EP0838422B1 - Dispositif pour enrouler un fil sur une bobine - Google Patents

Dispositif pour enrouler un fil sur une bobine Download PDF

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Publication number
EP0838422B1
EP0838422B1 EP96117256A EP96117256A EP0838422B1 EP 0838422 B1 EP0838422 B1 EP 0838422B1 EP 96117256 A EP96117256 A EP 96117256A EP 96117256 A EP96117256 A EP 96117256A EP 0838422 B1 EP0838422 B1 EP 0838422B1
Authority
EP
European Patent Office
Prior art keywords
carrier
yarn guide
yarn
energy storage
motion
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
EP96117256A
Other languages
German (de)
English (en)
Other versions
EP0838422A1 (fr
Inventor
Lukas Kunz
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SSM Schaerer Schweiter Mettler AG
Original Assignee
SSM Schaerer Schweiter Mettler AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by SSM Schaerer Schweiter Mettler AG filed Critical SSM Schaerer Schweiter Mettler AG
Priority to EP96117256A priority Critical patent/EP0838422B1/fr
Priority to DE59609889T priority patent/DE59609889D1/de
Priority to US08/957,946 priority patent/US5908170A/en
Priority to TW086115851A priority patent/TW455563B/zh
Priority to KR1019970055153A priority patent/KR19980033186A/ko
Priority to JP29580497A priority patent/JP3997364B2/ja
Publication of EP0838422A1 publication Critical patent/EP0838422A1/fr
Application granted granted Critical
Publication of EP0838422B1 publication Critical patent/EP0838422B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00Winding, coiling, or depositing filamentary material
    • B65H54/02Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/28Traversing devices; Package-shaping arrangements
    • B65H54/2827Traversing devices with a pivotally mounted guide arm
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00Winding, coiling, or depositing filamentary material
    • B65H54/02Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/28Traversing devices; Package-shaping arrangements
    • B65H54/32Traversing devices; Package-shaping arrangements with thread guides reciprocating or oscillating with variable stroke
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00Winding, coiling, or depositing filamentary material
    • B65H54/02Winding and traversing material on to reels, bobbins, tubes, or like package cores or formers
    • B65H54/38Arrangements for preventing ribbon winding ; Arrangements for preventing irregular edge forming, e.g. edge raising or yarn falling from the edge
    • B65H54/385Preventing edge raising, e.g. creeping arrangements
    • B65H54/386Preventing edge raising, e.g. creeping arrangements with energy storing means for recovering the kinetic energy at the end of the traversing stroke
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2557/00Means for control not provided for in groups B65H2551/00 - B65H2555/00
    • B65H2557/60Details of processes or procedures
    • B65H2557/61Details of processes or procedures for calibrating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/30Handled filamentary material
    • B65H2701/31Textiles threads or artificial strands of filaments

