EP3165652B1 - Strickverfahren und rundstrickmaschine - Google Patents

Strickverfahren und rundstrickmaschine Download PDF

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Publication number
EP3165652B1
EP3165652B1 EP16195821.0A EP16195821A EP3165652B1 EP 3165652 B1 EP3165652 B1 EP 3165652B1 EP 16195821 A EP16195821 A EP 16195821A EP 3165652 B1 EP3165652 B1 EP 3165652B1
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EP
European Patent Office
Prior art keywords
needle
butt
jack
cam
welting
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Active
Application number
EP16195821.0A
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English (en)
French (fr)
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EP3165652A1 (de
Inventor
Sergio Delgado Villanueva
Masaru Enishi
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Precision Fukuhara Works Ltd
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Precision Fukuhara Works Ltd
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Publication of EP3165652A1 publication Critical patent/EP3165652A1/de
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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
    • D04B1/00Weft knitting processes for the production of fabrics or articles not dependent on the use of particular machines; Fabrics or articles defined by such processes
    • D04B1/10Patterned fabrics or articles
    • D04B1/102Patterned fabrics or articles with stitch pattern
    • 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
    • D04B15/66Devices for determining or controlling patterns ; Programme-control arrangements
    • D04B15/68Devices for determining or controlling patterns ; Programme-control arrangements characterised by the knitting instruments used
    • 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
    • D04B15/66Devices for determining or controlling patterns ; Programme-control arrangements
    • D04B15/82Devices for determining or controlling patterns ; Programme-control arrangements characterised by the needle cams used

Definitions

  • the present invention relates to a knitting method and a circular knitting machine, like various jacquard machines.
  • Jacquard machines and the like for performing semi-jacquard knitting or jacquard knitting in circular knitting machines include a needle selector that performs needle selection. Needle selection involves switching knitting tools such as needles and sinkers between an operation state and a non-operation state, thereby changing the routes of the knitting tools. The routes of the knitting tools are changed by the needle selector, and, in the case of needles, needle routes may be one selected mainly from those for 3-position knitting structures consisting of knit, tuck, and welt, and knitting is thus performed.
  • an electromagnetic needle selector that is a combination of an electromagnetic actuator, a selecting jack, and a rocking piece, for example, as shown in JP H9-111621A .
  • a needle selector using a piezoelectric element that is a combination of a multi-stage piezoelectric actuator and a patterning jack for example, as shown in JP H6-94619B
  • a mechanical needle selector using a multi-stage peg holder instead of a multi-stage piezoelectric actuator for example, as shown in JP S50-58347A
  • the needle selecting methods using these electrical and mechanical needle selectors make it possible to select any one of knit, tuck, and welt for each needle.
  • the needle selection is based on the principle that, at an entrance portion of a cam disposed at each feeder where a yarn is fed to a needle, first a selection is made as to whether a needle that moves due to rotation of a knitting machine is to be raised or to be kept at its current position, and, if it is determined that the needle is to be raised, the needle is raised to a position around the center of the cam, and before the needle reaches a yarn feeding position, a selection is made as to whether the needle is to be further raised or to be kept at its current position.
  • the needle in the case of knit, the needle is first raised, then further raised, and receives a fed yarn.
  • the needle In the case of tuck, the needle is first raised, is then kept at its current position, and receives a fed yarn.
  • the needle In the case of welt, the needle is kept at the first position. Subsequently, as guided by the cam, the needles at the knit and tuck positions are lowered, after which all needles including the needle selected for welting perform stitching and are returned to their original positions so as to be placed into the next feeder.
  • the selecting mechanism used is such that when raising a needle, a cam is caused to guide a butt of the needle and raise the needle, and, when keeping a needle at its current position, the needle or a jack provided on the lower portion of the needle is pushed in a direction that is perpendicular to the rotational direction of a cylinder and the like of the knitting machine to detach the butt from the cam, and thus guidance by the cam is deactivated and the needle is kept at its current position.
  • Needle selection for tucking may not be performed depending on the machine specifications, but various jacquard machines select a knitting structure for each needle by performing needle selection once or twice before the needle reaches a yarn feeding position, making jacquard or semi-jacquard knitting possible.
  • knitting structures are selected according to needle selection prior to feeding a yarn.
