JPWO2010064384A1 - Cam mechanism for transfer needle - Google Patents

Cam mechanism for transfer needle Download PDF

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JPWO2010064384A1
JPWO2010064384A1 JP2010541209A JP2010541209A JPWO2010064384A1 JP WO2010064384 A1 JPWO2010064384 A1 JP WO2010064384A1 JP 2010541209 A JP2010541209 A JP 2010541209A JP 2010541209 A JP2010541209 A JP 2010541209A JP WO2010064384 A1 JPWO2010064384 A1 JP WO2010064384A1
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cam
needle
transfer
bat
transfer receiving
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JP5543925B2 (en
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浩稔 山野
浩稔 山野
郁人 平井
郁人 平井
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Shima Seiki Manufacturing Ltd
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Shima Seiki Manufacturing Ltd
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    • 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
    • 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
    • D04B15/36Cam systems or assemblies for operating knitting instruments for flat-bed knitting machines

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

Abstract

後バットが段差の部分を円滑に通過し、通過後のカム面での掛り代を充分に確保して、確実な案内を行うことができる目移し受け針用カム装置を提供する。キャリッジ左行の目移し時に、受け針となる編針1の後バット7は、軌跡7Hとして示すように移動する。左側の目移し受けカム46に対しては、後バット7の上端の前端が傾斜面46dに掛って、後バット7の後端が中間カム42cの前縁のカム面42bで案内される。後バット7の前進で、圧縮ばね47の付勢力に抗して傾斜面46dは押圧され、目移し受けカム46は遊端側が沈み、後バット7の上端が目移し受けカム46の表面46cに当接する状態となる。表面46cが沈むので、中間カム42cの頂部付近で、後バット7の通過経路の段差を小さくしたり解消することができる。頂部付近を過ぎると突出状態のカム面42bに当接するので、掛り代を充分に多くすることができる。There is provided a cam device for a transfer receiving needle that allows a rear bat to smoothly pass through a stepped portion, to ensure a sufficient allowance on the cam surface after passing, and to perform reliable guidance. The rear bat 7 of the knitting needle 1 serving as a receiving needle moves as indicated by a locus 7H when the carriage is moved to the left line. With respect to the left transfer receiving cam 46, the front end of the upper end of the rear bat 7 is hooked on the inclined surface 46d, and the rear end of the rear bat 7 is guided by the cam surface 42b of the front edge of the intermediate cam 42c. As the rear bat 7 moves forward, the inclined surface 46d is pressed against the urging force of the compression spring 47, the transfer receiving cam 46 sinks on the free end side, and the upper end of the rear bat 7 transfers to the surface 46c of the receiving cam 46. It will be in the state of contact. Since the surface 46c sinks, the step of the passage path of the rear bat 7 can be reduced or eliminated near the top of the intermediate cam 42c. After passing the vicinity of the top, the cam surface 42b comes into contact with the protruding state, so that the hooking allowance can be increased sufficiently.

Description

本発明は、横編機の針床に沿って往復走行するキャリッジに搭載され、目移しの受け針を駆動する目移し受け針用カム装置に関する。   The present invention relates to a cam device for a transfer needle that is mounted on a carriage that reciprocates along a needle bed of a flat knitting machine and drives a transfer needle.

従来から、歯口を挟む両側に針床を備える横編機では、各針床に備えられる多数の編針を選択的に駆動して編目を編成するとともに、針床間の目移しも併用することで、多様な組織の編地を編成可能になっている。各針床には、歯口に進退する方向に編針を摺動変位可能に収容する針溝が並設されている。各針溝に収容される編針からは、針床の表面にバットが突出し、針溝が並ぶ方向に沿って往復移動するキャリッジに搭載されるカム装置がバットに作用して、編針が駆動される。キャリッジに搭載されるカム装置では、編目の編成動作とともに、目移しの動作も可能にして、コンパクト化が図られている(たとえば、特許文献1および特許文献2参照)。   Conventionally, in a flat knitting machine having needle beds on both sides sandwiching the mouth, a number of knitting needles provided in each needle bed are selectively driven to knitting stitches, and transfer between needle beds is also used in combination. Thus, knitted fabrics of various organizations can be knitted. Each needle bed is provided with a needle groove that accommodates the knitting needle so as to be slidable and displaceable in the direction of advancing and retreating to the mouth. From the knitting needles accommodated in the respective needle grooves, a bat protrudes from the surface of the needle bed, and a cam device mounted on a carriage that reciprocates along the direction in which the needle grooves are arranged acts on the bat to drive the knitting needles. . In the cam device mounted on the carriage, not only the stitch knitting operation but also the transfer operation can be performed to achieve compactness (see, for example, Patent Document 1 and Patent Document 2).

図4は、編成動作とともに、目移しの動作も可能な編針1の構成を示す。編針1は、べら針であり、歯口に臨む先端側の針本体2に、編目を係止するフック3と、フック3を開閉するラッチ4とを備える。針本体2には、基端側に針本体ジャック5が連結され、一側方に目移し片6が付加されている。なお、以下の説明では、歯口に進出する方向を前として、および歯口から退入する方向を後として、前後を表示する。また丸印は、針溝を貫通するように針床に設けられるワイヤを示す。   FIG. 4 shows a configuration of the knitting needle 1 that can be transferred together with the knitting operation. The knitting needle 1 is a latch needle, and includes a hook body 3 that locks the stitch and a latch 4 that opens and closes the hook 3 on a needle body 2 on the distal end side facing the tooth opening. A needle body jack 5 is connected to the needle body 2 on the proximal end side, and a transfer piece 6 is added to one side. In the following description, the front and rear are displayed with the direction of advancement to the mouth as the front and the direction of retreat from the mouth as the back. A circle indicates a wire provided on the needle bed so as to penetrate the needle groove.

ニードルジャック5には、後バット7および前バット8が間隔をあけて設けられてい る。ニードルジャック5は、大略的に弧状であり、尾端が針溝の底部に当接し、中間部は弾発的に針溝から浮上するように付勢される。ニードルジャック5が浮上する状態で、後バット7は上端側が針溝から突出し、キャリッジに搭載されるカム装置の作用を受ける状態となる。前バット8は、常に上端側が針溝から突出する。ニードルジャック5の針溝内での浮沈は、セレクトジャック9の選択用バット10への押圧状態によって切換えられる。選択用バット10の押圧状態は、セレクタ11によって切換えられるセレクトジャック9の軌道に配置されるプレッサに応じて変化する。セレクタ11には、後退させるための下げ用バット12および前進させるための上げ用バット13とともに、選針用バット14が設けられている。選針用バット14は、複数の位置のうちの一つに、隣接する編針1とは位置が異なるように、選択的に設けられる。   The needle jack 5 is provided with a rear bat 7 and a front bat 8 at an interval. The needle jack 5 is generally arcuate, the tail end abuts against the bottom of the needle groove, and the intermediate part is urged so as to rise elastically from the needle groove. With the needle jack 5 floating, the upper end of the rear bat 7 protrudes from the needle groove and receives the action of a cam device mounted on the carriage. The front bat 8 always protrudes from the needle groove at the upper end side. The rise and fall of the needle jack 5 in the needle groove is switched by the pressing state of the select jack 9 against the selection bat 10. The pressing state of the selection bat 10 changes according to the presser arranged on the track of the select jack 9 switched by the selector 11. The selector 11 is provided with a needle selection bat 14 together with a lowering bat 12 for retreating and a raising bat 13 for advancing. The needle selection bat 14 is selectively provided at one of a plurality of positions so that the position is different from that of the adjacent knitting needle 1.