Definitions

  • the present invention relates to a device for winding a thread a bobbin with an oscillating drivable thread guide and with energy storage to influence the deceleration and acceleration of the thread guide when reversing its movement.
  • Energy stores come with those driven back and forth parallel to the coil axis Thread guides for use. They are designed as spring-damper systems, the Spring is stretched and relaxed practically in each case over a stroke length, whereby the speed of the thread guides is limited. They are also Energy storage arranged stationary, so that every change in the stroke of the thread guide a corresponding adjustment of the position of the energy store requires.
  • the invention is now to provide a winding device that is high Accelerations of the thread guide allowed at the reversal points and with regard to the Structure of the winding offers as much freedom as possible.
  • the thread guide and its drive be inexpensive and as trouble-free as possible enable.
  • the thread guide is finger-like and is mounted on an axis oriented perpendicular to the coil axis that the Energy storage devices are designed to influence deceleration and acceleration the thread guide only in a short area of its movement around the turning point takes place, and that the position of the energy store is adjustable.
  • the finger-shaped thread guide is inexpensive on the one hand and very simple and on the other hand Adaptable to changed coil parameters without effort.
  • the short area of influence the deceleration and acceleration of the thread guide leads to a marked increase of its speed and the adjustability of the position of the energy store enables changes in the stroke of the thread guide without major mechanical intervention.
  • DE-B-1 131 575 describes a winding device with a finger-shaped thread guide known, which is driven by a traversing rod via a diamond-shaped double lever is, the double lever at the reversal points of the traversing movement against stop blocks pushes and is thereby pivoted relative to its normal position.
  • the provision of the double lever in its normal position takes place via springs acting on the double lever.
  • a second preferred embodiment of the winding device according to the invention is characterized in that the energy store on an oscillating around said axis drivable carrier are attached.
  • the position of the energy store is adjusted by changing the amplitude of the Movement of the wearer.
  • the area of influence can be influenced by attaching the energy store to the carrier the deceleration and acceleration of the thread guide are precisely and easily set become.
  • the possibility of adjusting the position of the energy storage by a simple one Intervention in the movement geometry of the wearer increases the flexibility of the device very extraordinary.
  • the winding unit shown in the figures consists essentially of a motor drivable spindle 1 for receiving a coil sleeve 2, on which a coil 3, for example a cheese, is wound up, and from a device 4 for laying a thread F which is drawn off from a supply spool, not shown.
  • Spindle 1, coil sleeve 2 and coil 3 are not shown in Fig. 2 and by a dash-dotted line S symbolizing the axis of the coil 3 is indicated.
  • the coil 3 lies along a surface line on a freely rotatable roller 5, which is on a suitable Carrier part of the winding machine is mounted.
  • Thread laying 4 which is used to manufacture the most important element is a finger or pointer-shaped thread guide 6 on a shaft driven by a motor 7 8 is mounted.
  • the shaft 8 is perpendicular to the coil axis S and perpendicular to the plane of the drawing oriented so that the thread guide 6 oscillates during operation of the winding unit Movement in the plane perpendicular to the shaft 8 is carried out.
  • the thread guide 6 is provided at a free end with a longitudinal slot 9 in which the thread F is guided.
  • Guide rail 10 is arranged, which is partially wrapped by the thread F.
  • the string F runs from the supply spool, not shown, to the guide rail as shown 10 and from this through the longitudinal slot 9 of the thread guide 6 to the roller 5.
  • the mutual Location of thread guide 6 and guide rail 10 and the length of the longitudinal slot 9 are selected so that the thread F during the movement of the thread guide 6
  • the bottom of the longitudinal slot 9 does not touch. This ensures that the thread course from the guide rail 10 to the coil 3 always the same, because of the roller 5 also has geometry independent of the diameter of the coil 3.
  • the thread guide 6 is by a finger or pointer-like attached to a hub 11 Organ formed.
  • the hub 11 is fixed on the shaft 8 of the motor 7.
  • the motor 7 becomes the thread guide 6 in one or the other Panned towards.
  • the maximum stroke of this swiveling movement is shown in FIG designated by the reference symbol H.
  • the thread F is at the pivoting movement of the thread guide 6 always moves parallel to the bobbin axis S, and the so-called drag length, that is the thread length from thread guide 6 to Coil 3 is always the same size.
  • the inertia of the motor 7 is so out of the inertia Hub 11, thread guide 6 and thread F formed load matched that an ideal efficiency results.
  • the motor 7 is a first sensor 12 for detecting the rotational position of the hub 11 and thus assigned to the stroke position of the thread guide 6.
  • the first sensor 12 is on a transmitting and a receiving diode (not shown) existing photoelectric Sensor which detects the rotational movement of a disk rigidly connected to the hub 11 (not shown) scans. For this purpose, the disk can be scanned with suitable optics Markings, for example with holes arranged along an arc or slots.
  • the sensor signal is fed to a controller 13 which checks whether the thread guide 6 is at its desired position at a specific point in time located. In the event of deviations between the actual value and the target value, control stage 13 indicates the engine 7 a corresponding control signal.
  • the number of marks on the The disc and its dimension are chosen so that there is enough per stroke of the thread guide 6 positions of the thread guide 6 that can be checked by the first sensor 12, to produce a clean, closed precision winding.