  • needles for knitting and tucking that received a fed yarn have to perform stitching, and thus the cam structure is such that all needles also including needles for welting are uniformly lowered as guided by the cam and perform stitching, after which the needles return to their initial height and are placed into the next feeder, that is, needles for welting also perform stitching as in the case of needles for knitting and tucking.
  • needles for welting do not receive a fed yarn, and thus they do not necessarily have to perform stitching.
  • the welt stitching is a problem that needs to be solved in order to improve the quality.
  • the welt stitching is more likely to cause breakage in yarn or filaments and affects the quality of knitted fabrics.
  • the welt stitching is more likely to cause breakage in the yarn or filaments. Since an old loop in the hook of a needle selected for welting has already been stitched and its size has been determined, if a stitch at a size that is the same as or greater than the determined size is performed in a subsequent welt, the load on the old loop is large.
  • the present invention is directed to a knitting method according to claim 1.
  • Examples of the knitting member include a cylinder and a dial
  • needle selection methods may be methods using electrical devices such as an electromagnetic needle selector or a multi-stage piezoelectric actuator, mechanical devices such as a multi-stage peg holder, or the like.
  • Examples of the deactivation method include mechanical deactivation methods using a fixing member such as a projection or a multi-stage peg holder, electrical deactivation methods by needle selection using an electrical needle selector such as an electromagnetic needle selector or a multi-stage piezoelectric actuator, and the like.
  • the present invention is directed to a knitting method using a needle selector for selecting needles by acting on either the needles or jacks, each needle and a jack corresponding thereto being engageable with each other and being inserted in the same needle groove, on a knitting member including needle grooves in a circular knitting machine, wherein each needle selected for welting or a butt of a jack corresponding thereto is detached from a cam for performing stitching, to after a stitch position, so that guidance by the cam is deactivated.
  • the needle selected for welting or the jack corresponding thereto is not guided by the cam for performing stitching because the butt has been detached from the cam at the stitch position, and the needle does not perform stitching, and thus the load on old loops generated by performing stitching can be suppressed, and breakage and overlapping of yarns and filaments can be suppressed.
  • the needle or the butt of the jack corresponding thereto is detached from the cam for performing stitching at the time of needle selection for welting and the butt is once returned to the cam after needle selection for welting and is then detached again to after the stitch position.
  • the stitch position refers to the lowest position in a cam race for drawing in a fed yarn in a lateral direction, which is a rotational direction of the knitting machine.
  • the upper-lower relationship is such that the hook direction of a needle is set to the upper direction and the tail direction of the needle on the opposite side is set to the lower direction.
  • the height direction is set to the upper-lower direction.
  • the needle selected for welting or the butt of the jack corresponding thereto is detached from the cam for performing stitching, at a position that is immediately before the stitch position and that is preferably at a height for welting. Accordingly, the needle for welting moves completely laterally without being lowered, and breakage and overlapping of yarns and filaments can be suppressed without applying a load on the loops. It will be appreciated that any position higher than the stitch position may be included in the scope of the present invention, even if it is not the height for welting.
  • the needle selected for welting or the jack corresponding thereto is pushed in a direction opposite from the cam so that the butt is detached from the cam.
  • the jack itself may be pushed by directly pushing the butt of the jack with a peg, or the jack may be indirectly pushed by pushing the butt of the second jack with a peg, the second jack being a jack that is inserted in the same groove as the above-described jack and is provided so as to be capable of being in contact with the jack.
  • the peg it is also possible to use a projection member that is provided on a route where only the above-described jack or the second jack corresponding to the needle selected for welting passes, and that uniformly pushes the jack or the second jack.
  • the peg may be electrically controlled as to whether or not to push the butt, or the peg may be a mechanical device that is set before the circular knitting machine operating. Accordingly, the needle or the butt of the jack engaged with the needle is detached from the cam for performing stitching, and thus guidance by the cam to the stitch position can be deactivated.
  • the present invention is directed to a circular knitting machine according to claim 8.
  • the needle selected for welting or the butt of the jack corresponding thereto is detached from the cam for performing stitching at the stitch position by the deactivation means, and thus guidance by the cam to the stitch position can be deactivated.
  • the deactivation means operates when a butt of the needle is at a position that is immediately before the stitch position and that is preferably at a height for welting. Accordingly, the needle for welting moves completely laterally without being lowered, and breakage and overlapping of yarns and filaments can be suppressed without applying a load on the loops. It will be appreciated that any means that operates at a position higher than the stitch position may be included in the scope of the present invention even if it is not at the height for welting.