図5は、編針1の後バット7および前バット8に作用して、編成動作および目移し動作を行わせるカム装置20の主要部分の構成を、キャリッジの走行方向が横方向となるようにして示す。カム装置20は、走行方向が左右のいずれであっても編針1に同等の動作を行わせることができ、キャリッジが針床に臨む側の地板の表面に1または複数が搭載される。カム装置20が複数搭載される場合は、図の横方向に並ぶ。1つのカム装置20には、渡し受け両用目移しカム21、固定レイジングカム22、および可動レイジングカム23が中央部分に設けられ、ステッチカム24が走行方向の両側に設けられる。渡し受け両用目移しカム21および可動レイジングカム23はキャリッジの地板の表面から出没する可動式のカムであり、編成動作では可動レイジングカム23が突出し、目移し動作では渡し受け両用目移しカム21が突出するように、それぞれ切換えられる。一方のカムが突出すると他方のカムは没入する。   FIG. 5 shows the configuration of the main portion of the cam device 20 that acts on the rear bat 7 and the front bat 8 of the knitting needle 1 to perform the knitting operation and the transfer operation, with the carriage traveling direction being in the lateral direction. Show. The cam device 20 can cause the knitting needle 1 to perform an equivalent operation regardless of whether the traveling direction is left or right, and one or more cam devices 20 are mounted on the surface of the base plate on the side where the carriage faces the needle bed. When a plurality of cam devices 20 are mounted, they are arranged in the horizontal direction in the figure. One cam device 20 is provided with a transfer-use transfer cam 21, a fixed raising cam 22, and a movable raising cam 23 at a central portion, and stitch cams 24 are provided on both sides in the running direction. The transfer transfer cam 21 and the movable lasing cam 23 are movable cams that protrude from the surface of the base plate of the carriage. The movable raising cam 23 protrudes during the knitting operation, and the transfer transfer cam 21 passes during the transfer operation. Each is switched to project. When one cam protrudes, the other cam is immersed.

固定レイジングカム22の中央部分には、キャリッジの地板面に近い高さの凹所25を有する目移し受け針用カム装置26が形成される。目移し受け針用カム装置26には、キャリッジの地板面からの高さが固定レイジングカム22と同等な山形のフル高さカム27が含まれる。フル高さカム27の頂部の両側には、地板の表面からの高さがフル高さカム27よりも低い、ハーフ高さカム28が設けられる。キャリッジの地板面付近からハーフ高さカム28までは、傾斜面29で連続的に高さが変化する。このような目移し受け針用カム装置26は、編針1の後バット7に作用して、受け針側の目移し動作を行わせる。   A transfer receiving needle cam device 26 having a recess 25 having a height close to the base plate surface of the carriage is formed in the central portion of the fixed lasing cam 22. The transfer receiving needle cam device 26 includes an angle-shaped full height cam 27 whose height from the base plate surface of the carriage is equal to that of the fixed lasing cam 22. On both sides of the top of the full height cam 27, half height cams 28 are provided whose height from the surface of the main plate is lower than that of the full height cam 27. From the vicinity of the base plate surface of the carriage to the half height cam 28, the height continuously changes on the inclined surface 29. Such a transfer receiving needle cam device 26 acts on the rear bat 7 of the knitting needle 1 to perform a transfer operation on the receiving needle side.

渡し受け両用目移しカム21は、突出状態で、編針1の前バット8に作用し、前縁21aでは渡し針側の前進動作を行わせ、後縁21bでは受け針側の後退動作を行わせる。渡し針と受け針との動作は、セレクトジャック9の選択用バット10が通過する軌道に応じて切換えられる。渡し受け両用目移しカム21の前縁21aの前方には、渡し針側の後退動作を行わせる固定のガイドカム30が設けられる。   The transfer-use transfer cam 21 acts in a protruding state on the front bat 8 of the knitting needle 1, causing the front edge 21 a to perform a forward movement operation on the transfer needle side, and a rear edge 21 b to perform a retraction operation on the receiving needle side. . The operation of the transfer needle and the receiving needle is switched according to the trajectory through which the selection bat 10 of the select jack 9 passes. A fixed guide cam 30 is provided in front of the front edge 21a of the transfer-use transfer cam 21 so as to perform a backward movement operation on the transfer needle side.

図示を省略している選針機構でのセレクタ11に対する選針動作で、選択用バット10は、前進しているAポジション10a、中間のHポジション10h、および基底のBポジション10bのいずれかに切換えられる。Aポジション10aには、プレッサが配置されていない。Hポジション10hには、タックプレッサ31およびハーフプレッサ32が配置される。タックプレッサ31およびハーフプレッサ32は出没制御可能な可動式のプレッサである。Bポジション10bには、固定プレッサ33が配置される。目移し時にはタックプレッサ31を没入させ、ハーフプレッサ32を突出させておく。   In the needle selection operation for the selector 11 in the needle selection mechanism not shown, the selection bat 10 is switched to any one of the forward A position 10a, the intermediate H position 10h, and the base B position 10b. It is done. A presser is not disposed at the A position 10a. A tack presser 31 and a half presser 32 are arranged at the H position 10h. The tack presser 31 and the half presser 32 are movable pressers that can be controlled. A fixed presser 33 is disposed at the B position 10b. At the time of transfer, the tack presser 31 is immersed and the half presser 32 is protruded.

目移し時に編針1がAポジション10aに選針されると、たとえばキャリッジの左行時に、後バット7は、固定レイジングカム22の側方のカム面22aに沿って前進する軌跡7aを通るように案内される。後バット7が前進して固定レイジングカム22のカム面22aの頂部に達すると、前バット8が渡し受け両用目移しカム21の前縁21aの基部に達し、軌跡8aを通って編針1はさらに前進して、渡し針としての動作を行う。可動レイジングカム23は没入状態になっているので、後バット7の軌跡7aは可動レイジングカム23の位置を通過することができる。このような軌跡7a,8aに相当する動作で、渡し針となる編針1のフック3に係止している編目は、針本体2の歯口への前進に応じて、針幹に沿って目移し片6の位置まで後退する。対向する針床から受け針となる編針1が歯口に進出して、受け針のフック3が渡し針の目移し片6内に侵入し、渡し針が歯口から後退すると、編目を受け針のフック3に移すことができる。   When the knitting needle 1 is selected at the A position 10a at the time of transfer, for example, when the carriage moves to the left, the rear bat 7 passes along a locus 7a that advances along the side cam surface 22a of the fixed lasing cam 22. Guided. When the rear bat 7 moves forward and reaches the top of the cam surface 22a of the fixed lasing cam 22, the front bat 8 reaches the base of the front edge 21a of the transfer and transfer cam 21, and the knitting needle 1 further passes through the locus 8a. Move forward and act as a transfer needle. Since the movable lasing cam 23 is in an immersive state, the locus 7 a of the rear bat 7 can pass through the position of the movable lasing cam 23. The stitches locked to the hooks 3 of the knitting needle 1 serving as a transfer needle in the operation corresponding to the trajectories 7a and 8a are the stitches along the needle stem according to the advancement of the needle body 2 toward the mouth. Retreat to the position of the transfer piece 6. When the knitting needle 1 that becomes the receiving needle advances from the opposite needle bed into the tooth opening, the hook 3 of the receiving needle enters the transfer needle transfer piece 6, and when the passing needle retracts from the tooth opening, the receiving needle of the stitch is received. The hook 3 can be moved.

図6は、目移し受け針用カム装置26の近傍部分を拡大した構成と、さらに前方から見た側面構成26aとを示す。図5および図6を参照して、編針1がHポジション10hに選針されると、選択用バット10がハーフプレッサ32で押圧されるので、後バット7の軌跡7hは、固定レイジングカム22の側方のカム面22aを通過し、傾斜面29を通って、地板35からHの高さとなるハーフ高さカム28の表面に至る。後バット7の後端は、ハーフ高さカム28の表面上で、地板35からFの高さとなるフル高さカム27の前縁のカム面27aに当接する。後バット7は、カム面27aの傾斜に沿う軌跡7hで前進し、山型のフル高さカム27の頂部に至る。フル高さカム27の頂部付近には、ハーフ高さカム28が設けられていないので、後バット7は、ハーフ高さカム28の表面から凹所25に進出し、後バット7の後端がハーフ高さカム28の前縁のカム面28aに当接して、軌跡7hを通るように前進する。編針1が受け針となるときの前バット8の軌跡8hとして示すように、受け針としての後退動作は、渡し受け両用目移しカム21の後縁21bで前バット8の前端が案内されて行われる。なお、固定レイジングカム22には、凹所25を設けずに、ハーフ高さカム28のカム面28aを地板35まで形成するようにしてもよい。
特公昭62−37142号公報 国際公開第07/074944号パンフレット
FIG. 6 shows an enlarged configuration of the vicinity of the transfer receiving needle cam device 26 and a side configuration 26a as seen from the front. 5 and 6, when the knitting needle 1 is selected at the H position 10h, the selection bat 10 is pressed by the half presser 32, so the locus 7h of the rear bat 7 It passes through the side cam surface 22a, passes through the inclined surface 29, and reaches the surface of the half-height cam 28 having a height of H from the main plate 35. The rear end of the rear butt 7 abuts on the cam surface 27a of the front edge of the full height cam 27 having a height of F from the main plate 35 on the surface of the half height cam 28. The rear bat 7 moves forward along a locus 7h along the inclination of the cam surface 27a and reaches the top of the mountain-shaped full height cam 27. Since the half height cam 28 is not provided near the top of the full height cam 27, the rear butt 7 advances from the surface of the half height cam 28 into the recess 25, and the rear end of the rear bat 7 is It abuts on the cam surface 28a at the front edge of the half-height cam 28 and moves forward through the locus 7h. As shown as the locus 8h of the front bat 8 when the knitting needle 1 becomes the receiving needle, the backward movement as the receiving needle is performed by the front edge of the front bat 8 being guided by the rear edge 21b of the transfer and transfer transfer cam 21. Is called. The fixed lasing cam 22 may be formed with the cam surface 28a of the half height cam 28 up to the base plate 35 without providing the recess 25.
Japanese Examined Patent Publication No. 62-37142 International Publication No. 07/074944 Pamphlet