  • the first sensor 12 always relates its monitoring to an initial position of the Thread guide 6, preferably to the zero point of its pivoting movement.
  • the Adjustment of the sensor 12 takes place in that the thread guide 6 first on one and then brought to the other reversal point, the first sensor 12 the number of markings corresponding to this stroke and from this the zero point calculated.
  • the sensor 12 thus knows the number of scanning pulses between the Zero point and the reversal points, so that at any time the position of the thread guide 6 corresponding to a certain scanning pulse is determined can be.
  • the latter enables extremely precise control of the motor 7, its Performance can be optimally used.
  • Another task of the controller 13 is the laying speed, which is in itself sinusoidal to linearize the thread.
  • sinusoidal means that the thread runs faster in the middle of the lifting movement than at the reversal points. This difference is compensated for by the controller 13 by this linear setpoints of the position of the thread guide 6 are offset with a sine function.
  • the energy stores are elastic or resilient mounted on a carrier 14
  • Storage elements 15 in the manner of air buffers, magnetic buffers, spring-loaded buffer plates or other suitable storage media.
  • the thread guide 6 points in the level of the memory elements 15 a rib-like projection 16, which at the time the beginning of the delay hits the memory element 15 and tensions it.
  • the storage element relaxes in the acceleration phase after the reversal point 15 and accelerates the thread guide 6.
  • the drive of the thread guide 6 can be set in this way be that the respective storage element 15 time of the start of the delay is positioned at the reversal point. Because at this time the engine 7 too starts braking, two braking torques are effective, that of the energy storage and that of the engine 7. The reverse also applies to the acceleration section.
  • the length of the distance over which the energy storage device is charged depends on the reversing stroke which in turn determines the quality of the spool.
  • the thread is on every point of the coil for the same length of time and no longer at the coil ends should remain, otherwise there will be marginal zones that become too dense. In practice is the length of the distance of the charge of the energy storage about 1 mm.
  • the carrier 14 of the storage elements 15 has approximately that Shape of a Y on. However, this should not be understood as restrictive. Rather is the shape of the carrier 14 can be selected within wide limits and can, for example, also be round or be fork-shaped.
  • the size of the stroke of this oscillating movement of the carrier 14 can Drive 17 or on the connecting element 18 with suitable means, for example with a stepper motor or with any linear or round drive become. If these adjustment means are electrical or magnetic and reproducible, Any lifting profile can be specified for the winding process.
  • the stroke of the pivoting movement of the carrier 14 defines the stroke of the thread guide 6, the carrier 14 executing a much shorter stroke movement and therefore also is driven much more slowly than the thread guide 6.
  • the distance between the storage elements 15 is chosen to be so large that the projection 16 of the thread guide 6 exactly at the time of the start of the deceleration meets the storage elements 15. In this case, the carrier 14 could be at rest remain.
  • the carrier 14 would have to with the mentioned distance between the storage elements 15 each slightly pivoted outside, and if the stroke of the thread guide 6 should be shorter, then this carrier 14 would each have to be pivoted somewhat inwards.
  • the stroke of the carrier 14 is therefore always very short compared to the stroke of the thread guide 6 Distance from the rest position shown in Fig. 2 to the end position at the stop the rib 16.
  • a second sensor 19 is used to monitor and control the movement of the carrier 14 provided, which is connected to the controller 13 like the first sensor 12.
  • the second sensor 19 is suitable for sensing the rotational movement of the carrier 14 Position sensor, for example a photoelectric sensor.
  • the carrier 14 is to this Purpose with suitable optically scannable markings, for example with holes or slots.
  • the sensor signal is fed to the controller 13, which checks whether the carrier 14 is at its current position at a certain point in time. In the event of a deviation between the actual value and the target value, the control stage 13 outputs a corresponding one to the drive motor 18 Signal off, so that the drive of the carrier 14 is delayed or accelerated. Since the signals from both the first and second sensors 12 and 19 are supplied to the control stage 13, a cross comparison is also carried out in this between the two sensor signals. This can cause any deviations in the Synchronism between the pivoting movements of the thread guide 6 on the one hand and the carrier 14 of the storage elements 15 on the other hand, and the two motors 7 and 18 can be adjusted accordingly.
  • the thread laying 4 described has the advantage that a high winding speed and achieved a high acceleration of the thread guide 6 in the reversal points becomes.
  • By in the deceleration and in the acceleration phase in the area of Energy storage 15 acting reversal points can be relatively much in the delay Energy is recovered and then used for acceleration, which results in low energy consumption.
  • the adjustability of the energy store 15 enables the stroke to be changed easily of the thread guide 6 and the arrangement of the energy storage 15 on the oscillating Carrier 14 allows a change in the stroke of the thread guide 6 by a merely changing the stroke of the carrier 14 and without mechanical adjustment of the position the energy store 15.
  • With the adjustability of the stroke of the oscillating movement of the carrier 14 with electrical or magnetic and reproducible means This opens up the possibility of producing coils with any winding structure.