  • the position at which the deactivation means is provided is not limited to a position facing the needle or the jack, and may also be a position facing a second jack that is inserted in the same groove as the above-described jack and is provided so as to be capable of being in contact with the jack. Accordingly, the deactivation means is not limited to a means that directly acts on the needle or the jack, and may also be a means that indirectly acts on the jack by acting on the second jack.
  • the deactivation means directly or indirectly pushes the needle or the jack.
  • the jack itself may be pushed by directly pushing the butt of the jack with a peg, or the jack may be indirectly pushed by pushing the butt of the second jack with a peg.
  • the peg it is also possible to use a projection member that is provided on a route where only the above-described jack or the second jack corresponding to the needle selected for welting passes, and that uniformly pushes the jack or the second jack.
  • the peg may be electrically controlled as to whether or not to be at a position for pushing the butt, or the peg may be a mechanical device that is set before the circular knitting machine operating. Accordingly, the needle or the butt of the jack engaged with the needle is detached from the cam for performing stitching, and thus guidance by the cam can be deactivated.
  • FIG. 1 shows a front view of a cam holder of a knitting machine in Example 1 of the present invention, and a side view of a needle and jacks corresponding thereto.
  • a needle 1, an intermediate jack 2 that is provided on the lower portion of the needle 1 so as to be engaged with and move in one piece with the needle 1, and a selecting jack 3 that is provided on the lower portion of the intermediate jack 2 so as to be capable of being in contact with the intermediate jack 2, are inserted in the same needle groove provided on a cylinder, which is a knitting member of a circular knitting machine.
  • cams are provided so as to face the needle 1 and butts of the intermediate jack 2 via a cam holder 4.
  • the intermediate jack 2 has upper and lower butts 22 and 21, and a stitch cam 41 for performing stitching and a jack raising cam 42 for raising a jack are alternately provided as cams facing the lower butt 21, along the rotational direction of the knitting machine.
  • a structure is employed in which the lower butt 21 is lowered as guided by the stitch cam 41, and the intermediate jack 2 and the needle 1 engaged therewith are also lowered, so that stitching is performed.
  • the cams facing the needle 1 and the upper butt 22 are not provided with a stitch portion, and the corresponding portion has a structure whereby lateral movement occurs at a welt position.
  • the cam race of the jack raising cam 42 has a knit route, and is further provided with a groove at the welt position from a portion after first raising the lower butt 21 in the jack raising cam 42 to an end of the jack raising cam 42, so that, if the butt is detached from the cam at that first portion, the welt route can be traced.
  • the portion where the intermediate jack 2 and the selecting jack 3 are in contact with each other is set such that the intermediate jack 2 is positioned on the inner side and the selecting jack 3 is positioned on the outer side with respect to the rotational direction of the knitting machine, and, when the selecting jack 3 is pushed to the inner side, the intermediate jack 2 is pushed by the selecting jack 3 and is also pushed to the inner side.
  • an electromagnetic actuator 51 and a cam are provided so as to face the selecting jack 3 via an actuator holder 5.
  • the selecting jack 3 has a push butt 31 at a position that is lower than the contact position with the intermediate jack 2 disposed on the upper portion of the selecting jack 3, and that is slightly higher than the center of the entire selecting jack 3, has a middle butt 32 at a position that is lower than the push butt 31, and is further provided with a rocking piece 33 at a position that is lower than the middle butt 32 and that is slightly lower than the center of the entire selecting jack 3.
  • a push cam 52 including projections 521 and 522 is provided at a position that is higher than the push butt 31 and that is not in contact with the push butt 31, so as to face the selecting jack 3.
  • the positional relationship is set such that the push butt 31 is not in contact with any projections in a usual state, but, when the selecting jack 3 is raised, the push butt 31 is brought into contact with the projections 521 and 522.
  • the electromagnetic actuator 51 is provided so as to face the rocking piece 33.
  • FIG. 2(a) is a cross-sectional view of the knitting machine at a position 1 in FIG. 1
  • FIG. 2(b) is a cross-sectional view of the knitting machine at a position 2 in FIG. 1
  • FIG. 2(c) is a cross-sectional view of the knitting machine at a position 1' in FIG. 1
  • FIG. 2(d) is a cross-sectional view of the knitting machine at a position 2' in FIG. 1 .
