EP1631712B1 - Metier - Google Patents

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Publication number
EP1631712B1
EP1631712B1 EP04735865A EP04735865A EP1631712B1 EP 1631712 B1 EP1631712 B1 EP 1631712B1 EP 04735865 A EP04735865 A EP 04735865A EP 04735865 A EP04735865 A EP 04735865A EP 1631712 B1 EP1631712 B1 EP 1631712B1
Authority
EP
European Patent Office
Prior art keywords
loom
warp
thread
warp threads
control
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.)
Expired - Lifetime
Application number
EP04735865A
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German (de)
English (en)
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EP1631712A1 (fr
Inventor
Francisco Speich
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Textilma AG
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Textilma AG
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Publication date
Application filed by Textilma AG filed Critical Textilma AG
Publication of EP1631712A1 publication Critical patent/EP1631712A1/fr
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    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C3/00Jacquards
    • D03C3/10Centre-shed jacquards
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C13/00Shedding mechanisms not otherwise provided for
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D49/00Details or constructional features not specially adapted for looms of a particular type
    • D03D49/04Control of the tension in warp or cloth
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D49/00Details or constructional features not specially adapted for looms of a particular type
    • D03D49/04Control of the tension in warp or cloth
    • D03D49/12Controlling warp tension by means other than let-off mechanisms
    • D03D49/14Compensating for tension differences during shedding
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D51/00Driving, starting, or stopping arrangements; Automatic stop motions
    • D03D51/18Automatic stop motions
    • D03D51/20Warp stop motions
    • D03D51/28Warp stop motions electrical
    • D03D51/30Warp stop motions electrical wherein droppers are suspended on individual warp threads or small groups of threads