図6の側面構成26aとして示すように、目移し時の受け針では、先行側で、後バット7の上端がハーフ高さカム28の表面に当接しながら、後バット7の後端がフル高さカム27のカム面27aで案内される。フル高さカム27の前縁は、大略的に山型の形状を有し、前縁に形成されるカム面27aは、中央部分が前方に突出するように傾斜しているので、受け針は前進する。軌跡7hに沿う後バット7の経路は、フル高さカム27の頂部付近で、ハーフ高さカム28の表面から凹所25の底面に地板35からの高さが段階的に変化して段差Dが生じる。後バット7が段差Dの部分を通過する際には、後バット7の上端への押圧が解除されるので、ニードルジャック5は弾発力によって針溝内で浮上し、後バット7が針溝表面からさらに突出する。後バット7は、凹所25内に侵入してから、先端がハーフ高さカム28の表面よりも地板35表面に近くなるまで突出する。凹所25内で突出した後バット7は、後端がハーフ高さカム28のカム面28aによる案内を受けて前進する。このような段差Dは、キャリッジの往復の両方で、後バット7が先行側のハーフ高さカム28では表面を通過し、後行側のハーフ高さカム28では前縁のカム面28aによる案内を受けるようにするために設けられている。しかしながら、フル高さF内に段差Dが設けられるので、カム面27a,28aに対する後バット7の掛り代27b,28bは少なくなってしまう。掛り代27b,28bが少ないと、カム面27a,28aが後バット7に作用する力が集中し、過大な応力が発生して疲労しやすくなったり、損傷や焼き付きが発生するおそれがある。   As shown as a side structure 26a in FIG. 6, in the receiving needle at the time of transfer, the rear end of the rear bat 7 is full height while the upper end of the rear bat 7 is in contact with the surface of the half height cam 28 on the front side. Guided by the cam surface 27a of the cam 27. The front edge of the full height cam 27 has a generally chevron shape, and the cam surface 27a formed on the front edge is inclined so that the central portion protrudes forward. Advance. The path of the rear bat 7 along the locus 7h is in the vicinity of the top of the full height cam 27, and the height from the base plate 35 changes stepwise from the surface of the half height cam 28 to the bottom surface of the recess 25. Occurs. When the rear bat 7 passes through the step D, the pressure on the upper end of the rear bat 7 is released, so that the needle jack 5 floats in the needle groove by the elastic force, and the rear bat 7 Project further from the surface. After the rear bat 7 has entered the recess 25, the rear butt 7 projects until the tip is closer to the surface of the base plate 35 than the surface of the half height cam 28. The rear butt 7 that protrudes in the recess 25 advances with the rear end guided by the cam surface 28a of the half-height cam 28. Such a step D is such that the rear butt 7 passes through the surface of the leading half height cam 28 and the trailing half height cam 28 is guided by the cam surface 28a of the leading edge both in the reciprocation of the carriage. It is provided in order to receive. However, since the level difference D is provided in the full height F, the engagement margins 27b and 28b of the rear bat 7 with respect to the cam surfaces 27a and 28a are reduced. If the engagement allowances 27b and 28b are small, the force that the cam surfaces 27a and 28a act on the rear bat 7 is concentrated, so that excessive stress may be generated and fatigue may occur easily, or damage and seizure may occur.

とくに、生産性を高めるためにキャリッジの走行速度を上昇させるような場合は、段差Dの部分で、ニードルジャック5の弾発力に基づく突出が充分に行われないうちに、後バット7の後端がハーフ高さカム28のカム面28aに当接し、実質的な掛り代はさらに少なくなってしまう。また、後バット7の突出が間に合わずに、後バット7が本来の軌跡7hから逸脱し、カム面28aを乗越えて通過してしまうおそれもある。   In particular, when the carriage traveling speed is increased in order to increase productivity, the rear portion of the rear bat 7 is not fully projected at the step D portion due to the elastic force of the needle jack 5. The end comes into contact with the cam surface 28a of the half-height cam 28, and the substantial hanging margin is further reduced. In addition, the rear butt 7 may not be able to project in time, and the rear bat 7 may deviate from the original locus 7h and pass over the cam surface 28a.

本発明の目的は、後バットが段差の部分を円滑に通過し、通過後のカム面での掛り代を充分に確保して、確実な案内を行うことができる目移し受け針用カム装置を提供することである。   It is an object of the present invention to provide a cam device for a transfer receiving needle that allows a rear bat to smoothly pass through a stepped portion and to ensure a sufficient allowance on the cam surface after passing, thereby providing reliable guidance. Is to provide.

本発明は、横編機の針床に沿って往復走行するキャリッジに搭載され、針床に並設されて前後に二つのバットをそれぞれ有する編針を歯口の前後に進退するように駆動するために、後バットに作用して編針を編目編成動作および目移しの渡し動作させるためのカム面が外側に設けられる大略的に山型のレイジングカムを含む編成用カム装置の一部として、レイジングカムの内側に設けられて後バットに作用し、編針を目移しの受け針として動作させるための目移し受け針用カム装置において、
キャリッジの走行方向の一方側と他方側とに分けて設けられ、先行側となるカムが後バットで押圧されれば沈む表面、およびキャリッジの走行に応じて後行側となるカムが突出する状態で後のバットの後端を駆動する前縁側のカム面をそれぞれ有し、独立して出没可能な一対の目移し受けカムと、
各目移し受けカムにそれぞれ設けられ、各目移し受けカムを突出状態となるように付勢するばねと、
大略的に山型の形状を有し、頂部が目移し受けカムの先行側から後行側に移行する位置に対応して配置され、頂部までの先行側で編針を前進させて、後バットの後端が後行側の目移し受けカムのカム面に当接するように案内する中間カムと、
を含むことを特徴とする目移し受け針用カム装置である。
The present invention is mounted on a carriage that reciprocates along a needle bed of a flat knitting machine, and drives a knitting needle that is provided side by side on the needle bed and has two bats on the front and rear sides so as to move forward and backward. In addition, as a part of a knitting cam apparatus including a generally chevron-shaped lasing cam provided with an outer cam surface for acting on the rear bat to cause the knitting needle to perform a stitch knitting operation and a transfer operation, a raising cam In the cam device for the transfer receiving needle that is provided on the inner side of the needle and acts on the rear bat to operate the knitting needle as a transfer receiving needle,
Provided separately on one side and the other side in the traveling direction of the carriage, the surface that sinks when the cam on the leading side is pressed by the rear butt, and the cam that protrudes on the trailing side according to the traveling of the carriage A pair of transfer receiving cams each having a cam surface on the front edge side for driving the rear end of the rear bat and capable of independently appearing and retracting,
A spring provided on each transfer receiving cam, and energizing each transfer receiving cam in a protruding state;
It has a generally chevron shape and is arranged corresponding to the position where the top portion is transferred and moved from the leading side to the trailing side of the receiving cam, and the knitting needle is advanced on the leading side to the top portion, An intermediate cam that guides the rear end to come into contact with the cam surface of the trailing transfer cam;
It is the cam apparatus for transfer needles characterized by including these.

