EP2076620B1 - Dispositif d'alimentation en fil - Google Patents

Dispositif d'alimentation en fil Download PDF

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Publication number
EP2076620B1
EP2076620B1 EP06818251.8A EP06818251A EP2076620B1 EP 2076620 B1 EP2076620 B1 EP 2076620B1 EP 06818251 A EP06818251 A EP 06818251A EP 2076620 B1 EP2076620 B1 EP 2076620B1
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EP
European Patent Office
Prior art keywords
housing
thread
thread feeder
feeder according
pulley
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP06818251.8A
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German (de)
English (en)
Other versions
EP2076620A1 (fr
Inventor
Markus Kleindorp
Richard Kaufmann
Michael Mixner
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.)
Memminger IRO GmbH
Original Assignee
Memminger IRO GmbH
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 Memminger IRO GmbH filed Critical Memminger IRO GmbH
Publication of EP2076620A1 publication Critical patent/EP2076620A1/fr
Application granted granted Critical
Publication of EP2076620B1 publication Critical patent/EP2076620B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B15/00Details of, or auxiliary devices incorporated in, weft knitting machines, restricted to machines of this kind
    • D04B15/38Devices for supplying, feeding, or guiding threads to needles
    • D04B15/48Thread-feeding devices
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B35/00Details of, or auxiliary devices incorporated in, knitting machines, not otherwise provided for
    • D04B35/10Indicating, warning, or safety devices, e.g. stop motions
    • D04B35/14Indicating, warning, or safety devices, e.g. stop motions responsive to thread breakage