Claims (12)

  1. Dispositif pour enrouler un fil (F) sur une bobine (3), comportant un guide-fil (6) pouvant être entraíné en un mouvement oscillant et comportant des accumulateurs (15) d'énergie pour influer sur la décélération et l'accélération du guide-fil (6) lors de l'inversion de son mouvement, caractérisé en ce que le guide-fil (6) est réalisé en forme de doigt et est monté sur un axe (8) orienté perpendiculairement à l'axe (S) de la bobine, en ce que les accumulateurs (15) d'énergie sont conçus de telle sorte que l'action sur la décélération et l'accélération du guide-fil (6) ne s'effectue que dans une courte plage de son mouvement autour du point d'inversion, et en ce que la position des accumulateurs (15) d'énergie est réglable.
  2. Dispositif suivant la revendication 1, caractérisé en ce que l'énergie cinétique du guide-fil (6) est transformée en énergie potentielle depuis le début de la décélération du guide-fil (6) jusqu'au point d'inversion, et cette énergie potentielle est restituée au guide-fil (6) à l'atteinte du point d'inversion.
  3. Dispositif suivant la revendication 2, caractérisé en ce que les accumulateurs (15) d'énergie sont fixés sur un élément (14) porteur pouvant être entraíné en un mouvement oscillant autour dudit axe (8).
  4. Dispositif suivant la revendication 3, caractérisé en ce que le réglage de la position des accumulateurs (15) d'énergie s'effectue en modifiant l'amplitude du mouvement de l'élément (14) porteur.
  5. Dispositif suivant la revendication 4, caractérisé en ce que les accumulateurs (15) d'énergie sont formés par des organes d'accumulation élastiques ou à ressort et sont disposés à distance mutuelle sur l'élément (14) porteur, et en ce que la course de l'élément (14) porteur correspond à la différence entre la course du guide-fil (6) et la position des accumulateurs (15) d'énergie dans la position de repos de l'élément (14) porteur, l'élément (14) porteur étant entraíné dans le même sens que le guide-fil (6) si cette différence a une valeur positive, et en sens contraire si la valeur est négative.
  6. Dispositif suivant l'une des revendications 1 à 5, caractérisé en ce que le guide-fil (6) présente à son extrémité libre une fente (9) oblongue, orientée perpendiculairement à l'axe (S) de la bobine, fente dans laquelle le fil (F) est guidé.
  7. Dispositif suivant la revendication 6, caractérisé en ce qu'un rail (10) de guidage pour le fil (F) est disposé avant le guide-fil (6) dans la direction d'avancement du fil (F), et en ce que la géométrie de la fente (9) et la disposition du rail (10) de guidage sont mutuellement adaptées de telle sorte que la longueur entraínée du fil (F) est constante.
  8. Dispositif suivant l'une des revendications 1 à 5, caractérisé par un premier capteur (12) associé au guide-fil (6) pour surveiller la course de déplacement de ce dernier, et par une unité (13) de commande reliée au premier capteur (12) pour corriger des écarts entre le profil de vitesse effectif et un profil de vitesse prescrit du guide-fil (6).
  9. Dispositif suivant la revendication 8, caractérisé en ce qu'une linéarisation de la vitesse d'enroulement sinusoïdale du fil (F) s'effectue dans l'unité (13) de commande.
  10. Dispositif suivant la revendication 8, caractérisé par un deuxième capteur (19) associé à l'élément (14) porteur des accumulateurs (15) d'énergie pour surveiller le mouvement oscillant de cet élément, capteur qui est raccordé à l'unité (13) de commande dans laquelle s'effectue une correction des écarts entre le profil de vitesse effectif et un profil de vitesse prescrit de l'élément porteur.
  11. Dispositif suivant la revendication 10, caractérisé en ce que l'unité (13) de commande est en outre conçue pour surveiller et corriger le synchronisme entre le mouvement du guide-fil (6) et celui de l'élément (14) porteur.
  12. Dispositif suivant les revendications 8 et 10, caractérisé en ce que le premier capteur (12) et le deuxième capteur (19) sont conçus comme capteurs de position, qui détectent des repères apposés sur le guide-fil (6) et sur l'élément (14) porteur ou sur des organes accouplés à ceux-ci.
EP96117256A 1996-10-28 1996-10-28 Dispositif pour enrouler un fil sur une bobine Expired - Lifetime EP0838422B1 (fr)

