EP0879308B1 - Dispositif de formation de lisiere pour metier mecanique - Google Patents

Dispositif de formation de lisiere pour metier mecanique Download PDF

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Publication number
EP0879308B1
EP0879308B1 EP97902318A EP97902318A EP0879308B1 EP 0879308 B1 EP0879308 B1 EP 0879308B1 EP 97902318 A EP97902318 A EP 97902318A EP 97902318 A EP97902318 A EP 97902318A EP 0879308 B1 EP0879308 B1 EP 0879308B1
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EP
European Patent Office
Prior art keywords
selvedge
forming device
thread
thread guide
guide elements
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
EP97902318A
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German (de)
English (en)
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EP0879308A1 (fr
Inventor
Ignace Meyns
Kurt Slosse
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Picanol NV
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Picanol NV
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Publication date
Application filed by Picanol NV filed Critical Picanol NV
Publication of EP0879308A1 publication Critical patent/EP0879308A1/fr
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Expired - Lifetime legal-status Critical Current

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    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D47/00Looms in which bulk supply of weft does not pass through shed, e.g. shuttleless looms, gripper shuttle looms, dummy shuttle looms
    • D03D47/40Forming selvedges
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C7/00Leno or similar shedding mechanisms
    • D03C7/06Mechanisms having eyed needles for moving warp threads from side to side of other warp threads

Definitions

  • the invention relates to an edge forming device for a Weaving machine with thread guide elements guided in a linear guide for lifting and lowering of at least two edge threads, the thread guide elements of at least one edge thread this edge thread during lifting or lowering with at least one other edge thread transverse to the direction of raising and lowering.
  • Edge forming devices that work together with edge threads are used in weaving machines to create a selvedge of a fabric or a waste belt.
  • the Edge threads guided in thread guide elements these edge threads raise and lower so that weaving compartments are formed, in the wefts according to a predetermined pattern in the Edge threads are bound.
  • the thread guide elements have mostly thread guides in the form of circular, oval or slit-shaped openings. The edging threads also become catch threads called.
  • Edge forming devices for at least two edge threads are known. This is a first edge thread in one plane moves up and down while a second edge thread runs in opposite directions to the first edge thread up and down and at the same time is moved transversely to the plane of the up and down movement, so that the two edge threads cross.
  • the known edge forming devices contain a needle, which moves in one plane and the one thread eyelet has, in which a first edge thread is guided. Further they contain two thread guide elements, in which crossed Slits are provided for guiding a second edge thread and are moved in the opposite direction to the needle.
  • the thread guide elements move with the crossed Slits also relative to each other, so that due to the relative movement the slots of the second edge thread in one direction is shifted perpendicular to the aforementioned level, so that the two edge threads cross.
  • Such an edge forming device is in the US patent 4,478,256.
  • the edge forming device is with the heald frames of the weaving machine are driven together. This Edge forming device therefore only allows bonds that are determined by the movement of the heald frames.
  • a another edger is in U.S. Patent 3,171 443 described by its own drive elements of a drive device is driven. The drive is pretty laborious. A change in the binding is only expensive Work possible.
  • the invention has for its object an edge forming device to create the type mentioned at which simply changes the bond between the Edge threads and the weft threads is possible.
  • An edge forming device offers the Advantage that it is very compact and made from a few parts can be. It can be implemented in a modular design become. In addition, it can be easily installed and removed and also in the width of the weaving machine when changing the fabric width can be shifted.
  • the edge forming device shown in FIGS. 1 to 7 1 has two lateral guide parts 2, in which in In the longitudinal direction A three thread guide elements 3, 4 and 5 guided become.
  • the thread guide elements 3 and 4 contain each a slot 6, 7.
  • the slots 6, 7 of the one behind the other arranged thread guide elements 3, 4 are in opposite directions inclined to the longitudinal direction A.
  • the slots 6, 7 are used to guide an edge thread 8. They allow it, with opposite movement in the longitudinal direction A of the thread guide elements 3, 4 and thus the slots 6, 7 the edge thread 8 to move in the transverse direction B, i.e. transverse to the longitudinal direction A.
