bord avant, et ayant un côté d'extrémité de base et un côté d'extrémité de repos, d'où il résulte que le côté d'extrémité de repos s'élève et s'abaisse par rapport à la plaque de fond (35) par un déplacement oscillant autour d'un arbre d'oscillation (46b) parallèle à la surface de la plaque de fond (35) sur le côté de l'extrémité de base, et d'où il résulte que sur le côté d'extrémité de repos, une surface (46c) vient à la même hauteur que la surface de la came d'élévation (42) lorsque la came sort de la plaque de fond (35), et suit la pente (46d, 46e) reliée à la surface (46c) ; et
    un ressort (47) monté sur chaque came de réception de transfert (46) respectivement, et agissant de telle sorte que le côté d'extrémité de repos de chaque came de réception de transfert (46) est amené dans l'état saillant par rapport à la plaque de fond (35) ;
    dans lequel la surface arrière de la came d'élévation (42) est munie d'une cavité (42e) ayant une surface de fond, et supporte des trous allongés (42d) pour abriter et supporter les arbres d'oscillation (46b) dans un état apte à un déplacement oscillant prévu à un certain intervalle dans la direction de déplacement,
    et la came de réception de transfert (46) est munie d'une surface de contact (46h) pour venir en contact avec la surface de fond de la cavité (42e) de la came d'élévation (42) dans un état saillant, la surface de contact (46h) étant disposée sur le côté de la surface d'une section intermédiaire entre l'extrémité de base et l'extrémité de repos jusqu'au côté d'extrémité de repos.
  2. Dispositif de cames pour l'aiguille de réception de transfert (40) selon la revendication 1, dans lequel les trous de support allongés (42d) sont formés de façon à ce que le côté d'extrémité de base et le côté d'extrémité de repos de la came de réception de transfert (46) soit disposés suivant la direction de déplacement du chariot.
EP09830155.9A 2008-12-01 2009-11-26 Dispositif de came pour aiguille de réception de transfert Active EP2372003B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2008306910 2008-12-01
PCT/JP2009/006374 WO2010064384A1 (fr) 2008-12-01 2009-11-26 Dispositif de came pour aiguille de réception de transfert

Publications (3)

Publication Number Publication Date
EP2372003A1 EP2372003A1 (fr) 2011-10-05
EP2372003A4 EP2372003A4 (fr) 2013-02-27
EP2372003B1 true EP2372003B1 (fr) 2014-05-21

Family

ID=42233043

Family Applications (1)

Application Number Title Priority Date Filing Date
EP09830155.9A Active EP2372003B1 (fr) 2008-12-01 2009-11-26 Dispositif de came pour aiguille de réception de transfert

Country Status (5)

Country Link
EP (1) EP2372003B1 (fr)
JP (1) JP5543925B2 (fr)
KR (1) KR101356443B1 (fr)
CN (1) CN102224286B (fr)
WO (1) WO2010064384A1 (fr)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108842279A (zh) * 2018-08-31 2018-11-20 泰州市天圣针织机械实业有限公司 一种电机款单双山板
CN109468738B (zh) * 2019-01-14 2023-09-22 宁波博日机械有限公司 一种三系统横机底板
TWI747185B (zh) * 2020-03-05 2021-11-21 典洋針織機械股份有限公司 高密度織物的移圈裝置及其方法

Family Cites Families (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB220839A (en) * 1923-10-08 1924-08-28 Anton Strelz Improvements in knitting machines
JPS591750A (ja) * 1982-04-28 1984-01-07 株式会社島アイデア・センタ− 横編機
JPS6081356A (ja) * 1983-10-07 1985-05-09 株式会社島精機製作所 横編機
JPS6237142A (ja) * 1985-08-12 1987-02-18 株式会社タナベ 直線加工式自動製函機におけるブランク後方折曲げ方法およびその装置
DE3661204D1 (en) * 1985-09-04 1988-12-22 Steiger Sa Atelier Constr Cam unit for a flat bed knitting machine, and knitting machine equipped with said cam unit
JPS62110954A (ja) * 1985-09-04 1987-05-22 アテリエ ドウ コンストリクシオンステ−ジエ ソシエテ アノニム 横編み機のカムホルダ及びこのようなカムホルダを装備した編み機
CN2173260Y (zh) * 1993-04-08 1994-08-03 邱云国 横机的机头三角装置
JP4015982B2 (ja) * 2003-10-10 2007-11-28 株式会社島精機製作所 編地編成用カム装置
JP5057996B2 (ja) * 2005-12-27 2012-10-24 株式会社島精機製作所 横編機の選針装置
CN201148506Y (zh) * 2007-11-21 2008-11-12 萧世贤 单高峰式移针三角系统

Also Published As

Publication number Publication date
EP2372003A1 (fr) 2011-10-05
WO2010064384A1 (fr) 2010-06-10
KR20110091692A (ko) 2011-08-12
CN102224286B (zh) 2013-09-11
KR101356443B1 (ko) 2014-02-03
EP2372003A4 (fr) 2013-02-27
JP5543925B2 (ja) 2014-07-09
CN102224286A (zh) 2011-10-19
JPWO2010064384A1 (ja) 2012-05-10

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