  • This example will describe needle selection from two positions consisting of knit and welt.
  • the needle selection process is such that, in the case of welt, when a needle selection data signal is received, the electromagnetic actuator operates to draw in a lower portion 331 of the rocking piece 33, so that, as shown in FIG.
  • the projection 522 is provided at the stitch position of the push cam 52. Accordingly, as shown in FIG. 2(d) , the selecting jack 3 corresponding to the needle 1 selected for welting moves to the stitch position while maintaining the raised state, after which the push butt 31 is uniformly pushed by the projection 522, the lower butt 21 of the intermediate jack 2 is detached from the stitch cam 41, and thus the guiding of the needle 1 to stitching is avoided, and the needle can move laterally while maintaining the welt position. Accordingly, the needle selected for welting avoids being used for stitching. On the other hand, as shown in FIG.
  • This example describes the configuration of needle selection from two positions consisting of knit and welt.
  • the projection 522 is merely provided at the stitch position, but it is also possible to apply a configuration in which a needle selector is provided in front of the projection 522, all selecting jacks 3 are temporarily lowered by middle cams 54 facing the middle butts 32 before reaching the needle selector, after which a needle first selected for welting is again selected by the needle selector, and the selecting jack 3 is again raised so that the push butt 31 is pushed by the projection 522 at the stitch position, and the needle selected for welting does not perform stitching and is kept at the welt position.
  • this configuration if needle selection from knit and tuck is performed by providing an actuator also at a portion where needle selection is to be performed from knit and tuck, needle selection from three positions consisting of knit, tuck, and welt becomes possible.
  • the selecting jack is raised in the case of needle selection for welting, and the selecting jack is caused to move laterally without being raised in the case of needle selection for knitting, but the opposite configuration is also possible.
  • a projection is provided at the stitch position and the settings are made such that a needle selected for welting or a butt of a jack corresponding thereto is positioned at a height where the projection is provided and a needle selected for knitting or a butt of a jack corresponding thereto is positioned at a height that is different from the height where the projection is provided, after the needle selected for welting or the jack corresponding thereto moves to the stitch position, the push butt is uniformly pushed by the projection so that the lower butt can be detached from the cam, and the needle selected for welting avoids being used for stitching.
  • FIG. 3 shows a front view of a cam holder of a knitting machine in Example 2 of the present invention, and a side view of a needle and jacks corresponding thereto.
  • a patterning jack 6 is used instead of the selecting jack 3 of Example 1.
  • the patterning jack 6 is provided with a patterning butt 61 including several to several tens of vertically arranged butts, and a multi-stage piezoelectric actuator 7 including a peg 71 corresponding to each butt position of the patterning butt 61 is provided so as to face the patterning butt 61.
  • FIG. 4(a) is a cross-sectional view of the knitting machine at a position 1 in FIG. 3
  • FIG. 4(b) is a cross-sectional view of the knitting machine at a position 2 in FIG. 3
  • FIG. 4(c) is a cross-sectional view of the knitting machine at a position 3 in FIG. 3
  • FIG. 4(d) is a cross-sectional view of the knitting machine at a position 1' in FIG. 3
  • FIG. 4(e) is a cross-sectional view of the knitting machine at a position 3' in FIG. 3 .
  • the needle selection process is such that when a needle selection data signal is received, the peg 71 of the multi-stage piezoelectric actuator 7 operates, and thus if the peg 71 is activated as shown in FIG. 4(d) , the peg 71 is horizontally oriented to be brought into contact with the patterning butt 61 and pushes the patterning butt 61 so that the patterning jack 6 is pushed accordingly and the intermediate jack 2 is also pushed, and the lower butt 21 is detached from the cam. On the other hand, if the peg 71 is deactivated as shown in FIG. 4(a) , the peg 71 is oriented downward to pass under the patterning butt 61 so that the lower butt 21 is not detached from the cam.
  • the multi-stage piezoelectric actuator 7 is provided not only at a first needle selection position where needle selection is performed between knit & tuck and welt, but also at a second needle selection position where needle selection is performed between knit and tuck, and a third needle selection position, which is a stitch position where needle selection is performed so as to prevent a needle selected for welting from performing stitching.