  • the thread guide element 5 contains a needle 9, at the end of which a thread eyelet 10 is provided which has an edge thread 11 leads.
  • the edge threads 8 and 11 are in the longitudinal direction A moved in opposite directions, i.e. raised and lowered, to form a shed 12 in each of which a weft is introduced. Then a new shed is created i.e. after inserting one or more weft threads, whereby the edge threads 8, 11 with the weft thread or threads a selvedge binding form.
  • the edge threads 8, 11 lay down in opposite directions around the weft or threads, like this too 10, 11 and 13 can be seen.
  • at least one of the edge threads 8 or 11 moved alternately in the transverse direction B. so that they cross and loop around each other, as can also be seen from FIGS. 10, 11 and 13.
  • the edge forming device 1 contains one independently controllable drive 13, for example an electric drive motor, of regardless of facilities not shown is controllable to form the shed from warp threads.
  • the drive 13 drives 14 eccentric drives via a drive shaft to the thread guide elements 3, 4 for the edge thread 8 and for the edge thread 11 move up and down in opposite directions.
  • An eccentric drive contains a crank 15, the end of which is connected to a coupling rod 16 which is connected to the thread guide elements 3, 4 is articulated.
  • the eccentric drive the in the exemplary embodiment, a Y-shaped crank rod 16 has, is at pivot points 19, 20 on the thread guide elements 3, 4 hinged with respect to an angular distance the axis of rotation of the eccentric drive, i.e. in terms of the drive shaft 14.
  • the pivot points 19, 20 are thus each other with respect to one through the drive shaft 14 extending symmetry plane 21 opposite. This ensures that the thread guide elements 3, 4 at the same time be raised and lowered, but each with slightly different Because of.
  • the two thread guide elements 3, 4 lead in the longitudinal direction A when lifting and lowering Relative movements from each other, so that the slots 6, 7th can also be moved in the longitudinal direction A relative to each other.
  • the slots 6, 7 are arranged so that there are always parts of them cursing each other.
  • the one in alignment Parts of the slots 6, 7 are dependent on the relative position the thread guide elements 3, 4 and thus the slots 6, 7 in Longitudinal direction A. Align in the position according to Fig.
  • the drive shaft 14 drives via a further eccentric drive the thread guide element 5.
  • This eccentric drive contains a crank 17 arranged on the drive shaft 14, which in the embodiment with the crank 15 in one piece is at the end by means of a pivot point 24, a coupling rod 18 is articulated, the free end by means of a Articulation point 23 is articulated on the thread guide element 5.
  • the articulation point 24 of the coupling rod 18 is the articulation point 22 of the coupling rod 16 with respect to the drive shaft 14 substantially diametrically opposite, so that in a rotation the cranks 15, 17 with the drive shaft 14, the thread guide elements 3, 4 on the one hand and the thread guide element 5 on the other hand, perform opposite movements with maximum travel.
  • the range of rotation angle of the drive 13 is within a range limited by a little less than 360 °, i.e. at about 350 °, as the positions of FIGS. 3 and 5 show.
  • the Crank 15 assigned a stop 29.
  • the drive 13, in particular a stepper motor is controlled by a control unit 30 regarding the direction of rotation, the distance to be covered and also the speed controlled.
  • the lateral guide parts 2 belong to a frame 31 which is also the drive 13 is attached.
  • the thread guide part 5 is a yoke-like component, which in two longitudinal grooves 36 of the Side parts 2 is guided, which is a linear guide for the thread guide element 5 form.
  • the thread guide element 5 is provided with an eyelet 33 in the extension of the needle 9, by which the edge thread 11 is guided.
  • the thread eyelet 10 is in Direction of travel of the edge thread 11 in the direction of the fabric 32 somewhat offset to the needle 9 (Fig. 6), so that the edge thread 11 does not abut the needle 9 and is also simple is to be threaded from the side of the fabric 32.
  • the two side parts 2 each have a linear guide forming longitudinal groove 34, 35 for the thread guide elements 3, 4, which are therefore only guided on one side.