また本発明で、前記各目移し受けカムは、前記レイジングカムの裏面側で揺動変位可能に支持される基端部を有し、遊端部が前記出没可能となることを特徴とする。   Further, in the present invention, each transfer receiving cam has a base end portion supported so as to be swingable and displaceable on the back surface side of the lasing cam, and the free end portion can be projected and retracted.

また本発明で、前記一対の目移し受けカムは、前記キャリッジの走行方向に、前記基端部が相互に離れ、前記遊端部が相互に接近するように配置されることを特徴とする。   In the present invention, the pair of transfer receiving cams are arranged such that the base end portions are separated from each other and the free end portions are close to each other in the traveling direction of the carriage.

本発明によれば、一対の目移し受けカムがキャリッジの走行方向の一方側と他方側とに分けて設けられる。先行側となる目移し受けカムは、表面が後バットで押圧されれば沈むので、山型の中間カムで前進して、ばね付勢で突出する状態を保つ後行側の目移し受けカムのカム面で案内される状態に移行する部分での段差を減少または解消させて、円滑に通過させることができる。後バットの後端に当接して駆動する後行側の目移し受けカムのカム面での掛り代を充分に確保し、確実な案内を行うことができる。目移し受けカムの出没は、ばね付勢と通過する後のバットによる押圧とによって行われるので、機構を簡易化して、キャリッジの地板上にもコンパクトに配置することができる。   According to the present invention, the pair of transfer receiving cams are provided separately on one side and the other side in the traveling direction of the carriage. Since the transfer receiving cam on the leading side sinks if the surface is pressed by the rear bat, it moves forward with the mountain-shaped intermediate cam and keeps protruding with the spring bias. It is possible to reduce or eliminate the step at the portion that shifts to the state guided by the cam surface, and to pass it smoothly. Sufficient allowance can be secured on the cam surface of the rearward transfer cam that is driven in contact with the rear end of the rear bat, and reliable guidance can be performed. Since the transfer receiving cam appears and disappears by the spring bias and the pressing by the bat after passing, the mechanism can be simplified and can be arranged compactly on the base plate of the carriage.

また本発明によれば、目移し受けカムは、基端側を確実に支持し、遊端側を揺動変位で確実に出没させることができる。   Further, according to the present invention, the transfer receiving cam can reliably support the base end side, and can reliably move the free end side in and out by swinging displacement.

また本発明によれば、先行側の目移し受けカムは、後バットが最初に通過する前に突出していても、揺動変位可能に支持される基端側から後バットの通過で押圧を受け、後バットが遊端側を通過するまでに、確実に没入させることができる。   Further, according to the present invention, even if the leading transfer cam is projected before the rear bat first passes, it is pressed by the passage of the rear bat from the base end side supported so as to be able to swing and displace. The rear bat can be reliably immersed before passing the free end side.

図1は、本発明の実施の一形態として、目移し受け針用カム装置40の概略的な構成を示す平面図および側面図である。FIG. 1 is a plan view and a side view showing a schematic configuration of a transfer receiving needle cam device 40 as an embodiment of the present invention. 図2は、図1の左側の目移し受けカム46の平面図、正面図および右側面図である。2 is a plan view, a front view, and a right side view of the transfer receiving cam 46 on the left side of FIG. 図3は、図1の固定レイジングカム42の平面図、側面断面図および背面図である。3 is a plan view, a side sectional view, and a rear view of the fixed lasing cam 42 of FIG. 図4は、編成動作とともに、目移しの動作も可能な従来からの編針1の構成を示す側面図である。FIG. 4 is a side view showing a configuration of a conventional knitting needle 1 that can perform a transfer operation as well as a knitting operation. 図5は、編針1の後バット7および前バット8に作用して、編成動作および目移し動作を行わせる従来からのカム装置20の主要部分の構成を示す平面図である。FIG. 5 is a plan view showing a configuration of a main portion of a conventional cam device 20 that acts on the rear bat 7 and the front bat 8 of the knitting needle 1 to perform the knitting operation and the transfer operation. 図6は、図5目移し受け針用カム装置20の概略的な構成を示す平面図および側面図である。FIGS. 6A and 6B are a plan view and a side view showing a schematic configuration of the cam apparatus 20 for the transfer needle shown in FIG.

1 編針
7 後バット
8 前バット
40 目移し受け針用カム装置
42 固定レイジングカム
42a,42b カム面
42c 中間カム
42d 支持長穴
46 目移し受けカム
46a カム面
46b 揺動軸
46c 表面
46d,46e 傾斜面
46f ばね受け穴
47 圧縮ばね
DESCRIPTION OF SYMBOLS 1 Knitting needle 7 Rear butt 8 Front bat 40 Transfer receiving needle cam device 42 Fixed lasing cam 42a, 42b Cam surface 42c Intermediate cam 42d Long support hole 46 Transfer receiving cam 46a Cam surface 46b Oscillating shaft 46c Surface 46d, 46e Inclination Surface 46f Spring receiving hole 47 Compression spring

図1は、本発明の実施の一形態として、目移し受け針用カム装置40の概略的な構成を示す。目移し受け針用カム装置40は、図5および図6に示す目移し受け針用カム装置26に置換えて、図5のカム装置20に使用し、図4に示すような編針1を駆動することができる。図1でも、図6と同様に、目移し受け針用カム装置40の主要部分の構成と、前方から見た側面構成40aとを対応させる状態で示す。   FIG. 1 shows a schematic configuration of a cam device 40 for a transfer needle as an embodiment of the present invention. The transfer receiving needle cam device 40 is used in the cam device 20 of FIG. 5 in place of the transfer receiving needle cam device 26 shown in FIGS. 5 and 6, and drives the knitting needle 1 as shown in FIG. be able to. Also in FIG. 1, as in FIG. 6, the configuration of the main part of the transfer receiving needle cam device 40 and the side surface configuration 40 a viewed from the front are shown in a corresponding state.

図1に示す目移し受け針用カム装置40は、キャリッジの地板35上に取付けられる固定レイジングカム42の内側に組込まれる。固定レイジングカム42の外側の前縁には、カム面42aが設けられる。固定レイジングカム42の中央付近の部分には、前縁がカム面42bとなる山型の形状で、後バット7の後端に当接して前進させる中間カム42cが形成されている。中間カム42cの頂部付近の両側には、一対の目移し受けカム46が配置される。目移し受けカム46は、前縁側にカム面46aが形成され、基端側の揺動軸46bが固定レイジングカム42の裏面側に形成される支持溝42dに嵌合して、地板35の表面に平行な揺動軸46bまわりで、遊端側が地板35に対して出没する揺動変位が可能な状態で支持される。目移し受けカム46の遊端側には、揺動変位でキャリッジの地板35から突出する状態となるときに、固定レイジングカム42の表面と同等の高さとなる表面46cと、表面46cに連なる傾斜面46d,46eとが設けられる。表面46cや傾斜面46dが設けられる目移し受けカム46の遊端側の裏面側に形成されるばね受け穴46fには、キャリッジの地板35との間に、圧縮ばね47が挿入され、遊端側が地板35から突出するように付勢する。なお、地板35にも、目移し受けカム46を収容する凹部35aが形成されている。   The transfer receiving needle cam device 40 shown in FIG. 1 is incorporated inside a fixed lasing cam 42 mounted on the base plate 35 of the carriage. A cam surface 42 a is provided on the outer front edge of the fixed lasing cam 42. An intermediate cam 42c is formed in the vicinity of the center of the fixed lasing cam 42. The intermediate cam 42c has a chevron shape with the front edge serving as the cam surface 42b. A pair of transfer receiving cams 46 are arranged on both sides near the top of the intermediate cam 42c. The transfer receiving cam 46 has a cam surface 46 a formed on the front edge side, and a rocking shaft 46 b on the base end side is fitted in a support groove 42 d formed on the back surface side of the fixed lasing cam 42, The swing end 46b is supported in a state in which a swing displacement is possible in which the free end side protrudes and retracts with respect to the main plate 35 around the swing shaft 46b parallel to the base plate 35. On the free end side of the transfer receiving cam 46, a surface 46c having a height equivalent to the surface of the fixed lasing cam 42 when it protrudes from the base plate 35 of the carriage by swinging displacement, and an inclination continuous with the surface 46c. Surfaces 46d and 46e are provided. A compression spring 47 is inserted into the spring receiving hole 46f formed on the back surface side of the free end side of the transfer receiving cam 46 provided with the front surface 46c and the inclined surface 46d. The side is urged so as to protrude from the main plate 35. The base plate 35 is also formed with a recess 35a for accommodating the transfer receiving cam 46.