Definitions

  • the invention relates to a loom according to the preamble of claim 1.
  • a weaving machine of the type mentioned is from the WO 99/13145 known.
  • the weaving machine includes a warp tensioning device and a shed forming device having biased warp threads in a first shed position.
  • An oscillatingly drivable lifting device is provided with drivers for the warp threads, wherein control means operable by means of actuators are provided in order to selectively engage the warp threads with the carriers, which move the warp threads into a second shed position.
  • the disadvantage is that in this weaving machine equipped with the carriers lifting device must move the entire path of the warp threads from the first compartment position to the second compartment position. The lifting device must therefore perform a relatively large way, which is both time consuming and on the other hand requires higher driving forces.
  • the object of the invention is to improve a loom of the type mentioned.
  • the weaving machine is common to all warp threads second lifting device, which moves the warp threads from the first shed position effective for the first lifting switching position, resulting in a very simple for all warp second lifting device, which also significantly reduces the switching path for the first lifting device, so that the first lifting a warp only still has to move from the switch position to the second compartment position. Both hoists only have to travel a limited distance, which takes less time. Moreover, since the lifting devices can operate simultaneously, there is a substantial increase in the power of the loom. Incidentally, the service life is improved by the lower susceptibility to wear by this training. The weaving machine also results in less noise emission.
  • the second lifting device may be according to claim 2 a reaching across all warp beams.
  • the stroke of the second lifting device can be very different, it is advantageous if this performs at least half of the stroke of the warp threads in the shed according to claim 3.
  • the first lifting device for each warp thread has a control blade with a driver slot and an associated, preferably hook-shaped driver for the associated warp thread.
  • the warp thread is selectively engageable with the driver by means of a switchable by the actuator control blade.
  • the cam slot of the displacement track of the driver is assigned and performed in the switching area via an obliquely to the direction of displacement of the driver control slot from the track of the driver out in an extended guide slot of the control blade.
  • the guide slot according to claim 6 is provided with a casserole side.
  • control blade can be designed as a sheet steel strip.
  • control blade is sleeve-shaped with two side walls, between which the driver is slidably mounted.
  • the control blade is sleeve-shaped with two side walls, between which the driver is slidably mounted.
  • a secure guidance of the warp thread from and to the driver is achieved.
  • at least the guide slot and the control slot offset in both side walls of the control blade in the direction of the warp against each other such that a deflection of the running warp in the control blade smaller than 90 ° preferably 10 °.
  • the warp thread tensioning device has an individual thread tensioner for each warp thread on the inlet side of the warp threads for the shed forming device.
  • the tension of the individual warp thread can be adapted more subtly to the respective position of the warp thread in the shed.
  • the loom may have the usual additional thread monitor. It is more advantageous, however, if the thread tensioner according to claim 11 is also designed as a warp thread monitor at the same time.
  • each warp thread is guided over two guide elements arranged at a distance from one another, between which the thread tensioner acting on the warp thread is arranged, which exerts a pretension on the warp thread.
  • the bias voltage can be generated by a tension weight. More advantageous is the embodiment of claim 14, wherein the bias voltage is generated by a tension spring. This also makes it possible in particular to arrange the thread tensioner in a position deviating from the vertical position.
  • each thread tensioner can be provided with a closed eyelet. More advantageously, however, the embodiment of claim 15, wherein each thread tensioner has a lateral Einfahrbaum for the warp thread.
  • each thread tensioner is provided with a guide opening, by means of which it is displaceably mounted on a holder in the clamping direction.
  • the thread tensioner is provided in the direction opposite to the biasing direction with a handle part, which preferably has a projecting from the direction of displacement signal part.
  • a signal part may be, for example, a protruding head part of the thread tensioner.
  • the thread tensioner according to claim 17 is arranged on a holder which has a central one-sided projecting contact part, which is embedded in lateral, cooperating with the sides of the guide opening of the thread tensioner contact parts. With a faulty warp tension, the contact parts come into contact with an end face of the guide opening, which bridges the contacts and thus triggers an error signal.
  • the thread tensioner can be used in a variety of weaving machines. However, it is preferably in a loom according to claim 18 in use, in which the warp tensioning device has a control device which is connected to the drive of a fabric take-off in such a way to control the warp beam so that the warp threads are overall under a predeterminable clamping force.
  • the retention force can be generated by a braking device on the warp let-off. More advantageous, however, is an embodiment according to claim 19, according to which the warp beam is provided with its own drive for generating the restraining force, which contains a self-locking gear.
  • the warp tensioning device can be further improved by the embodiment according to claim 20, according to which it has a stretcher for the warp threads pretensioned by means of a tension spring device.
  • the tensioning spring device is connected to the control device, so that the drives of the warp beam and the fabric take-off are controllable in such a way that the predeterminable tensioning force is maintained at the coating beam.
  • the tension spring device comprises a leaf spring with a bending transducer which supplies corresponding control signals to the control device.
  • the warp tensioning device may be configured according to claim 22 with a safety device which is operatively connected to the coating tree and includes an emergency switch, which responds when the force of the warp threads occurring in the bowing tree is larger by a determinable amount of security than the set clamping force.
  • the FIG. 1 schematically shows a weaving machine, which generally has a Kettablass 2, which is formed for example as a warp beam, from the warp threads 4 via a stringing tree 6, individual thread tensioner 8 and Kettfadenwumbleter 10 to the shedding device 12.
  • the warp threads 4 are opened to a shed 14, in which then a weft thread 16 can be introduced, which is struck at the stop edge 18, so that a web 20 is formed.
  • the material web 20 held by a goods holder 22 is pulled off via a cloth take-off 24.
  • a control device 26 serves to control the weaving machine.