Definitions

  • the invention relates to a yarn feeding device for textile machines, in particular knitting machines, such as circular knitting machines, flat knitting machines or others.
  • Such yarn feeding devices are usually used to control the individual knitting a knitting machine, such as a circular knitting machine to supply a thread.
  • Such yarn feeding devices are for example in the DE 199 32 481 A1 and the US 5,323,625 described.
  • the DE 199 32 481 A1 relates to a yarn feeding device with a housing, which itself has a fastening device.
  • the housing is provided with a parting line, wherein the housing parts are each provided with a bearing seat for a ball bearing for supporting a shaft.
  • alignment means are provided for the correct arrangement of the two housing parts.
  • the US 5,323,625 relates to a yarn feeding device provided with a yarn tension control.
  • the yarn feeding device has a carrier designed as a housing on, which is provided at one end with a mounting clamp for attachment of the yarn feeding device to the knitting machine. This is for this purpose provided with an annular support - a so-called machine ring - on which sit many mutually substantially identical yarn feeding devices extending radially away from him.
  • the carrier of the yarn feeding device has a lower arm and an upper arm, which define a gap between each other.
  • the lower and the upper arm each carry a ball bearing for supporting a vertical shaft which carries at its lower end below the lower arm a yarn feed wheel.
  • Pulleys for driving the shaft are provided both in the space between the two bearings and above the upper bearing. They can be coupled to the shaft via clutch discs. Circulating belts drive the pulleys, which ultimately causes the yarn feed wheel to rotate.
  • the housing switching elements On the support or housing yarn feeler lever are pivotally mounted, operate the arranged inside the housing switching elements. These serve to signal a yarn breakage by means of a signal lamp which is attached to the housing.
  • the signal lamp is arranged between the mounting clamp and the yarn feed wheel. If a viewer looks in the direction of the housing longitudinal direction on the yarn feeding device, he does not see the signal lamp. This line of sight is the natural line of vision, radial to the circular knitting machine for a viewer standing next to the knitting machine.
  • the yarn feeding device is subject to contamination.
  • filaments that are loosened from the entangled thread or the fabric are released to accumulate the air in knitwear with dust, which settles on all up-facing surfaces.
  • dust deposits lead in the long term to unpleasant phenomena to functional impairments or loss of function. It is to be remedied.
  • the DD-PS 207 940 discloses a yarn feeding device in the form of a belt conveyor. This has a cylindrical housing with a storage for a arranged below the housing Fadenunterrad. This is designed in the manner of a toothed disk over which the drive belt provided on the knitting machine runs to drive all yarn feeding devices. The thread is passed through thread guide elements between the drive belt and the toothed pulley, whereby it is conveyed.
  • yarn feeding wheels can be used, which are set up, for example, for slippage-promoting the thread.
  • Such yarn feed wheels are DE 10 219 537 A1 refer to.
  • the yarn speed of the speed of the yarn feed wheel is no longer proportional.
  • yarn feed wheels with active thread feed for example, according to DE 31 05 990 A1 come into use.
  • the drive of the yarn feed wheel is preferably carried out at a given speed, which is constant in stationary operation, for example.
  • the speed can be adjusted to the working speed of the knitting machine (speed of the circular knitting machine) be set proportionally.
  • the serving for driving the yarn feed wheel at least one pulley is disposed in the space between the two legs. These carry the shaft bearings, which are preferably designed as ball bearings or otherwise rolling bearings.
  • a housing which defines an interior space. This serves to receive one or more electrical or electronic components, e.g. can serve to monitor the operation of the yarn feeding device.
  • the limited between the pulley and the yarn feed space is largely protected from dust. Due to its shielding effect, the pulley already prevents the pulley from stalling on the upper side and even more so when it is turning.
  • the housing prevents; by occupying the space between the lower pulley and the yarn feed wheel, a deposit of Flus on the top of the yarn feed wheel or in the yarn feed wheel. The latter would be particularly annoying if the yarn feed wheel, as is preferred, is designed as a closed deep-drawn part without ventilation openings, which surrounds an interior like a pot.
  • the support may, if necessary, be made relatively narrow so as to minimize the dust deposits that are thereon due to their distance from the moving parts and the thread still to minimize.
  • the housing and the carrier are not necessarily but preferably formed as separate parts which are connected by suitable connecting means during assembly of the yarn feeding device. They can be made of different materials. While the carrier may be formed, for example, as a mechanically stable plastic or metal part, the housing does not have to take over a holding or carrying function and can be designed correspondingly thin-walled. It may have a different color than the carrier. This not only has an aesthetic effect but also structures the visual appearance of the machine ring with the yarn feeding devices.
  • a different choice of material between the housing and the carrier also makes it possible to form the housing in whole or in part from a translucent, such as translucent or transparent material. In this way, on the one hand housed in the housing electronics is visible. This can serve to check the function, for example if there are securing elements or other optically controllable elements in the housing.
  • optical signal elements for example light-emitting diodes or other communication elements, can be arranged directly on a printed circuit board arranged in the housing, which are visible on all sides through the housing, for example on all sides.