目移し時に、たとえばキャリッジが左行すると、受け針となる編針1の後バット7は、軌跡7Hとして示すように、目移し受け針用カム装置40に対して相対的に移動する。先行側となる左側の目移し受けカム46に対しては、後バット7の上端の前端が傾斜面46dに掛って、後バット7の後端が中間カム42cの前縁のカム面42bでの案内で前進するように駆動される。なお、後バット7が目移し受けカム46に掛る位置は、図よりも前方になる場合もある。この場合は、傾斜面46dではなく、傾斜面46eから表面46cを通る経路で、後バット7はカム面42bに接近する。後バット7の前進で、圧縮ばね47の付勢力に抗して傾斜面46d,46eは押圧され、目移し受けカム46は遊端側が沈み、後バット7の上端が目移し受けカム46の表面46cに当接する状態となる。中間カム42cの頂部付近では、目移し受けカム46の表面46cが後バット7の上端で押圧されてキャリッジの地板35側に沈む。後バット7は、後行側の目移し受けカム46の遊端側に移動すると、カム面46aよりも前進して、上端は地板35に臨む。先行側の目移し受けカム46の遊端側の表面46cは沈むので、中間カム42cの頂部付近を後バット7が通過する際の段差を小さくしたり、あるいは解消させることができる。段差が小さくなるので、キャリッジが高速で走行するようになっても、円滑な通過が可能となる。   At the time of transfer, for example, when the carriage moves to the left, the rear butt 7 of the knitting needle 1 serving as the receiving needle moves relative to the transfer receiving needle cam device 40 as indicated by a locus 7H. With respect to the left transfer receiving cam 46 which is the leading side, the front end of the upper end of the rear bat 7 is hooked on the inclined surface 46d, and the rear end of the rear bat 7 is the cam surface 42b of the front edge of the intermediate cam 42c. Driven to move forward with guidance. Note that the position where the rear bat 7 is transferred to the transfer receiving cam 46 may be forward of the figure. In this case, the rear butt 7 approaches the cam surface 42b through a path passing from the inclined surface 46e to the surface 46c instead of the inclined surface 46d. As the rear bat 7 advances, the inclined surfaces 46 d and 46 e are pressed against the urging force of the compression spring 47, the transfer receiving cam 46 sinks on the free end side, and the upper end of the rear bat 7 moves and the surface of the receiving cam 46 is moved. It will be in the state which contacts 46c. In the vicinity of the top of the intermediate cam 42c, the surface 46c of the transfer receiving cam 46 is pressed by the upper end of the rear bat 7 and sinks to the carriage base plate 35 side. When the rear bat 7 moves to the free end side of the rearward transfer receiving cam 46, the rear bat 7 moves forward from the cam surface 46 a and the upper end faces the main plate 35. Since the surface 46c on the free end side of the leading transfer receiving cam 46 sinks, the step when the rear bat 7 passes near the top of the intermediate cam 42c can be reduced or eliminated. Since the level difference is reduced, smooth passage is possible even when the carriage travels at a high speed.

さらに軌跡7Hに沿う後バット7の移動で中間カム42cの頂部を過ぎると、後バット7の後端は右側の目移し受けカム46のカム面46aに当接し、カム面46aによる案内を受ける。後行側となる右側の目移し受けカム46は、圧縮ばね47による付勢で、遊端側が地板35から突出している。地板35からのカム面46aの高さは、固定レイジングカム42の表面の高さ、すなわち中間カム42cの前縁に形成されるカム面42bの高さと同等となる。中間カム42cのカム面42bから後行側の目移し受けカム46のカム面46aに移行する間の段差は小さくなるので、キャリッジが高速で走行するようになっても、移行を円滑に行わせることができる。   Further, when the rear bat 7 moves along the locus 7H and passes the top of the intermediate cam 42c, the rear end of the rear butt 7 comes into contact with the cam surface 46a of the right transfer receiving cam 46, and is guided by the cam surface 46a. The right transfer receiving cam 46 on the trailing side is biased by the compression spring 47, and the free end side protrudes from the main plate 35. The height of the cam surface 46a from the main plate 35 is equal to the height of the surface of the fixed lasing cam 42, that is, the height of the cam surface 42b formed at the front edge of the intermediate cam 42c. Since the level difference between the transition from the cam surface 42b of the intermediate cam 42c to the cam surface 46a of the trailing transfer receiving cam 46 is small, the transition is performed smoothly even if the carriage travels at a high speed. be able to.

図2は、図1の左側の目移し受けカム46の形状を、平面、正面および右側面側から見てそれぞれ示す。右側の目移し受けカム46も、基本的に対称となる同等の形状を有する。目移し受けカム46の遊端側の裏面側には、圧縮ばね47の先端を収容するばね受け穴46fが設けられ、先端に、図1の左側に示す没入状態で、地板35の凹部35aの底面と当接する平坦な当り面46gが設けられる。目移し受けカム46の表面側には、中間部から遊端側にかけて、固定レイジングカム22の裏面側に対する突出状態での平坦な当り面46hも設けられる。当り面46gは、揺動変位で地板35側に沈むときに、平坦な凹部35aの底面に当接するように、当り面46hに対して傾斜している。   FIG. 2 shows the shape of the left transfer receiving cam 46 in FIG. 1 when viewed from the plane, front, and right side. The right-side transfer receiving cam 46 also has an equivalent shape that is basically symmetrical. A spring receiving hole 46f that accommodates the tip of the compression spring 47 is provided on the back side of the free end side of the transfer receiving cam 46, and the tip of the recess 35a of the main plate 35 is in the immersion state shown on the left side of FIG. A flat contact surface 46g that contacts the bottom surface is provided. On the surface side of the transfer receiving cam 46, a flat contact surface 46h in a protruding state with respect to the back surface side of the fixed lasing cam 22 is also provided from the intermediate portion to the free end side. The contact surface 46g is inclined with respect to the contact surface 46h so as to come into contact with the bottom surface of the flat concave portion 35a when sinking to the ground plane 35 side by swinging displacement.

図3は、図1の固定レイジングカム42の形状を、平面、側断面および背面側から見てそれぞれ示す。上方には平面、下方には背面の形状をそれぞれ示し、中間の側断面は、平面形状中に示す切断面線C−Cから見る状態で示す。固定レイジングカム42は大略的に板状であり、外側のカム面42aと中間カム42cのカム面42bとは、同等の高さを有している。裏面側には、目移し受けカム46の基端側の揺動軸46bを収容して揺動変位可能に支持する支持長穴42dが走行方向に間隔をあけて設けられる。また、目移し受けカム46が突出状態で、当り面46hが当接する底面を有する凹部42eも、固定レイジングカム42の裏面側に設けられる。   FIG. 3 shows the shape of the fixed lasing cam 42 in FIG. The upper side shows the shape of the plane, and the lower side shows the shape of the back surface, and the intermediate side cross section is shown as seen from the section line CC shown in the planar shape. The fixed lasing cam 42 is generally plate-shaped, and the outer cam surface 42a and the cam surface 42b of the intermediate cam 42c have the same height. On the back surface side, support long holes 42d that accommodate the swing shaft 46b on the base end side of the transfer receiving cam 46 and support the swing displacement are provided at intervals in the traveling direction. In addition, a recess 42e having a bottom surface with which the contact face 46h abuts while the transfer receiving cam 46 is in a protruding state is also provided on the back side of the fixed lasing cam 42.