  • the loom is provided with a thread tensioning device, which primarily includes the fabric take-off 24, the drive 28 is controlled by the control device 26 so that depending on the restraining force of Kettablasses 2 is given a common prestressing force for all 4 warp threads.
  • the restraining force of the Kettablasses can be generated by a braking device 29 or a separate drive in which a motor is connected via a self-locking gear with the Kettablass.
  • the warp tensioning device additionally contains, for each warp thread 4, an individual warp tensioner 8 which is arranged between two guide elements 30 and in the example shown by means of a biasing spring 32 individually biases the warp thread 4 running through an eyelet 34.
  • the warp threads 4 between a guide roller 36 and a goods holder 22, which may also be formed as a spreader can, biased in a first specialist position F 1 .
  • the driver 40 has, which are movable by means of a lifting beam 42 from a switching position F 2 in the second shed position F 3 .
  • the warp threads 4 can be selectively brought into engagement with the drivers 40 when the warp threads have been moved by means of a common second lifting device 48 from the first shed position F 1 in the switching position F 2 , as in the FIGS. 1 to 8 can be seen in detail.
  • the control means 46 include control fins 50, which are biased by a biasing spring 52 against a lifting beam 54, where they are present via a stop 56.
  • the actuators 44 include hook portions 58 which cooperate with hook portions 60 on the control fins 50 and hold the control blade 50 in the raised position in the activated state.
  • a non-activated actuator 44 releases the displacement of the control blade 50.
  • each control plate 50 is symbolized by their switching path, as based on the FIGS. 2 to 8 is shown in detail.
  • the control lamellae contain a driver slot 62, which lies in the displacement path of the warp thread 2. At the drive slot closes up to a control slot 64, which leads out the warp thread from the displacement of the driver in an extended guide slot 66 so that it can no longer be detected by the driver 40.
  • the control blade is sleeve-shaped and has side walls 68, 70, which are connected by end walls 72, 74 and thus create a cavity in which the driver 40 is slidably mounted.
  • the cam slits 62a and 62b are arranged offset in the side walls 68, 70 in the direction of the thread that the warp thread is inclined at an angle ⁇ from the vertical to the control blade when passing through the control blade, which is smaller than 90 °, preferably 40 ° is to keep the volume resistance of the warp thread through the control blade and thus the wear of the warp thread on the one hand and the control blade on the other hand as small as possible.
  • the function of the shedding device is based on the FIG. 1 in conjunction with the FIGS. 2 to 8 shown in more detail.
  • the warp thread is guided by means of the second lifting device 40 from the guide slot 66 via an inclined casserole side 76 in the control slot 64 and the latter in the cam slot 62, in which the warp thread is in the displacement path of the driver 40.
  • the warp thread 4 is taken by the hook 40a of the driver 40 from the switch position F 2 to the second shed position F 3 , which is the lower shed position.
  • the warp thread 4 is moved only between the switching position F 2 and the lower shed position F 3 by the height H1 back and forth, as from the Figures 2 and FIGS. 4 to 6 can be seen.
  • the warp then comes back, like from the FIGS. 7 and 8 can be seen in the displacement of the second lifting device 48 and is about the height H2 from the switching position in the first compartment position F 1 , which is the high-skilled position moves.
  • the FIG. 9 shows a loom with special training of the warp tensioning device and the thread tensioner, for example, a shedding device according to the loom of FIG. 1 can have.
  • the weaving machine includes a warp beam 2a, are guided by the warp threads 4 via a coating tree 6a to individual thread tensioners 8a, which are arranged in front of a shedding device 12a.
  • the shedding device 12a can analogous to the shedding device 12 of the loom of FIG. 1 be configured, but also have other training.
  • the produced web 20 is about a fabric withdrawal Drawn off 24a and wound on a cloth beam 80.
  • the weaving machine includes a control device 26a, which is designed in particular for controlling the warp thread tensioning device.
  • the warp beam 2a is actuated by a drive 82 which has a self-locking gear 84.
  • the drive is controlled by the control device 26a in response to the drive 28a of the fabric take-off 24a and a tension spring device 86, with which the coating beam 6a is present against the warp threads 4.
  • the control is such that the fabric take-off 24a is adjusted in dependence on the restraining force of the drive 82 of the warp beam 2a so that a predetermined clamping force can be maintained at the coating beam 6a.
  • the warp beam 6a is attached to a rocker 88, which is supported by a support device 90 on a leaf spring 92, which is provided with a bending transducer 94, which passes its data to the control device 26a.
  • the support device 90 includes a safety device 96 which includes a threaded bolt 98 whose head 100 is slidably disposed within a support bell 102.
  • the holding bell 102 is connected to the rocker 88.
  • the head 100 is supported on a stop 104 of the holding bell.
  • biasing spring 106 is supported on one side via an adjusting screw 108 on the screw 98 and on the other hand via a disc 110 on the holding bell 102, so that the head 100 abuts with a corresponding biasing force on the stop 104 of the holding bell 102.
  • the bolt 98 is further connected to the leaf spring 92. Now occurs at the coating tree 6a on a clamping force that is greater than the set on the leaf spring 92 as permitted clamping force, the biasing spring 106 is compressed and the holding bell 102 moves on the screw 98, whereby a connected to the holding bell 102 switch 112 is closed and outputs an error signal to the control device 26a.
  • FIGS. 10 and 11 show in detail the formation of the thread tensioner 8a, which are also configured as a thread monitor at the same time.
  • the thread tensioner 8a are formed as slats and each have a guide opening 114, by means of which they are displaceably mounted on a holder 116 in the clamping direction.
  • the holders have a central, one-sided projecting contact portion 118 which is embedded in isolation in lateral contact portions 120. The latter are associated with the sides of the guide opening.
  • the thread tensioners 8a are displaced by means of the pretensioning spring 32a until the contact parts 118, 120 of the holder 116 stop at an end face 124 of the guide opening 114 and trigger an error message.
  • the thread tensioners each lie between two guide elements 30a for the warp thread 4, which is attached via retraction eyelets 34a to the thread tensioners 8a.
  • the thread tensioners On the side facing away from the biasing spring 32a, the thread tensioners each contain a handle portion 126 with a signal portion 128 projecting from the displacement plane of the thread tensioner, so that such thread tensioner can be seen, indicating a broken warp and therefore no longer in the flight of the remaining signal parts 128 lie.
  • the signal part 128 is formed by a protruding from the displacement plane headboard.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Looms (AREA)
  • Woven Fabrics (AREA)