  • the housing may also have photoconductive properties to aid in the overall visibility of the signal elements.
  • a signal lamp arranged between the clamp and the yarn feeding wheel can thereby be replaced. Visibility is improved.
  • one or more antennas for transmitting and / or receiving RF signals can be arranged.
  • the cross section of the housing is somewhat smaller than the maximum cross section of the belt pulley and optionally slightly larger than the upper edge of the yarn feed wheel.
  • the diameter of the pulley, housing and yarn delivery wheel then decrease in the order from top to bottom.
  • the yarn feeler (inlet stop and outlet stop) are arranged completely below the device or carrier body.
  • the yarn feelers thus do not project laterally under the carrier body. They also do not stand off to the side. By eliminating laterally projecting to the Abstellern belonging bracket the deposition of river is difficult.
  • the devices are very narrow. If they are mounted close to each other on a machine ring, good access to the equipment is nevertheless granted. During maintenance and cleaning work, there are no disturbing wires or other parts standing sideways out of the devices.
  • FIG. 1 is a yarn feeding device 1 illustrated, which is used for yarn delivery on a knitting machine, such as a circular knitting machine.
  • a knitting machine such as a circular knitting machine.
  • the yarn feeding device 1 has a carrier 3, which is provided for attachment to the machine ring 2 with a clamp 4.
  • the support 4 is, for example, a metal part, for example an aluminum die-cast part, a zinc die-cast part or else a plastic injection-molded part or die-cast part.
  • the clamp 4 has a downwardly open opening for receiving the machine ring and a clamping screw 5 to tighten the machine ring 4 in the opening.
  • the carrier 3 extends to a first upper bearing device 6 and a second lower bearing device 7.
  • the carrier as in FIG. 1 illustrated, for example, two straight or arcuate legs 8, 9 have, between which a gap 10 is limited.
  • bearings 11, 12 are provided in the form of ball bearings coaxial with a common axis of rotation 13 on the bearing means 6 and 7 respectively. They serve to rotatably support a shaft 14, which carries a yarn feed wheel 15 at its lower end below the lower leg 9.
  • a shaft 14 which carries a yarn feed wheel 15 at its lower end below the lower leg 9.
  • the intermediate space 10 at least one, preferably a plurality of pulleys 16, 17 are arranged, which sit on the shaft 14 in order to drive them.
  • an axially displaceable clutch disc 18 or other coupling means is provided for the rotationally fixed coupling of the pulley 16 or 17 to the shaft 14 .
  • the yarn feed wheel 15 is at the lower end of the shaft 14 secured by a clamping screw 19 which is screwed into an axial end-side threaded bore of the shaft end.
  • the clamping screw 19 is identical to the clamping screw 5 in order to support a simple and clear handling of the yarn feeding device 1.
  • the bearing device 7 is part of the lower leg 9, which may extend into the interior of the pulley 16 in.
  • the pulley 16 is still arranged in a distance between the space formed between the bearing device 7 and the bearing device 6, although it, at least partially, also overlaps the lower bearing means 7.
  • the bearing device 7 is preferably part of the lower leg 9 of the carrier 3.
  • This leg 9 extends from the terminal 4 to an end 20 on which a yarn brake 21 may be arranged.
  • This can be designed according to any known type. For example, it may have magnetically adhering rings between which a thread 22 must pass.
  • an inlet eye 23 serve, which is arranged at the free end of the upper leg 8. This extends, for example, from the terminal 4 first to the bearing device 6 and from this to its free end 24.
  • a node catcher 25 may be arranged in the form of a slotted sheet, through the slot of the thread 22 runs. Between the account catcher 25 and the thread brake 21, a distance is formed, which grants free access to the pulley 16.
  • the lower leg 9 preferably carries in the presented embodiment, a housing 26 which is arranged in the gap formed between the lower pulley 16 and the yarn feed wheel 15. If the diameters of the yarn feed wheel 15 and the pulley 16 coincide with each other, this gap is cylindrical. If the diameter of the yarn feed wheel 15 is smaller than that of the pulley 16, the gap is slightly conically tapered downwards. Regardless, the shape of the housing 26 is preferably set so that the gap is substantially filled. As can be seen, the diameter to be measured transversely to the leg 9 (measuring direction in FIG FIG. 1 perpendicular to the drawing plane) of pulley 16, housing 26 and yarn feed wheel 15 stepped from top to bottom.
  • the pulley 16 has at its lower edge a largest diameter which is slightly larger than the diameter of the housing 26. This in turn preferably has a diameter which is at least slightly larger than the diameter of the upper edge of the yarn feed wheel 15 to this to take something over.
  • the housing 26 is cylindrical made of a translucent or transparent plastic. At its top it is closed and it is supported by the carrier 3, in particular its leg 9. It also has a bottom 27 made of FIG. 2 can be seen. Approximately in the middle of a tubular extension 28 may be provided in the housing. This may be part of the holder 3 or part of the housing 26 or a separate part. Between the tube extension 28 and the housing 26, an annular interior 29 is defined, which surrounds the tube extension 28 and thus also the shaft 14.
  • the housing 26 is not necessarily - but advantageously formed dense, so that it closes the interior 29 dust-tight against the environment.
  • the bottom 27 may be slightly offset upwardly against the lower edge 30 of the outer shell of the housing 26 and thus, as seen from below, define a shallow recess into which the yarn feed wheel 15 protrudes somewhat into it.
  • the latter is preferably formed as a sheet deep-drawn part in one piece. It has, for example, starting from an upper edge a conically steeply downwardly tapering inlet region 31 with circular cross-section, a ribbed storage area 32 with non-circular cross-section, which tapers slightly towards the bottom, and a flared lower edge region 33, over which the thread 22nd grazing runs off.