  • the peg 71 is activated as shown in FIG. 4(d) for a needle selected for welting, and is deactivated as shown in FIG. 4(a) for a needle selected for knitting or tucking.
  • the second needle selection position if the lower butt 21 corresponding to the needle 1 that has been raised to the tuck position as guided by the cam as a result of the needle selection at the first needle selection position is detached from the cam at the tuck position, the needle moves laterally while maintaining that position, and thus a tuck is made.
  • a peg 72 is activated as shown in FIG.
  • a multi-stage piezoelectric actuator 70 is provided instead of the projection 522 at the stitch position of Example 1, where a peg 701 is activated only for a needle selected for welting and pushes the patterning butt 61, so that the lower butt 21 is detached from the cam, and the needle selected for welting avoids being used for stitching.
  • a needle selected for knitting or tucking is lowered as guided by the stitch cam 41 and performs stitching.
  • 3-position knitting consisting of knit, tuck, and welt can be performed such that only a needle selected for welting does not perform stitching and moves laterally while maintaining the welt position, whereas a needle selected for knitting or tucking performs stitching.
  • a multi-stage piezoelectric actuator is used, but it may be replaced by a multi-stage peg holder. Accordingly, a semi-jacquard pattern can be knitted in which no pattern change is performed while the knitting machine is operating.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Knitting Machines (AREA)
  • Knitting Of Fabric (AREA)

Claims (15)

  1. Strickverfahren, durchgeführt durch Auswahl von in Nadelrillen eingesetzten Nadeln (1) an einem die Nadelrillen und eine Kurvenscheibe (41) enthaltenden Nadelzylinder oder Rippscheibe, um Ketteln in einer Rundstrickmaschine auszuführen, wobei nur zum Stricken ausgewählte Nadeln (1) und zum Fangen ausgewählte Nadeln (1) das Ketteln leisten, und durch ein Abschaltverfahren verhindert wird, dass zum Säumen ausgewählte Nadeln (1) das Ketteln ausführen,
    gekennzeichnet dadurch,
    dass das Abschaltverfahren das Abschalten einer Führung der Nadeln (1) durch die Kurvenscheibe (41) in eine Kettelposition, welche die tiefste Position in einer Kurvenbahn von unmittelbar vor der Kettelposition bis hinter der Kettelposition ist, umfasst.
  2. Strickverfahren nach Anspruch 1, wobei das Abschaltverfahren ein mechanisches Abschaltverfahren einschließt, das ein Befestigungselement wie ein vorspringendes Teil (522) oder einen mehrstufigen Stifthalter verwendet.
  3. Strickverfahren nach Anspruch 1, wobei das Abschaltverfahren ein elektrisches Abschaltverfahren mittels eines elektrischen Nadelselektors einschließt.
  4. Strickverfahren nach Anspruch 1 unter Verwendung eines Nadelselektors zur Auswahl von Nadeln (1) durch Einwirken entweder auf die Nadeln (1) oder Wippen (2; 3; 6), wobei jede Nadel (1) und eine dazu entsprechende Wippe (2) miteinander in Eingriff bringbar sind und in die gleiche Nadelrille an dem Nadelzylinder oder Rippscheibe eingesetzt werden, wobei ein Fuß jeder zum Säumen ausgewählten Nadel (1) oder ein Endstück (21) einer dazu entsprechenden Wippe (2) von der Kurvenscheibe (41) gelöst werden, um das Ketteln auszuführen, so dass eine Führung des Endstücks durch die Kurvenscheibe (41) abgeschaltet wird.
  5. Strickverfahren nach Anspruch 4, wobei nach Nadelauswahl zum Säumen das Endstück (21) vor Erreichen der Kettelposition einmal zur Kurvenscheibe (41) zurückgeführt wird, wonach der Fuß der zum Säumen ausgewählten Nadel (1) oder das Endstück (21) der dazu entsprechenden Wippe (2) von der Kurvenscheibe (41) wieder auf hinter die Kettelposition gelöst wird.
  6. Strickverfahren nach Anspruch 4 oder 5, wobei der Fuß der zum Säumen ausgewählten Nadel (1) oder das Endstück (21) der dazu entsprechenden Wippe (2) von der Kurvenscheibe (41) gelöst wird, um Ketteln an einer Position, das heißt, in einer Höhe zum Säumen auszuführen, so dass die Nadel (1) zum Säumen sich völlig seitwärts bewegt, ohne abgesenkt zu werden.