Claims (22)

  1. Métier avec un dispositif de tension des fils de chaîne et avec un dispositif de formation de la foule (12, 12a), qui présente des fils de chaîne précontraints (4) dans une première position de foule (F1), avec en outre un dispositif de levée (38) pouvant être entraîné de manière oscillante avec des entraîneurs (40) pour les fils de chaîne (4), ainsi que des moyens de commande (46) pouvant être actionnés au moyen d'actionneurs (44), pour amener les fils de chaîne (4) sélectivement en prise avec les entraîneurs (40), qui déplacent les fils de chaîne (4) dans une deuxième position de foule (F3),
    caractérisé en ce qu'
    il comprend un deuxième dispositif de levée (48) commun pour tous les fils de chaîne (4), afin de déplacer les fils de chaîne (4) de la première position de foule (F1) à une position de commutation (F2) active pour le premier dispositif de levée (38) et pour déplacer des fils de chaîne non sélectionnés en commun dans la première position de foule (F1) par la précontrainte des fils de chaîne (4).
  2. Métier selon la revendication 1,
    caractérisé en ce que
    le deuxième dispositif de levée (48) est formé par une poutre de levée s'étendant sur tous les fils de chaîne (4).
  3. Métier selon la revendication 1 ou 2,
    caractérisé en ce que
    le deuxième dispositif de levée (48) accomplit au moins la moitié (H2) de la course de levée des fils de chaîne dans le pas de chaîne.
  4. Métier selon l'une quelconque des revendications 1 à 3,
    caractérisé en ce que
    le premier dispositif de levée (38) présente pour chaque fil de chaîne une lamelle de commande (50) avec une fente d'entraînement (62, 62a, 62b) ainsi qu'un entraîneur associé (40, 40a) de préférence en forme de crochet, pour le fil de chaîne (4) correspondant, dans lequel le fil de chaîne peut être amené sélectivement en prise avec l'entraîneur (40, 40a) au moyen de la lamelle de commande (50) commutable par l'actionneur (44).
  5. Métier selon la revendication 4,
    caractérisé en ce que
    la fente d'entraînement (62, 62a, 62b) est associée à la trajectoire de déplacement de l'entraîneur (40, 40a) et conduit, dans la région de commutation, hors de la trajectoire de déplacement de l'entraîneur (40, 40a) dans une fente de guidage élargie (66) de la lamelle de commande, au moyen d'une fente de commande (64) orientée en oblique par rapport à la trajectoire de déplacement de l'entraîneur.
  6. Métier selon la revendication 5,
    caractérisé en ce que
    la fente de guidage (66) présente une face montante (76) dirigée vers la fente de commande (64).
  7. Métier selon l'une quelconque des revendications 4 à 6,
    caractérisé en ce que
    la lamelle de commande (50) est en forme de douille avec deux parois latérales (68, 70), et l'entraîneur (40, 40a) est monté de façon mobile entre les parois latérales (68, 70).
  8. Métier selon la revendication 7,
    caractérisé en ce qu'
    au moins la fente d'entraînement (62a, 62b) et la fente de commande (64) sont formées dans les deux faces latérales (68, 70), et les fentes d'entraînement (62a, 62b) et les fentes de commande (64) des parois latérales (68, 70) sont décalées l'une par rapport à l'autre dans le sens de défilement du fil de chaîne (4), de sorte qu'une déviation α du fil de chaîne en défilement soit inférieure à 90°, de préférence 10°, dans la lamelle de commande (50).
  9. Métier selon l'une quelconque des revendications 4 à 8,
    caractérisé en ce que
    tous les entraîneurs (40) d'une rangée sont déplaçables vers le haut et vers le bas au moyen d'une poutre de levée commune (42).
  10. Métier selon l'une quelconque des revendications 1 à 9,
    caractérisé en ce que
    le dispositif de tension des fils de chaîne comprend un tendeur de fil individuel (8, 8a) pour chaque fil de chaîne (4) sur le côté d'entrée des fils de chaîne (4) vers le dispositif de formation de la foule (12, 12a).