Priority Applications (6)

Application Number Priority Date Filing Date Title
EP96117256A EP0838422B1 (fr) 1996-10-28 1996-10-28 Dispositif pour enrouler un fil sur une bobine
DE59609889T DE59609889D1 (de) 1996-10-28 1996-10-28 Vorrichtung zum Aufwickeln eines Fadens auf eine Spule
US08/957,946 US5908170A (en) 1996-10-28 1997-10-27 Device for winding a yarn onto a bobbin
TW086115851A TW455563B (en) 1996-10-28 1997-10-27 Device for winding a yarn onto a bobbin
KR1019970055153A KR19980033186A (ko) 1996-10-28 1997-10-27 실을 보빈에 감는 장치
JP29580497A JP3997364B2 (ja) 1996-10-28 1997-10-28 糸巻取り装置

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP96117256A EP0838422B1 (fr) 1996-10-28 1996-10-28 Dispositif pour enrouler un fil sur une bobine

Publications (2)

Publication Number Publication Date
EP0838422A1 EP0838422A1 (fr) 1998-04-29
EP0838422B1 true EP0838422B1 (fr) 2002-11-20

Family

ID=8223336

Family Applications (1)

Application Number Title Priority Date Filing Date
EP96117256A Expired - Lifetime EP0838422B1 (fr) 1996-10-28 1996-10-28 Dispositif pour enrouler un fil sur une bobine

Country Status (6)

Country Link
US (1) US5908170A (fr)
EP (1) EP0838422B1 (fr)
JP (1) JP3997364B2 (fr)
KR (1) KR19980033186A (fr)
DE (1) DE59609889D1 (fr)
TW (1) TW455563B (fr)

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DE102005001094A1 (de) * 2005-01-08 2006-07-20 Saurer Gmbh & Co. Kg Verfahren und Vorrichtung zum Betreiben einer Arbeitsstelle einer Kreuzspulen herstellenden Textilmaschine
EP1728748A1 (fr) 2005-06-04 2006-12-06 Saurer GmbH & Co. KG Dispositif de va-et-vient de fil pour un bobinoir d'une machine textile produisant des bobines croisées
DE102006057407A1 (de) * 2006-12-04 2008-06-05 Oerlikon Textile Gmbh & Co. Kg Fadenchangiervorrichtung für eine Spuleinrichtung einer Kreuzspulen herstellenden Textilmaschine