  • the two thread guide elements 3, 4 in their the coupling rod 16 facing away area connected by two tabs 25, at the pivot points 26, 27 to the thread guide elements 3, 4 are articulated.
  • FIGS. 8 and 9 essentially corresponds the exemplary embodiment according to FIGS. 1 to 7 with the difference that instead of a Y-shaped coupling rod a shorter T-shaped coupling rod 16 'is provided is that via two further coupling rods 42, 43 to the thread guide elements 3, 4 is articulated.
  • the one at a pivot point 44 to the coupling rod 16 'and in a pivot point 46 coupled to the thread guide element 3 coupling rod 42 and by means of a pivot point 45 to the coupling rod 16 'and a pivot point 47 to the thread guide element 4 articulated coupling rod 43 allow compensation, so that the thread guide elements 3, 4 by means of T-shaped ends 37, 38 in undercut grooves 34, 35 of the Side parts 2 can be performed.
  • crank 17 is a stop 48 assigned.
  • the slots 6, 40 and 7, 41 of the Thread guide elements 3, 4 are inclined in opposite directions, so that the edge threads 8, 39 each in opposite directions in the transverse direction B can be shifted relative to the edge thread 11. If in this case, alternatively the positions for the shot entry 3 and 5 are approached, for example realize a weave pattern according to Fig. 13.
  • the embodiment can be 1 to 7 or 8 to 9 in simpler form Modify way in that the thread guide elements 3, 4 with several arranged side by side in the transverse direction Slot pairs 6, 7 are provided, each pick up an edge thread 8. This pair of slots is then each a needle 9 with a thread eye 10 for guiding Edge threads 11 assigned. As further shown in FIG. 14 is, it is also possible in the thread guide elements 3, 4 not just several pairs of slots 6, 7 in Transverse direction B next to each other, but also several pairs of slots 6, 7 and 40, 41 to be arranged one below the other in the longitudinal direction A, which each take an edge thread 8.39.
  • Edge forming devices according to the invention 1 become thread guide elements for the edge threads by means of eccentric drives raised and lowered, with an eccentric drive also the movement is derived with which at least an edge thread is shifted transversely so that it is in Crosses the other edge thread.
  • the 15 to 18 is the by the crank 15 driven coupling rod 16a of one Eccentric drive with a thread guide in the form of an eyelet 50 provided so that this coupling rod 16a itself as a thread guide element is trained.
  • the as a thread guide element trained coupling rod 16a is in a guide sleeve 52 guided, a linear guide for the coupling rod 16a forms.
  • the guide sleeve 52 is around one on the frame 31 attached, stationary axis 53 rotatable. That from the Guide sleeve 52 protruding end provided with the eyelet 50 the coupling rod 16a is in a relatively large way in Direction B can be moved transversely to longitudinal direction A.
  • the thread guide element 5a is in linear guides (longitudinal grooves) of the side parts 2 of a frame 31 out. At this thread guide element 5a engages a coupling rod 18 of a second eccentric drive to a driven by the drive shaft 14 Crank 17 is articulated.
  • a shed 12 is in the position shown in FIG. 18 formed, into which a weft thread can be inserted.
  • Outgoing the drive 13 can be controlled from this position 15 that either the position of FIG. 15 or the 17 position is approached.
  • the drive shaft 14 of the drive 13 a position sensor 59 assigned, which is connected to the control unit 30 is.
  • This position encoder 59 for example an incremental encoder, makes it possible, for example, as a drive 13 Use servo motor and thus the desired positions to approach exactly. It can stop at a stop Limitation of the angle of rotation can be dispensed with. Will such a Position transmitter 59 in connection with a stepper motor provided, can of course also on one otherwise the stop required for adjustment can be dispensed with.
  • the crank 15 driven clutch rod 16b is as a thread guide member formed and provided with two eyelets 50, 51.
  • the Coupling rod 16b is articulated to a yoke-shaped component 63, that in the longitudinal direction A in linear guides of the side parts 2 of the frame 31 is guided.
  • the coupling rod 16b is articulated on the component 63 by means of an articulation point 54.