  11. Métier selon la revendication 10,
    caractérisé en ce que
    le tendeur de fil (8a) est un contrôleur de fil de chaîne.
  12. Métier selon la revendication 10 ou 11,
    caractérisé en ce que
    chaque fil de chaîne (4) est guidé sur deux éléments de guidage (30, 30a) écartés l'un de l'autre, et entre lesquels le tendeur de fil (8, 8a) agissant sur le fil de chaîne exerce une précontrainte sur le fil de chaîne.
  13. Métier selon la revendication 12,
    caractérisé en ce que
    la précontrainte est produite par un poids de tension.
  14. Métier selon la revendication 12,
    caractérisé en ce que
    la précontrainte est produite par un ressort de tension (32, 32a).
  15. Métier selon l'une quelconque des revendications 10 à 14,
    caractérisé en ce que
    chaque tendeur de fil (8a) comporte un oeillet d'entrée latéral (34a) pour le fil de chaîne (4).
  16. Métier selon l'une quelconque des revendications 10 à 15,
    caractérisé en ce que
    chaque tendeur de fil (8a) présente une ouverture de guidage (114), au moyen de laquelle il est monté de façon coulissante dans la direction de tension sur un support (116), et le tendeur de fil présente, dans la direction opposée à la direction de précontrainte, une poignée (126) qui est de préférence pourvue d'une partie de signalisation (128) saillante dans la direction de déplacement.
  17. Métier selon la revendication 16,
    caractérisé en ce que
    le support (116) présente une partie de contact centrale (118), saillante d'un côté, qui est noyée de manière isolée dans des parties de contact latérales (120) coopérant avec les côtés de l'ouverture de guidage (114) du tendeur de fil, et les parties de contact (118, 120) peuvent être pontées au moyen d'une face frontale (124) de l'ouverture de guidage (114) en vue d'émettre un message de défaut en cas de tension défectueuse des fils de chaîne.
  18. Métier selon l'une quelconque des revendications 1 à 17,
    caractérisé en ce que
    le dispositif de tension des fils de chaîne comporte un dispositif de commande (26, 26a), qui est relié à l'entraînement (28, 28a) de l'extraction de tissu (24, 24a), afin de commander l'entraînement (28, 28a) de l'extraction de tissu (24, 24a) en fonction de la force de retenue d'une ensouple (2, 2a), de telle manière que les fils de chaîne soient globalement soumis à une force de tension prédéterminable.
  19. Métier selon la revendication 18,
    caractérisé en ce que
    l'ensouple (2a) présente un entraînement propre (82) pourvu d'une transmission autobloquante (84) pour produire la force de retenue.
  20. Métier selon la revendication 18 ou 19,
    caractérisé en ce que
    le dispositif de tension des fils de chaîne comporte un porte-fils (6a) pour les fils de chaîne (4), précontraint au moyen d'un dispositif à ressort de tension (86), et le dispositif à ressort de tension (86) est relié au dispositif de commande (26a) pour commander les entraînements (82, 82a) de l'ensouple (2a) et de l'extraction de tissu (24a) de manière que la force de tension prédéterminable puisse être respectée sur le porte-fils (6a).
  21. Métier selon la revendication 20,
    caractérisé en ce que
    le dispositif à ressort de tension (86) comprend un ressort à lame (92) avec un convertisseur de flexion (94) relié au dispositif de commande (26a).
  22. Métier selon la revendication 20 ou 21,
    caractérisé en ce que
    le dispositif à ressort de tension (86) est relié au porte-fils (6a) au moyen d'un dispositif de sécurité (96), comprenant un interrupteur d'urgence (112), qui réagit lorsque la force des fils de chaîne (4) apparaissant sur le porte-fils (6a) dépasse d'une valeur de sécurité déterminable la force de tension réglée.
EP04735865A 2003-06-12 2004-06-03 Metier Expired - Lifetime EP1631712B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CH10272003 2003-06-12
PCT/CH2004/000337 WO2004111321A1 (fr) 2003-06-12 2004-06-03 Metier