  7. Strickverfahren nach einem der Ansprüche 4 bis 6, wobei die zum Säumen ausgewählte Nadel (1) oder die dazu entsprechende Wippe (2) in eine Richtung entgegengesetzt von der Kurvenscheibe (41) gedrückt wird, so dass das Endstück (21) von der Kurvenscheibe (41) gelöst wird.
  8. Rundstrickmaschine, umfassend einen Strickmechanismus und einen Nadelzylinder oder Rippscheibe mit Nadelrillen, wobei die Nadeln (1) jeweils in den Nadelrillen aufgenommen sind, Wippen (2; 3; 6), von denen jede mit einer dazu entsprechenden Nadel in Eingriff bringbar ist und in der gleichen Rille wie die Nadel (1) eingesetzt wird, und einen Nadelselektor zur Auswahl der Nadeln (1) durch Einwirken entweder auf die Nadeln (1) oder die Wippen (2; 3; 6),
    dadurch gekennzeichnet, dass
    der Strickmechanismus Abschaltmittel zum Lösen des Fußes jeder zum Säumen ausgewählten Nadel (1) oder des Endstücks (21) einer dazu entsprechenden Wippe (2) von einer Kurvenscheibe (41) aufweist, um Ketteln von unmittelbar vor einer Kettelposition, welche die tiefste Position in einer Kurvenbahn ist, bis hinter der Kettelposition auszuführen.
  9. Rundstrickmaschine nach Anspruch 8, wobei das Abschaltmittel in Betrieb ist, wenn ein Fuß der Nadel (1) sich in einer Position, das heißt in einer Höhe zum Säumen, befindet.
  10. Rundstrickmaschine nach Anspruch 8 oder 9, wobei das Abschaltmittel die Nadel (1) oder die Wippe (2; 3; 6) direkt oder indirekt drückt.
  11. Rundstrickmaschine nach einem der Ansprüche 8 bis 10, wobei die Wippe (2; 3; 6) gebildet wird durch eine erste Wippe (2), die mit der Nadel (1) in Eingriff gebracht werden kann, und eine zweite Wippe (3; 6), die sich mit der ersten Wippe (2) in Kontakt befinden kann, und die so vorgesehen ist, dass sie dem Abschaltmittel gegenüberliegt, die zweite Wippe (3; 6) direkt durch das Abschaltmittel gedrückt wird, und die erste Wippe (2) folglich indirekt gedrückt wird, so dass ein Endstück (21) der ersten Wippe (2) von der Kurvenscheibe (41) gelöst wird, um Ketteln auszuführen.
  12. Rundstrickmaschine nach einem der Ansprüche 8 bis 11,
    wobei ein vorspringendes Teil (522) als Abschaltmittel vorgesehen ist, der Fuß jeder zum Säumen ausgewählten Nadel (1) oder das Endstück (31; 32) einer dazu entsprechenden Wippe (3) in einer Höhe positioniert wird, wo das vorspringende Teil (522) vorgesehen ist,
    der Fuß jeder zum Stricken ausgewählten Nadel (1) oder das Endstück (21) einer dazu entsprechenden Wippe (2) in einer Höhe positioniert wird, die sich von der Höhe unterscheidet, wo das vorspringende Teil (522) vorgesehen ist, und nachdem die zum Säumen ausgewählte Nadel (1) oder die dazu entsprechende Wippe (2; 3) sich in die Kettelposition bewegt, das Endstück (31; 32) durch das vorspringende Teil (522) gleichmäßig gedrückt wird, so dass das Endstück (21) von der Kurvenscheibe (41) gelöst wird.