一対の目移し受けカム46のうち、先行側の目移し受けカム46は、後バット7が最初に通過する前には、圧縮ばね47による付勢で地板35から突出している。揺動変位可能に支持長穴42dで揺動軸46bが支持される基端側からの後バット7の通過でまず傾斜面46dが押圧を受けて揺動変位し、遊端側が地板35側に沈む。さらに、後バット7の上端で表面46cが押圧を受けて、後バット7が目移し受けカム46の遊端側を通る際に、確実に没入させることができる。一対の目移し受けカム46の基端側となる揺動軸46bをキャリッジの走行方向に間隔をあけて支持し、遊端側を相互に接近させることによって、後バット7で先行側を押圧する状態から、突出状態の後行側のカム面46aに当接して案内される状態への切換えを円滑に行わせることができる。   Of the pair of transfer receiving cams 46, the leading transfer receiving cam 46 protrudes from the main plate 35 by the urging force of the compression spring 47 before the rear bat 7 first passes. When the rear bat 7 passes from the base end side where the swing shaft 46b is supported by the support elongated hole 42d so as to be swingable and displaceable, the inclined surface 46d is first swung and displaced, and the free end side is moved to the base plate 35 side. Sink. Further, the surface 46 c is pressed at the upper end of the rear bat 7, and when the rear bat 7 is transferred and passes the free end side of the receiving cam 46, it can be surely immersed. The swing shaft 46b, which is the base end side of the pair of transfer receiving cams 46, is supported at an interval in the carriage traveling direction, and the free end side is brought close to each other, thereby pressing the leading side with the rear bat 7. It is possible to smoothly switch from the state to the state of being guided by coming into contact with the cam surface 46a on the following side in the protruding state.

なお、固定レイジングカム42の一部に中間カム42cを設けるようにしているけれども、中間カム42cに相当するカムを固定レイジングカム42とは独立して設けるようにすることもできる。また、目移し受けカム46では、基端側と遊端側とが走行方向に配置されているけれども、走行方向と交差する方向に配置されていても、傾斜面46d,46eなどの方向を調整すれば、目移し受けカム46と同等に近い状態で遊端側を出没させることができる。さらに、たとえば図5および図6に示すハーフ高さカム28に相当するカムを、揺動変位ではなく、キャリッジの地板35からの高さ方向に直動で昇降変位させて、出没させるようにしてもよい。   Although the intermediate cam 42c is provided in a part of the fixed lasing cam 42, a cam corresponding to the intermediate cam 42c can be provided independently of the fixed lasing cam 42. In the transfer receiving cam 46, the base end side and the free end side are arranged in the traveling direction, but the directions of the inclined surfaces 46d and 46e are adjusted even if they are arranged in the direction intersecting the traveling direction. Then, the free end side can be made to appear and disappear in a state close to that of the transfer receiving cam 46. Further, for example, the cam corresponding to the half-height cam 28 shown in FIGS. 5 and 6 is moved up and down in the height direction from the base plate 35 of the carriage instead of swinging displacement so as to appear and retract. Also good.

【0005】
ーフ高さカム28の表面から凹所25の底面に地板35からの高さが段階的に変化して段差Dが生じる。後バット7が段差Dの部分を通過する際には、後バット7の上端への押圧が解除されるので、ニードルジャック5は弾発力によって針溝内で浮上し、後バット7が針溝表面からさらに突出する。後バット7は、凹所25内に侵入してから、先端がハーフ高さカム28の表面よりも地板35表面に近くなるまで突出する。凹所25内で突出した後バット7は、後端がハーフ高さカム28のカム面28aによる案内を受けて前進する。このような段差Dは、キャリッジの往復の両方で、後バット7が先行側のハーフ高さカム28では表面を通過し、後行側のハーフ高さカム28では前縁のカム面28aによる案内を受けるようにするために設けられている。しかしながら、フル高さF内に段差Dが設けられるので、カム面27a,28aに対する後バット7の掛り代27b,28bは少なくなってしまう。掛り代27b,28bが少ないと、カム面27a,28aが後バット7に作用する力が集中し、過大な応力が発生して疲労しやすくなったり、損傷や焼き付きが発生するおそれがある。
[0012]
とくに、生産性を高めるためにキャリッジの走行速度を上昇させるような場合は、段差Dの部分で、ニードルジャック5の弾発力に基づく突出が充分に行われないうちに、後バット7の後端がハーフ高さカム28のカム面28aに当接し、実質的な掛り代はさらに少なくなってしまう。また、後バット7の突出が間に合わずに、後バット7が本来の軌跡7hから逸脱し、カム面28aを乗越えて通過してしまうおそれもある。
[0013]
本発明の目的は、後バットが段差の部分を円滑に通過し、通過後のカム面での掛り代を充分に確保して、確実な案内を行うことができる目移し受け針用カム装置を提供することである。
課題を解決するための手段
[0014]
本発明は、横編機の針床に沿って往復走行するキャリッジの地板に搭載され、針床に並設されて前後に二つのバットをそれぞれ有する編針に対し、編目編成動作および目移しの渡し動作させるために、キャリッジの地板面から
[0005]
The height D from the base plate 35 changes stepwise from the surface of the roof height cam 28 to the bottom surface of the recess 25, resulting in a step D. When the rear bat 7 passes through the step D, the pressure on the upper end of the rear bat 7 is released, so that the needle jack 5 floats in the needle groove by the elastic force, and the rear bat 7 Project further from the surface. After the rear bat 7 has entered the recess 25, the rear butt 7 projects until the tip is closer to the surface of the base plate 35 than the surface of the half height cam 28. The rear butt 7 that protrudes in the recess 25 advances with the rear end guided by the cam surface 28a of the half-height cam 28. Such a step D is such that the rear butt 7 passes through the surface of the leading half height cam 28 and the trailing half height cam 28 is guided by the cam surface 28a of the leading edge both in the reciprocation of the carriage. It is provided in order to receive. However, since the level difference D is provided in the full height F, the engagement margins 27b and 28b of the rear bat 7 with respect to the cam surfaces 27a and 28a are reduced. If the engagement allowances 27b and 28b are small, the force that the cam surfaces 27a and 28a act on the rear bat 7 is concentrated, so that excessive stress may be generated and fatigue may occur easily, or damage and seizure may occur.
[0012]
In particular, when the carriage traveling speed is increased in order to increase productivity, the rear portion of the rear bat 7 is not fully projected at the step D portion due to the elastic force of the needle jack 5. The end comes into contact with the cam surface 28a of the half-height cam 28, and the substantial hanging margin is further reduced. In addition, the rear butt 7 may not be able to project in time, and the rear bat 7 may deviate from the original locus 7h and pass over the cam surface 28a.
[0013]
It is an object of the present invention to provide a cam device for a transfer receiving needle that allows a rear bat to smoothly pass through a stepped portion and to ensure a sufficient allowance on the cam surface after passing, thereby providing reliable guidance. Is to provide.
Means for Solving the Problems [0014]
The present invention provides a stitch knitting operation and transfer of transfer to a knitting needle mounted on a base plate of a carriage that reciprocates along a needle bed of a flat knitting machine and having two bats on the front and rear sides. To operate, from the ground plane of the carriage