  • the storage section 32 serves to receive a yarn winding 34, which is continuously moved slightly axially forward by the yarn running over the inlet region 31.
  • the yarn delivery wheel 15 is preferably formed substantially hollow. Down it is completed with a closed end wall. The enclosed by the yarn feed wheel 15 interior is effectively protected by the bottom 27 and the cross over him edge 30 against flow entry.
  • the components 35 to 40 include, for example, magnetically actuatable protective tube relays 35, 37 electronic circuits 36, light-emitting diodes 39 or other optical display means, one or more Antennas 40 and passive components, such as the resistor 38. Other components, such as fuses, capacitors, transistors, diodes and the like may occur.
  • the circuit board 41 is provided for mounting in the annular interior 29 and has a corresponding cutout for the tube extension 28. It may also have an extension 42 which may extend out of the cylindrical portion of the housing 26 into another protected portion 43. This may be part of the housing 26 or may be formed by a suitable other cover.
  • the protective tube contact relays 35, 37 are provided, for example, for detecting the tightness or slack or absence of the thread 22.
  • an inlet sensor 44 and an outlet sensor 45 serve, which carry at their ends eyelets through which the thread 22 runs. If the thread is missing or hanging, it suspends the thread sensors 44, 45 from the positions shown in the figures in a suitable direction, thereby moving magnets, such as a permanent magnet 46, away from the respective protective tube contact relay. This can be brought to the display immediately or after a reasonable delay time selected by means of the LEDs 39.
  • the thread brake (preferably without any eyelet) is preferably the only element touching the thread.
  • the carrier 3 also, for example, in the immediate vicinity of the outlet sensor 45 thread guide eyes 47, 48 which determine the angle at which the thread 22 leaves the yarn feed wheel 15.
  • the yarn feeding device 1 described so far operates on the principle of a positive guide. If a not further illustrated belt on the pulley 16 or 17, the yarn feed wheel 15 is rotated, this winds the thread 22 constantly. This runs over the inlet region 31 on the storage section 32.
  • the yarn feed wheel 15 are the thread with a defined yarn speed on the outlet eyelets 47, 48 from.
  • the inlet sensor 44 and the outlet sensor 45 are in their working positions.
  • the electronic circuit on the circuit board 41 detects this and the LEDs 39 do not light up.
  • Flus may possibly deposit on the carrier 3, but not on the housing 26 arranged between the pulley 16 and the yarn feed wheel 15. Despite its relatively large volume and spacious interior, it remains clean on the outside. Its in the case of an example transparent outsides remain clean. The interior lighting elements remain visible from all sides.
  • the holder like FIG. 4 illustrated, between its legs 8, 9 have a stiffener in the form of a web 49. Between the web 49 and the terminal 4, a recess 50 may be provided. This can be formed as a passage opening or closed by a thin wall. The latter is especially useful in the production of the carrier 3 from a low-cost plastic.
  • the housing 26 deviate from the cylindrical shape. It may, for example, be prismatic, ie have a polygonal cross-section.
  • FIG. 4 shows corresponding edges 51, 52, 53, 54 of the hexagonal in the example housing 26. It may also have an octagonal or otherwise shaped cross-section.
  • the division may relate, for example, to the lower leg 9, one part of which extends from the clamp 4 to the bearing device 7.
  • Another part 55 may extend on the one hand to the end 20 and on the other hand be formed as a housing to receive the extension 42 of the circuit board 41 and the outlet sensor 45 and the outlet eyelet 47, 48 to wear.
  • the part 55 is connected to the leg with respect to the rotation axis 13 non-rotatably.
  • it may have a lower conically flared edge 56 which engages over the upper edge of the yarn feed wheel 15 somewhat and protects it and its interior against flow.
  • FIG. 5 shows the shaft 14 extend beyond the upper bearing means 6 to one or more other pulleys or even a motor to wear.
  • the Auslaufstellsteller formed from the outlet sensor 45 and the outlet eyelets 47, 48 together with other elements is an assembly that can be removed from the yarn feeding device without releasing it from the machine ring.
  • the new yarn feeding device 1 is therefore particularly easy to maintain.
  • FIG. 6 illustrates a modified embodiment of the inlet sensor 44 schematically.
  • the inlet sensor 44 is arranged pivotable about a horizontal axis of rotation 57.
  • the protective tube contact switch 37 is arranged as a magnetic sensor.
  • a permanent magnet 58 is fixedly installed in the vicinity thereof.
  • the inlet sensor 44 is connected to a shield plate 59, which stands at taut thread 22 in the space between the permanent magnet 58 and the Schutzrohrkomschalter 37. It shields the magnetic field of the permanent magnet from the protective tube contact switch 37. He is open, ie does not conduct electricity.
  • the run-in sensor pivots to a different position, whereby the shielding plate 59 is moved out of the gap between the permanent magnet 58 and the protective tube contact switch 37.
  • the magnetic field of the permanent magnet 58 now reaches the protective tube contact switch 37. Its contacts close, a current can flow.
  • the same principle can be applied to the spout sensor 45.
  • the yarn feeding device has a carrier 3, which connects its storage facilities 6, 7 with a terminal 4. Between the bearing devices 6, 7, at least one pulley 16 is provided for driving a vertical shaft 14 supported by the bearing devices 6, 7, which carries a yarn feed wheel at its lower end. Between the lower pulley 16 and the yarn feed wheel 15, a housing 26 is provided, which is held by the carrier 3 and serves to accommodate an electrical or electronic circuit. The housing is housed in a river protected area and can be made relatively large and voluminous.