  • the eyelet 50 is located below the pivot point 54 and the eyelet 51 above the pivot point 54, so that these two eyelets with respect to this articulation point and with respect to the needle 9 move in opposite directions when the coupling rod 16b is pivoted by means of the eccentric drive.
  • FIG. 20 differs from the embodiment of FIG. 19 in that the Coupling rod 16b above and below the pivot point 54, with which the coupling rod 16b on the yoke-shaped Component 63 is articulated, each a thread guide element 55, 56 is attached by means of pins 57, 58 in the transverse direction B is performed.
  • These thread guide elements are with eyelets 50a, 51a provided on both sides by the coupling rod 16b are arranged.
  • the thread guide element 5b is with two needles 9 and eyelets 10 provided for two edge threads 11, opposite which the eyelets 50a, 51a of the thread guide elements 55, 56 corresponding to the direction of rotation of the drive shaft 14 in each case can be moved to the right or left side.
  • FIGS. 21 and 22 corresponds to The principle of the embodiment according to FIG. 19 is different however, the coupling rod 16b by means of a block 60 in a yoke-like component 63a rotatably mounted about an axis 61.
  • the yoke-like component 63 a is in the side parts 2 of the frame 31 in the longitudinal direction A in linear guides, for example in grooves.
  • the coupling rod 16b is in the Block 60 held by securing clips 62.
  • FIG. 23 and 24 corresponds to in its basic principle the embodiment of FIG. 21 and 22, however, is the coupling rod 16c, which acts as a thread guide is formed and an eyelet 50 at its end has, divided into two parts 64, 65.
  • Part 64 the articulated to the crank 15 by means of an articulation point 22 is by means of an articulation point 66 to a yoke-like Component 63b articulated, that in linear guides of the side parts 2 of the frame 31 is guided in the longitudinal direction A.
  • Part 65 is at a distance from the articulation point 66 by means of an articulation point 67 also articulated to the yoke-like component 63b.
  • the parts 64 are between the two articulation points 66 and 67 and 65 by means of an axial compensating movement Articulated connection 68 connected so that the part 64 of the Coupling rod 16c the part 65 according to its pivoting movement drives to swivel movements.
  • Articulated connection 68 connected so that the part 64 of the Coupling rod 16c the part 65 according to its pivoting movement drives to swivel movements.
  • edge forming devices 1 allow different weft bindings with the edge threads 8, 39, 11, the desired Binding is obtained in that the drive 13 by means of Control unit 30 driven according to a selectable pattern becomes.
  • the pattern entered is, for example, such that depending on the position of the main shaft of the weaving machine the position of the drive shaft 14 of the edge forming device 1 is determined so that the position of this drive shaft 14 synchronized with movements of other parts of the Loom is.
  • the cranks 15, 17 of the eccentric drives in the illustrated Embodiments can of course also have the same length his.
  • the coupling rods 16 and 18 the eccentric drives have a different length or be the same length.
  • the length of the components is chosen so that that formed by the edge threads 8, 39 and 11 Shed 12 approximately matches the shed, which by means of Not shown warp threads from the specialist training institutions the weaving machine is formed.
  • the Edge forming device 1 with its frame 31 on a suitable Position of the loom to be attached.
  • the length the components are preferably also selected so that the up and down edge threads 8, 39 and 11 in the transverse direction cross when the pivoting movement of the coupling rod 16 about reached their maximum value.
  • the drive element 13 consists of a stepper motor, for example Position, speed and acceleration from the control unit 30 can be specified.
  • the stop 29 or 48 will used to determine the position of the drive element 13 to adjust in a known manner by means of a control program.
  • the drive element 13 can also be a controllable servo motor consist.
  • the control unit 30 this servo motor requires a position encoder 59 as he is shown in Fig. 16. This detects the angular position the drive shaft 14 and outputs it to the control unit 30 on. If a position transmitter 59 in connection with a Stepper motor used, so of course are stops not mandatory.
  • a hydraulic can also be used as the drive element 13 or pneumatic drive motor can be used. In this case, valves are required that are operated by the Control unit 30 can be controlled in a suitable manner.