【0006】
フル高さとなるカム面が外側の前縁に設けられる大略的に山型のレイジングカムを含む編成用カム装置の一部として、レイジングカムの内側に設けられて、後バットの上端がフル高さよりも低いハーフ高さの表面に当接しながら、後バットの後端がフル高さのカム面で案内されように作用し、編針を目移しの受け針として動作させるための目移し受け針用カム装置において、
前縁がカム面となる山型の形状で、後バットの後端に当接して前進させ、レイジングカムと同等の高さを有する中間カムと、
中間カムの頂部付近の両側に配置され、前縁側にカム面が形成され、基端側に有する地板の表面に並行な揺動軸まわりの揺動変位で、遊端側が地板に対して出没し、遊端側には、地板から突出する状態となるときに、レイジングカムの表面と同等の高さとなる表面、および表面に連なる傾斜面が設けられる、一対の目移し受けカムと、
各目移し受けカムにそれぞれ設けられ、各目移し受けカムの遊端側が地板に対して突出状態となるように付勢するばねと、
を含み、
レイジングカムの裏面側には、
底面を有する凹部と、
揺動軸を揺動変位可能に支持し、キャリッジの走行方向に間隔をあけて設けられる支持長穴とを有し、
目移し受けカムは、表面側に、基端部と遊端部との中間部から遊端部側にかけて、地板に対する突出状態でレイジングカムの凹部の底面に当接する当り面を有する
ことを特徴とする目移し受け針用カム装置である。
[0015]
また本発明で、前記レイジングカムの裏面側には、前記目移し受けカムの基端側と遊端側とが前記キャリッジの走行方向に配置されるように、前記支持長穴が形成されていることを特徴とする。
[0016]
発明の効果
[0006]
As a part of the knitting cam device, which includes a mountain-shaped lasing cam with a cam surface that is full height at the outer front edge, the upper end of the rear bat is higher than the full height. The cam for the transfer needle for operating the knitting needle as a transfer needle while the rear end of the rear bat is guided by the full height cam surface while abutting the lower half-height surface In the device
An intermediate cam having a chevron shape with the front edge serving as a cam surface, abutting against the rear end of the rear bat and moving forward, and having a height equivalent to the raising cam,
It is arranged on both sides near the top of the intermediate cam, a cam surface is formed on the front edge side, and the free end side appears and disappears with respect to the ground plane due to the rocking displacement around the rocking axis parallel to the surface of the ground plane on the base end side. The free end side is provided with a pair of transfer cams provided with a surface having a height equivalent to the surface of the lasing cam and an inclined surface connected to the surface when projecting from the ground plate,
A spring that is provided in each transfer receiving cam and biases so that the free end side of each transfer receiving cam protrudes from the ground plate;
Including
On the back side of the raising cam,
A recess having a bottom surface;
The swing shaft is supported so as to be swingable and has a support long hole provided at an interval in the traveling direction of the carriage,
The transfer receiving cam has a contact surface on the surface side, which is in contact with the bottom surface of the recess of the lasing cam in a protruding state with respect to the ground plate from the intermediate portion between the base end portion and the free end portion to the free end portion side. This is a cam device for a transfer receiving needle.
[0015]
In the present invention, the support slot is formed on the back side of the lasing cam so that the base end side and the free end side of the transfer receiving cam are arranged in the traveling direction of the carriage. It is characterized by that.
[0016]
The invention's effect

【0007】
[0017]
本発明によれば、一対の目移し受けカムがキャリッジの走行方向の一方側と他方側とに分けて設けられる。先行側となる目移し受けカムは、表面が後バットで押圧されれば沈むので、山型の中間カムで前進して、ばね付勢で突出する状態を保つ後行側の目移し受けカムのカム面で案内される状態に移行する部分での段差を減少または解消させて、円滑に通過させることができる。後バットの後端に当接して駆動する後行側の目移し受けカムのカム面での掛り代を充分に確保し、確実な案内を行うことができる。目移し受けカムの出没は、ばね付勢と通過する後のバットによる押圧とによって行われるので、機構を簡易化して、キャリッジの地板上にもコンパクトに配置することができる。目移し受けカムは、基端部と遊端部との中間部から遊端部側にかけて、突出状態でレイジングカムの凹部の底面に当接する当り面を有するので、突出しすぎないように抑制することができる。
[0018]
また本発明によれば、目移し受けカムは、目移し受けカムの基端側と遊端側とがキャリッジの走行方向に配置され、基端側を確実に支持し、遊端側を揺動変位で確実に出没させることができる。
[0019]
図面の簡単な説明
[0020]
[図1]図1は、本発明の実施の一形態として、目移し受け針用カム装置40の概略的な構成を示す平面図および側面図である。
[図2]図2は、図1の左側の目移し受けカム46の平面図、正面図および右側面図である。
[図3]図3は、図1の固定レイジングカム42の平面図、側面断面図および背面図である。
[図4]図4は、編成動作とともに、目移しの動作も可能な従来からの編針1の構成を示す側面図である。
[図5]図5は、編針1の後バット7および前バット8に作用して、編成動作および目移し動作を行わせる従来からのカム装置20の主要部分の構成を示す平面図である。
[0007]
[0017]
According to the present invention, the pair of transfer receiving cams are provided separately on one side and the other side in the traveling direction of the carriage. Since the transfer receiving cam on the leading side sinks if the surface is pressed by the rear bat, it moves forward with the mountain-shaped intermediate cam and keeps protruding with the spring bias. It is possible to reduce or eliminate the step at the portion that shifts to the state guided by the cam surface, and to pass it smoothly. Sufficient allowance can be secured on the cam surface of the rearward transfer cam that is driven in contact with the rear end of the rear bat, and reliable guidance can be performed. Since the transfer receiving cam appears and disappears by the spring bias and the pressing by the bat after passing, the mechanism can be simplified and can be arranged compactly on the base plate of the carriage. The transfer receiving cam has a contact surface that abuts against the bottom surface of the concave portion of the lasing cam in a protruding state from the intermediate portion between the base end portion and the free end portion to the free end portion side, so that it is prevented from protruding too much. Can do.
[0018]
Further, according to the present invention, the transfer receiving cam is configured such that the base end side and the free end side of the transfer receiving cam are arranged in the traveling direction of the carriage, the base end side is reliably supported, and the free end side is swung. It can be made to appear reliably by displacement.
[0019]
BRIEF DESCRIPTION OF THE DRAWINGS [0020]
FIG. 1 is a plan view and a side view showing a schematic configuration of a transfer receiving needle cam device 40 as an embodiment of the present invention.
FIG. 2 is a plan view, a front view, and a right side view of the left transfer receiving cam 46 in FIG.
[FIG. 3] FIG. 3 is a plan view, a side sectional view, and a rear view of the fixed lasing cam 42 of FIG.
[FIG. 4] FIG. 4 is a side view showing a configuration of a conventional knitting needle 1 capable of transferring as well as knitting.
[FIG. 5] FIG. 5 is a plan view showing a configuration of a main part of a conventional cam device 20 that acts on the rear bat 7 and the front bat 8 of the knitting needle 1 to perform a knitting operation and a transfer operation.

【0008】
[図6]図6は、図5の目移し受け針用カム装置20の概略的な構成を示す平面図および側面図である。
符号の説明
[0021]
1 編針
7 後バット
8 前バット
40 目移し受け針用カム装置
42 固定レイジングカム
42a,42b カム面
42c 中間カム
42d 支持長穴
46 目移し受けカム
46a カム面
46b 揺動軸
46c 表面
46d,46e 傾斜面
46f ばね受け穴
47 圧縮ばね
発明を実施するための最良の形態
[0022]
図1は、本発明の実施の一形態として、目移し受け針用カム装置40の概略的な構成を示す。目移し受け針用カム装置40は、図5および図6に示す目移し受け針用カム装置26に置換えて、図5のカム装置20に使用し、図4に示すような編針1を駆動することができる。図1でも、図6と同様に、目移し受け針用カム装置40の主要部分の構成と、前方から見た側面構成40aとを対応させる状態で示す。
[0023]
図1に示す目移し受け針用カム装置40は、キャリッジの地板35上に取付けられる固定レイジングカム42の内側に組込まれる。固定レイジングカム42の外側の前縁には、カム面42aが設けられる。固定レイジングカム42の中央付近の部分には、前縁がカム面42bとなる山型の形状で、後バット7の後端に当接して前進させる中間カム42cが形成されている。中間カム42cの頂部付近の両側には、一対の目移し受けカム46が配置される。目移し受けカム46は、前縁側にカム面46aが形成され、基端側の揺動軸46bが固定レイジングカム42の裏面側に形成される支持長穴42dに嵌合して、地板35の表面に平行な揺動軸46bまわりで、遊端側が地板35
[0008]
[FIG. 6] FIG. 6 is a plan view and a side view showing a schematic configuration of the cam device 20 for a transfer needle of FIG.
Explanation of symbols [0021]
DESCRIPTION OF SYMBOLS 1 Knitting needle 7 Rear butt 8 Front bat 40 Transfer receiving needle cam device 42 Fixed lasing cam 42a, 42b Cam surface 42c Intermediate cam 42d Long support hole 46 Transfer receiving cam 46a Cam surface 46b Oscillating shaft 46c Surface 46d, 46e Inclination Surface 46f Spring receiving hole 47 Best mode for carrying out the invention [0022]
FIG. 1 shows a schematic configuration of a cam device 40 for a transfer needle as an embodiment of the present invention. The transfer receiving needle cam device 40 is used in the cam device 20 of FIG. 5 in place of the transfer receiving needle cam device 26 shown in FIGS. 5 and 6, and drives the knitting needle 1 as shown in FIG. be able to. Also in FIG. 1, as in FIG. 6, the configuration of the main part of the transfer receiving needle cam device 40 and the side surface configuration 40 a viewed from the front are shown in a corresponding state.
[0023]
The transfer receiving needle cam device 40 shown in FIG. 1 is incorporated inside a fixed lasing cam 42 mounted on the base plate 35 of the carriage. A cam surface 42 a is provided on the outer front edge of the fixed lasing cam 42. An intermediate cam 42c is formed in the vicinity of the center of the fixed lasing cam 42. The intermediate cam 42c has a chevron shape with the front edge serving as the cam surface 42b. A pair of transfer receiving cams 46 are arranged on both sides near the top of the intermediate cam 42c. The transfer receiving cam 46 is formed with a cam surface 46 a on the front edge side, and a rocking shaft 46 b on the base end side is fitted into a support long hole 42 d formed on the back side of the fixed lasing cam 42, Around the rocking shaft 46b parallel to the surface, the free end side is the main plate 35.