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

Claims (17)

  1. Appareil d'alimentation en fil (1) pour des machines textiles,
    comprenant un support (3) qui présente au moins : une pince (4) servant à fixer l'appareil d'alimentation en fil (1) au niveau de la machine textile, une première branche (8) et une deuxième branche (9),
    comprenant un premier palier (11) disposé au niveau de la première branche (8), présentant un axe de rotation (13) orienté verticalement en utilisation,
    comprenant un deuxième palier (12), qui est disposé dans l'alignement du premier palier (11) au niveau de la deuxième branche (9), un espace intermédiaire (10) étant réalisé entre la première et la deuxième branche (8, 9),
    comprenant un arbre (14), qui s'étend à travers les paliers (11, 12) et qui est monté de manière à pouvoir être tourné par ces derniers,
    comprenant au moins une poulie de courroie (16), qui est disposée sur l'arbre (14) à l'intérieur de l'espace intermédiaire (10) afin d'entraîner en rotation l'arbre (14),
    comprenant une roue d'alimentation en fil (15), qui est disposée au niveau d'une extrémité inférieure en utilisation de l'arbre (14) afin d'être entraînée par l'arbre (14),
    comprenant un boîtier (26), qui délimite un espace intérieur (29) et qui est disposé entre la poulie de courroie (16) au moins au nombre de une et la roue d'alimentation en fil (15) afin de proposer un espace de réception pour au moins un composant (37, 39) électrique,
    caractérisé
    en ce que le boîtier (26) est prévu dans l'espace entre une poulie de courroie (16) disposée le plus en bas et la roue d'alimentation en fil (16) sous le deuxième palier (12) inférieur.
  2. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que le boîtier (26) et le support (3) sont des parties séparées.
  3. Appareil d'alimentation en fil selon la revendication 2, caractérisé en ce que le boîtier (26) et le support (3) sont constitués de matériaux différents.
  4. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que le boîtier (26) présente au moins une zone perméable à la lumière.
  5. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que le boîtier (26) présente au moins une ouverture pour un élément d'affichage optique.
  6. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que la dimension transversale maximale du boîtier (26) est plus grande que le diamètre du bord supérieur de la roue d'alimentation en fil (15).
  7. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que la dimension transversale maximale du boîtier (26) est inférieure au diamètre maximal de la poulie de courroie (16).
  8. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que le boîtier (26) est réalisé en suivant l'arrondi de la poulie de courroie (16) et présente une section transversale arrondie.
  9. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que le boîtier (26) est réalisé en suivant l'arrondi de la poulie de courroie (16) et présente une section transversale polygonale.
  10. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que le boîtier (26) présente un bord (30) recouvrant la roue d'alimentation en fil (15).
  11. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que des éléments d'acheminement de fil (47, 48), et/ou des moyens de détection de fil (44, 45) et/ou un frein de fil (21) sont disposés au niveau du support (3), tandis que le boîtier (26) sert, sans fonction de support, uniquement à abriter l'espace intérieur (29) entouré.
  12. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que des moyens de traitement (41) électroniques sont disposés dans l'espace intérieur (29).
  13. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce qu'une antenne (40) est disposée dans l'espace intérieur (29).
  14. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce qu'il présente des moyens de détection de fil (44, 45), auxquels appartiennent au moins un capteur d'aimant (37) disposé dans l'espace intérieur (29) et au moins un aimant (58), dont le champ est influencé par un élément de détection (44, 59) disposé en dehors de l'espace intérieur (29).
  15. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que l'espace intérieur (29) est fermé par rapport à l'extérieur.
  16. Appareil d'alimentation en fil selon la revendication 1, caractérisé en ce que sont prévus, en tant que capteurs de fils, un capteur de fil entrant (44) et/ou un capteur de fil sortant (45), et en ce que le capteur de fil entrant (44) et/ou le capteur de fil sortant (45) sont disposés intégralement sous le support (3).
  17. Machine à tricoter équipée d'un appareil d'alimentation en fil selon l'une quelconque des revendications 1 à 16.
EP06818251.8A 2006-10-06 2006-10-06 Dispositif d'alimentation en fil Active EP2076620B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/EP2006/009701 WO2008043372A1 (fr) 2006-10-06 2006-10-06 Dispositif d'alimentation en fil