  13. Rundstrickmaschine nach einem der Ansprüche 8 bis 11, wobei ein vorspringendes Teil (522) als Abschaltmittel vorgesehen ist,
    ein elektromagnetischer Nadelselektor vor der Kettelposition vorgesehen ist, jede zum Säumen ausgewählte Nadel (1) erneut vor der Kettelposition ausgewählt wird,
    der Fuß der zum Säumen ausgewählten Nadel (1) oder das Endstück (31; 31) einer dazu entsprechenden Wippe (3) in einer Höhe positioniert wird, wo das vorspringende Teil (522) vorgesehen ist,
    andere Füße von Nadeln (1) oder Endstücke (21; 22) von dazu entsprechenden Wippen (2) in einer Höhe positioniert werden, die sich von der Höhe unterscheidet, wo das vorspringende Teil (522) vorgesehen ist, und
    nachdem die zum Säumen ausgewählte Nadel (1) oder die dazu entsprechende Wippe (2) sich in die Kettelposition bewegt, das Endstück (31; 32) durch das vorspringende Teil (522) gleichmäßig gedrückt wird, so dass das Endstück (21) von der Kurvenscheibe gelöst wird.
  14. Rundstrickmaschine nach einem der Ansprüche 8 bis 11, wobei
    ein mehrstufiger piezoelektrischer Aktuator (70) als Abschaltmittel vorgesehen ist,
    jede zum Säumen ausgewählte Nadel (1) oder eine dazu entsprechende Wippe (2; 6) erneut vor der Kettelposition ausgewählt wird, und
    der Fuß der zum Säumen ausgewählten Nadel (1) oder das Endstück (61) der dazu entsprechenden Wippe (6) durch einen Stift (701) des mehrstufigen piezoelektrischen Aktuators (70) gedrückt wird, so dass das Endstück (21) von der Kurvenscheibe (41) gelöst wird.
  15. Rundstrickmaschine nach einem der Ansprüche 8 bis 11,
    wobei ein mehrstufiger Stifthalter als Abschaltmittel vorgesehen ist,
    jede zum Säumen ausgewählte Nadel (1) oder eine dazu entsprechende Wippe (2; 6) erneut vor der Kettelposition ausgewählt wird, und
    der Fuß der zum Säumen ausgewählten Nadel (1) oder das Endstück (61) der dazu entsprechenden Wippe (6) durch einen Stift (701) des mehrstufigen Stifthalters gedrückt wird, so dass das Endstück (21) von der Kurvenscheibe (41) gelöst wird.
EP16195821.0A 2015-11-09 2016-10-26 Strickverfahren und rundstrickmaschine Active EP3165652B1 (de)

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CN107841823B (zh) * 2017-09-12 2023-09-15 浙江华诗秀新材料科技有限公司 外包型针织机提花接力针及组合式提花针组件
CN108265381B (zh) * 2018-03-07 2019-07-12 石狮市宝翔针织机械有限公司 一种电脑提花圆纬机及其添纱提花工艺

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Publication number Priority date Publication date Assignee Title
JPS5417867B2 (de) 1973-09-21 1979-07-03
GB1475560A (en) * 1974-10-04 1977-06-01 Terrot Soehne & Co C Multifeed circular knitting machine
JPS63211348A (ja) * 1987-02-27 1988-09-02 株式会社 福原精機製作所 丸編機の選針装置
JPH0694619B2 (ja) 1988-10-05 1994-11-24 ワツクデータサービス株式会社 編機用選針装置
DE3927815C2 (de) * 1989-08-23 1999-12-23 Sipra Patent Beteiligung Plüsch- oder Florstrickware und Rundstrickmaschine zu deren Herstellung
JP3178751B2 (ja) * 1993-01-21 2001-06-25 株式会社福原精機製作所 ダブルニット編地、およびその製造装置および方法
JPH08199453A (ja) * 1995-01-13 1996-08-06 Fukuhara Seiki Seisakusho:Kk 編機の柄出し装置
JP3576664B2 (ja) 1995-10-09 2004-10-13 株式会社福原精機製作所 編機用電磁選択装置及びこれを有する編みツール制御装置
DE19545770A1 (de) * 1995-12-07 1997-07-03 Schmidt Ursula Dorothea Durch Fadenflottungen gemusterte Plattierware und Verfahren zu deren Herstellung auf Rundstrickmaschinen
CN1563537A (zh) * 2004-03-25 2005-01-12 江南大学 仿烂花效应针织绒头织物的编织方法
CN101146942B (zh) * 2005-03-25 2010-06-09 株式会社岛精机制作所 横机中的筒状针织物的编织方法和横机
CN104328594B (zh) * 2014-11-24 2016-07-27 西安工程大学 采用电磁选针的五功位电脑横机编织机构

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CN106995972B (zh) 2021-04-20
EP3165652A1 (de) 2017-05-10

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