【0011】
出している。揺動変位可能に支持長穴42dで揺動軸46bが支持される基端側からの後バット7の通過でまず傾斜面46dが押圧を受けて揺動変位し、遊端側が地板35側に沈む。さらに、後バット7の上端で表面46cが押圧を受けて、後バット7が目移し受けカム46の遊端側を通る際に、確実に没入させることができる。一対の目移し受けカム46の基端側となる揺動軸46bをキャリッジの走行方向に間隔をあけて支持し、遊端側を相互に接近させることによって、後バット7で先行側を押圧する状態から、突出状態の後行側のカム面46aに当接して案内される状態への切換えを円滑に行わせることができる。
[0029]
なお、固定レイジングカム42の一部に中間カム42cを設けるようにしているけれども、中間カム42cに相当するカムを固定レイジングカム42とは独立して設けるようにすることもできる。また、目移し受けカム46では、基端側と遊端側とが走行方向に配置されているけれども、走行方向と交差する方向に配置されていても、傾斜面46d,46eなどの方向を調整すれば、目移し受けカム46と同等に近い状態で遊端側を出没させることができる。
[0011]
I'm out. When the rear bat 7 passes from the base end side where the swing shaft 46b is supported by the support elongated hole 42d so as to be swingable and displaceable, the inclined surface 46d is first swung and displaced, and the free end side is moved to the base plate 35 side. Sink. Further, the surface 46 c is pressed at the upper end of the rear bat 7, and when the rear bat 7 is transferred and passes the free end side of the receiving cam 46, it can be surely immersed. The swing shaft 46b, which is the base end side of the pair of transfer receiving cams 46, is supported at an interval in the carriage traveling direction, and the free end side is brought close to each other, thereby pressing the leading side with the rear bat 7. It is possible to smoothly switch from the state to the state of being guided by coming into contact with the cam surface 46a on the following side in the protruding state.
[0029]
Although the intermediate cam 42c is provided in a part of the fixed lasing cam 42, a cam corresponding to the intermediate cam 42c can be provided independently of the fixed lasing cam 42. In the transfer receiving cam 46, the base end side and the free end side are arranged in the traveling direction, but the directions of the inclined surfaces 46d and 46e are adjusted even if they are arranged in the direction intersecting the traveling direction. Then, the free end side can be made to appear and disappear in a state close to that of the transfer receiving cam 46.

Claims (3)

横編機の針床に沿って往復走行するキャリッジに搭載され、針床に並設されて前後に二つのバットをそれぞれ有する編針を歯口の前後に進退するように駆動するために、後バットに作用して編針を編目編成動作および目移しの渡し動作させるためのカム面が外側に設けられる大略的に山型のレイジングカムを含む編成用カム装置の一部として、レイジングカムの内側に設けられて後バットに作用し、編針を目移しの受け針として動作させるための目移し受け針用カム装置において、
キャリッジの走行方向の一方側と他方側とに分けて設けられ、先行側となるカムが後バットで押圧されれば沈む表面、およびキャリッジの走行に応じて後行側となるカムが突出する状態で後バットの後端を駆動する前縁側のカム面をそれぞれ有し、独立して出没可能な一対の目移し受けカムと、
各目移し受けカムにそれぞれ設けられ、各目移し受けカムを突出状態となるように付勢するばねと、
大略的に山型の形状を有し、頂部が目移し受けカムの先行側から後行側に移行する位置に対応して配置され、頂部までの先行側で編針を前進させて、後バットの後端が後行側の目移し受けカムのカム面に当接するように案内する中間カムと、
を含むことを特徴とする目移し受け針用カム装置。
The rear bat is mounted on a carriage that reciprocates along the needle bed of the flat knitting machine and is driven in parallel to the needle bed so that the knitting needles each having two bats on the front and rear are moved forward and backward. As a part of a knitting cam device including a mountain-shaped lasing cam, which is provided on the outside, a cam surface for operating the knitting needles to perform stitch knitting operation and transfer operation is provided inside the raising cam. In the cam device for the transfer receiving needle for acting on the rear bat and operating the knitting needle as the transfer receiving needle,
Provided separately on one side and the other side in the traveling direction of the carriage, the surface that sinks when the cam on the leading side is pressed by the rear butt, and the cam that protrudes on the trailing side according to the traveling of the carriage A pair of transfer receiving cams each having a cam surface on the front edge side for driving the rear end of the rear bat and capable of independently appearing and retracting,
A spring provided on each transfer receiving cam, and energizing each transfer receiving cam in a protruding state;
It has a generally chevron shape and is arranged corresponding to the position where the top portion is transferred and moved from the leading side to the trailing side of the receiving cam, and the knitting needle is advanced on the leading side to the top portion, An intermediate cam that guides the rear end to come into contact with the cam surface of the trailing transfer cam;
A cam device for a transfer needle, comprising:
前記各目移し受けカムは、前記レイジングカムの裏面側で揺動変位可能に支持される基端部を有し、遊端部が前記出没可能となることを特徴とする請求項1記載の目移し受け針用カム装置。   2. The eye according to claim 1, wherein each of the transfer receiving cams has a base end portion supported so as to be swingable and displaceable on a back surface side of the lasing cam, and a free end portion can be projected and retracted. Cam device for transfer needle. 前記一対の目移し受けカムは、前記キャリッジの走行方向に、前記基端部が相互に離れ、前記遊端部が相互に接近するように配置されることを特徴とする請求項2記載の目移し受け針用カム装置。   3. The eye according to claim 2, wherein the pair of transfer receiving cams are arranged so that the base end portions are separated from each other and the free end portions are close to each other in a traveling direction of the carriage. Cam device for transfer needle.
JP2010541209A 2008-12-01 2009-11-26 Cam mechanism for transfer needle Active JP5543925B2 (en)

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CN109468738B (en) * 2019-01-14 2023-09-22 宁波博日机械有限公司 Three-system flat knitting machine bottom plate
TWI747185B (en) * 2020-03-05 2021-11-21 典洋針織機械股份有限公司 Transfer device of high density fabric and method thereof

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GB220839A (en) * 1923-10-08 1924-08-28 Anton Strelz Improvements in knitting machines
JPS591750A (en) * 1982-04-28 1984-01-07 株式会社島アイデア・センタ− Traverse knitting machine
JPS6081356A (en) * 1983-10-07 1985-05-09 株式会社島精機製作所 Traverse knitting machine
JPS6237142A (en) * 1985-08-12 1987-02-18 株式会社タナベ Method of bending rear of blank in automatic box making machine
JPS62110954A (en) * 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 Cam holder of traverse knitting machine and knitting machineequipped with said cam holder
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
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JP4015982B2 (en) * 2003-10-10 2007-11-28 株式会社島精機製作所 Cam apparatus for knitting fabric
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CN201148506Y (en) * 2007-11-21 2008-11-12 萧世贤 Single peak type needle moving triangular system

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