Publications (2)

Publication Number Publication Date
EP2076620A1 EP2076620A1 (fr) 2009-07-08
EP2076620B1 true EP2076620B1 (fr) 2016-03-16

Family

ID=38330692

Family Applications (1)

Application Number Title Priority Date Filing Date
EP06818251.8A Active EP2076620B1 (fr) 2006-10-06 2006-10-06 Dispositif d'alimentation en fil

Country Status (4)

Country Link
EP (1) EP2076620B1 (fr)
CN (1) CN101535543B (fr)
TW (1) TWI393812B (fr)
WO (1) WO2008043372A1 (fr)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102012104976B4 (de) 2012-06-08 2015-11-05 Memminger-Iro Gmbh Fadenliefergerät
DE102013113115B4 (de) * 2013-11-27 2016-01-28 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung, Fadenliefergerät und System mit Fadenliefergeräten
CN106283372B (zh) * 2016-10-20 2019-04-23 厦门绫亚针织机械配件有限公司 一种改良的储纱轮下轮的陶瓷棒、储纱轮下轮及储纱轮
DE102018115597A1 (de) * 2018-06-28 2020-01-02 Memminger-IRO Gesellschaft mit beschränkter Haftung Fadenliefergerät und Verfahren zum Betreiben eines Fadenliefergerätes

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2147615B (en) * 1983-10-08 1986-08-28 Triplite Ltd Yarn fault detector
JPH0733621B2 (ja) * 1988-03-18 1995-04-12 株式会社福原精機製作所 丸編機における積極型の糸送り装置
IT1254721B (it) * 1992-03-17 1995-10-09 Angelo Paggiaro Apparecchiatura automatica per la visualizzazione e il controllo centralizzato di una molteplicita' di anomalie particolarmente in alimentatori per macchine di maglieria e per macchinari tessili in genere
CN2275588Y (zh) * 1996-06-26 1998-03-04 陈花蓉 具有保护罩的送纱器
US5860298A (en) * 1997-05-23 1999-01-19 Jen Hui Chen Thread feeder with thread-twisting preventive device for knitting machines
DE19932482A1 (de) * 1999-07-12 2001-01-18 Memminger Iro Gmbh Fadenliefergerät in mit verstellbarer Fadenleitelementeinrichtung
DE19932481A1 (de) * 1999-07-12 2001-01-18 Memminger Iro Gmbh Fadenliefergerät für Textilmaschinen

Also Published As

Publication number Publication date
TWI393812B (zh) 2013-04-21
EP2076620A1 (fr) 2009-07-08
WO2008043372A1 (fr) 2008-04-17
CN101535543B (zh) 2011-07-27
CN101535543A (zh) 2009-09-16
TW200837238A (en) 2008-09-16

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