  • the edge forming device 1 within a frame 31 is mounted, which is attached to the machine at any point can be, the edge forming device is a Module that only has fasteners and electrical, pneumatic or hydraulic feed lines with the weaving machine connected is.
  • the edge forming device does not necessarily have to be one own control unit 30 included, since their function of the Control unit of the weaving machine can also be taken over can.
  • control unit 30 can also a manually operable switching element 28 can be assigned, which enables an operator to use the drive element 13 so that the drive shaft 14 a certain Angular position in which the thread guide elements are easily accessible and can be supplied.
  • the thread guide eyelets 10, 50 and 51, 50a, 51a are in the Embodiments shown with a round shape. Of course they can also have other shapes, for example an oval shape or a slot shape.
  • one of the Edge threads 11 or a group of edge threads 11 only in one Level can be raised and lowered.
  • the range of rotation angle of the drive element 13 is limited, so that the drive element alternately in the two directions of rotation is driven.
  • To drive coupling rods 16 and 18 by means of a crankshaft so that the drive element 13 only in one direction of rotation must be driven or, for example, for several successive weft entries in one direction of rotation is driven, then the direction of rotation is reversed becomes.
  • edge forming devices can be used in conjunction with any type of weaving machine be used, i.e. with jet weaving machines, rapier weaving machines, Projectile weaving machines or other types of weaving machines.

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

Claims (22)

  1. Dispositif (1) de formation de lisières pour une machine à tisser, comportant des éléments guide-fils (3, 4, 5, 5a, 16a, 16b, 16c), guidés dans des guidages linéaires, destinés à monter et à descendre au moins deux fils de lisière (8, 39, 11), les éléments guide-fils d'au moins un fil de lisière (8, 39) croisant, pendant la montée ou la descente, ce fil de lisière avec au moins un autre fil de lisière (11) transversalement à la direction A de la montée et de la descente, caractérisé en ce qu'on prévoit un organe d'entraínement à commande indépendante, qui pour assurer une montée et une descente en sens contraire des fils de lisière (8, 39, 11), est, au moyen d'organes d'entraínement excentrés, raccordé aux éléments guide-fils, et que le mouvement des éléments guide-fils, nécessaire au croisement d'au moins un fil de lisière (8, 39), découle de l'organe d'entraínement excentré appartenant à ces éléments guide-fils.
  2. Dispositif de formation de lisières selon la revendication 1, caractérisé en ce que l'axe de rotation (14) des organes d'entraínement excentrés court essentiellement dans la direction de défilement des fils de lisière (3, 39, 11), et qu'un mouvement transversal, pour le croisement des fils de lisière (8, 39), découle d'une barre d'accouplement (16, 16', 16a, 16b, 16c), raccordée à un organe d'entraínement excentré.
  3. Dispositif de formation de lisières selon la revendication 1 ou 2, caractérisé en ce qu'on prévoit un organe d'entraínement commun (13), auquel sont raccordés deux organes d'entraínement excentrés, qui pour l'essentiel sont diamétralement opposés l'un à l'autre.
  4. Dispositif de formation de lisières selon la revendication 1, 2 ou 3, caractérisé en ce que les organes d'entraínement excentrés peuvent tourner dans un sens et dans l'autre sur un intervalle angulaire d'environ 360°.
  5. Dispositif de formation de lisières selon l'une des revendications 1 à 4, caractérisé en ce que l'intervalle de rotation de l'organe d'entraínement (13) est limité par au moins une butée (29, 48).
  6. Dispositif de formation de lisières selon l'une des revendications 1 à 4, caractérisé en ce qu'un transmetteur de position (59) est affecté à l'organe d'entraínement (13).
  7. Dispositif de formation de lisières selon l'une des revendications 1 à 3, caractérisé en ce qu'on prévoit en tant qu'organe d'entraínement (13) un moteur pas à pas.
  8. Dispositif de formation de lisières selon l'une des revendications 1 à 7, caractérisé en ce qu'on prévoit pour au moins un fil de lisière (8, 39) deux éléments guide-fils (3, 4) disposés l'un derrière l'autre dans la direction du défilement du fil, éléments qui, pour guider ce fil de lisière, sont pourvus de fentes (6, 7) qui se croisent, et qui, pendant la montée et la descente, se déplacent en sens contraire l'un de l'autre à l'aide de l'organe d'entraínement excentré, et déplacent dans la direction transversale le fil de lisière (8, 39) qu'elles guident.