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EP1004532A1 (fr) * 1998-11-23 2000-05-31 Schärer Schweiter Mettler AG Accumulateur d'énergie pour un dispositif de bobinage d'un fil
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DE19960024A1 (de) * 1998-12-18 2000-06-21 Schlafhorst & Co W Fadenführer zum traversierenden Zuführen eines Fadens zu einer rotierend angetriebenen Auflaufspule
DE59906945D1 (de) * 1999-04-14 2003-10-16 Ssm Ag Vorrichtung zum Aufwickeln eines Fadens auf eine Spule
DE59908959D1 (de) 1999-07-17 2004-04-29 Ssm Ag Verfahren und Vorrichtung zum Aufwickeln eines Fadens auf eine Spule
DE50011986D1 (de) * 1999-10-19 2006-02-02 Rieter Ag Maschf Verfahren und vorrichtung zum aufwickeln eines fadens auf eine spule
DE19950285A1 (de) * 1999-10-19 2001-04-26 Rieter Ag Maschf Verfahren und Vorrichtung zum Aufwickeln eines Fadens auf eine Spule
US6182592B1 (en) * 1999-10-28 2001-02-06 Herbert F. Molz Docking apparatus
EP1277860B8 (fr) 2001-07-21 2008-02-13 SSM Schärer Schweiter Mettler AG Dispositif pour la fabrication de fils de fantaisie ainsi que l'utilisation du dispositif
US6848151B2 (en) * 2003-03-31 2005-02-01 Invista Norh America S.à.r.l Air-jet method for producing composite elastic yarns
DE10332399A1 (de) * 2003-07-17 2005-02-03 Saurer Gmbh & Co. Kg Energiespeicher für einen Fingerfadenführer einer Kreuzspulen herstellenden Textilmaschine
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JP2006298499A (ja) * 2005-04-15 2006-11-02 Murata Mach Ltd 糸のトラバース装置
FR2888226B1 (fr) 2005-07-11 2007-12-14 Rieter Textile Machinery Fr Dispositif de va-et-vient a bras oscillant
ITMI20061354A1 (it) 2006-07-12 2008-01-13 Savio Macchine Tessili Spa Dispositivo guadafilo ad alta frequenza per la produzione di rocche a zettatura modulata
ITMI20061353A1 (it) 2006-07-12 2008-01-13 Savio Macchine Tessili Spa Dispositivo per la guida del filo per la produzione di rocche con modulazione della zettatura
DE102008060788A1 (de) * 2008-02-04 2009-08-06 Oerlikon Textile Gmbh & Co. Kg Verfahren und Vorrichtung zum Wickeln einer Fadenspule
JP5368205B2 (ja) * 2009-07-24 2013-12-18 Tmtマシナリー株式会社 トラバース装置の制御装置
CN102188211B (zh) * 2010-03-10 2016-01-13 乐金电子(天津)电器有限公司 卷线器
CN104609253B (zh) * 2013-11-01 2019-04-16 舍弗勒技术股份两合公司 导纱器及纱线卷绕机
CN104328545B (zh) * 2014-11-09 2016-08-24 经纬纺织机械股份有限公司 转杯纺纱机导纱器装置
CN104891264B (zh) * 2015-04-16 2017-08-01 丝丝姆纺织机械(中山)有限公司 一种新型电子排纱机上导纱装置
CN107840193A (zh) * 2017-11-03 2018-03-27 盐城融凡纺织制衣有限公司 一种便于拆卸的纱线收卷装置

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DE102005001094A1 (de) * 2005-01-08 2006-07-20 Saurer Gmbh & Co. Kg Verfahren und Vorrichtung zum Betreiben einer Arbeitsstelle einer Kreuzspulen herstellenden Textilmaschine
EP1728748A1 (fr) 2005-06-04 2006-12-06 Saurer GmbH & Co. KG Dispositif de va-et-vient de fil pour un bobinoir d'une machine textile produisant des bobines croisées
DE102005025698A1 (de) * 2005-06-04 2006-12-07 Saurer Gmbh & Co. Kg Fadenchangiervorrichtung für eine Spuleinrichtung einer Kreuzspulen herstellenden Textilmaschine
DE102006057407A1 (de) * 2006-12-04 2008-06-05 Oerlikon Textile Gmbh & Co. Kg Fadenchangiervorrichtung für eine Spuleinrichtung einer Kreuzspulen herstellenden Textilmaschine

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EP0838422A1 (fr) 1998-04-29
JPH10129931A (ja) 1998-05-19
US5908170A (en) 1999-06-01
TW455563B (en) 2001-09-21
KR19980033186A (ko) 1998-07-25
DE59609889D1 (de) 2003-01-02
JP3997364B2 (ja) 2007-10-24

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