Publications (2)

Publication Number Publication Date
EP1631712A1 EP1631712A1 (fr) 2006-03-08
EP1631712B1 true EP1631712B1 (fr) 2008-03-19

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP04735865A Expired - Lifetime EP1631712B1 (fr) 2003-06-12 2004-06-03 Metier

Country Status (12)

Country Link
US (1) US7320343B2 (fr)
EP (1) EP1631712B1 (fr)
JP (1) JP4276676B2 (fr)
KR (1) KR100760441B1 (fr)
CN (1) CN1806072B (fr)
AT (1) ATE389740T1 (fr)
BR (1) BRPI0411345A (fr)
DE (1) DE502004006588D1 (fr)
ES (1) ES2299836T3 (fr)
HK (1) HK1089487A1 (fr)
TW (1) TWI303679B (fr)
WO (1) WO2004111321A1 (fr)

Cited By (1)

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Publication number Priority date Publication date Assignee Title
CN102936791A (zh) * 2011-08-16 2013-02-20 苏州华龙针织品有限公司 一种控制张力机构

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TWI303679B (en) * 2003-06-12 2008-12-01 Textilma Ag Loom
CN1886540B (zh) * 2003-11-28 2011-01-12 泰克斯蒂尔玛股份公司 用于织机、特别是用于开口装置的纱线控制装置
GB2432595B (en) * 2005-11-24 2010-09-29 John Rush Direct warp selection device
DE502007004972D1 (de) * 2007-03-27 2010-10-14 Textilma Ag Vorrichtung zur steuerung der querbewegung der kettfäden einer textilwebmaschine
KR100976929B1 (ko) 2008-04-16 2010-08-18 소진수 실공급방법, 경사공급방법, 실공급장치 및 직조방법
CN101392427B (zh) * 2008-11-05 2010-12-08 东华大学 一种三维织机张力控制系统
BE1021506B1 (nl) * 2012-11-19 2015-12-03 Nv Michel Van De Wiele Module geschikt voor inbouw in een jaquardmachine
CN103382615B (zh) * 2013-06-27 2014-12-24 浙江理工大学 一种伺服驱动式活动后梁机构
US9109308B2 (en) 2013-11-12 2015-08-18 Sheila A. Wright Loom and method for creating an article
BE1021951B1 (nl) * 2014-07-18 2016-01-28 Michel Van De Wiele Nv Gaapvormingsinrichting voor een weefmachine
US10415161B2 (en) * 2014-12-10 2019-09-17 Uchino Co., Ltd. Method for weaving multiply gauze, and multiply gauze woven fabric
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TWI303679B (en) 2008-12-01
CN1806072B (zh) 2010-11-10
EP1631712A1 (fr) 2006-03-08
ES2299836T3 (es) 2008-06-01
US20060169345A1 (en) 2006-08-03
JP4276676B2 (ja) 2009-06-10
BRPI0411345A (pt) 2006-07-11
ATE389740T1 (de) 2008-04-15
WO2004111321A1 (fr) 2004-12-23
HK1089487A1 (en) 2006-12-01
CN1806072A (zh) 2006-07-19
JP2006527312A (ja) 2006-11-30
TW200510588A (en) 2005-03-16
KR100760441B1 (ko) 2007-10-04
KR20060018251A (ko) 2006-02-28
DE502004006588D1 (de) 2008-04-30
US7320343B2 (en) 2008-01-22

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