  9. Dispositif de formation de lisières selon la revendication 8, caractérisé en ce que les deux éléments guide-fils (3, 4) disposés l'un derrière l'autre sont, à l'aide d'une ou plusieurs barres d'accouplement (16 ; 16', 42, 43), raccordées à un organe d'entraínement excentré commun, les points d'articulation (19, 20 ; 46, 47) de ces barres d'accouplement étant disposés contre les éléments guide-fils (3, 4) correspondants selon un certain écart angulaire dans la direction périphérique par rapport à l'axe de rotation (14) de l'organe d'entraínement excentré.
  10. Dispositif de formation de lisières selon la revendication 8 ou 9, caractérisé en ce qu'on prévoit une barre d'accouplement commune (16, 16') pour articuler les deux éléments guide-fils (3, 4) à l'organe d'entraínement excentré, barre qui a la forme d'un Y ou d'un T.
  11. Dispositif de formation de lisières selon l'une des revendications 8 à 10, caractérisé en ce que les deux éléments guide-fils (3, 4) pourvus de fentes (6, 7) qui se croisent sont guidés l'un dans l'autre, dans des guidages linéaires (34, 35) approximativement opposés.
  12. Dispositif de formation de lisières selon la revendication 11, caractérisé en ce que les deux éléments guide-fils (3, 4) pourvus des fentes (6, 7) qui se croisent sont reliés à une ou plusieurs attaches (25), qui leur sont raccordées en articulation.
  13. Dispositif de formation de lisières selon l'une des revendications 1 à 7, caractérisé en ce que la barre d'accouplement (16a, 16b, 16c) appartenant à un organe d'entraínement excentré est configuré comme un élément guide-fil et est pourvu d'au moins un guide-fil (50, 51, 50a, 51a).
  14. Dispositif de formation de lisières selon la revendication 13, caractérisé en ce que la barre d'accouplement (16a) est guidée dans un guidage linéaire (52), qui peut pivoter autour d'un axe (53) parallèle à l'axe de rotation (14) de l'organe d'entraínement excentré.
  15. Dispositif de formation de lisières selon la revendication 13, caractérisé en ce que la barre d'accouplement (16b) est, à distance de son extrémité libre, articulée à un composant (63) guidé dans un guidage linéaire.
  16. Dispositif de formation de lisières selon l'une des revendications 13 à 15, caractérisé en ce qu'à la barre d'accouplement (16b) est articulé au moins un élément guide-fil (55, 56), guidé dans la direction transversale (B), et qui comporte au moins un guide-fil (50a, 50b ; 51a, 51b).
  17. Dispositif de formation de lisières selon la revendication 13, caractérisé en ce que la barre d'accouplement (16c) est subdivisée en deux parties (64, 65), qui toutes les deux sont articulées à un composant (63b) guidé dans un guidage linéaire, et qui sont reliées l'une à l'autre par une articulation.
  18. Dispositif de formation de lisières selon l'une des revendications 1 à 17, caractérisé en ce qu'on prévoit en tant qu'élément guide-fil supplémentaire un composant (5, 5a, 5b) guidé dans un guidage linéaire, qui est articulé à un organe d'entraínement excentré (17, 18) et qui comporte au moins un guide-fil (10).
  19. Dispositif de formation de lisières selon la revendication 18, caractérisé en ce que le ou les guide-fils (10) sont chacun disposés à l'extrémité d'une aiguille (9), qui dépasse du composant (5, 5a, 5b).
  20. Dispositif de formation de lisières selon les revendications 18 et 19, caractérisé en ce que le composant (5, 5a) est pourvu d'au moins un oeillet pour chaque fil de lisière (11) qu'il guide, fil qui, à partir de cet oeillet, est guidé dans la direction longitudinale de l'aiguille (9) jusqu'à son guide-fil (10).
  21. Dispositif de formation de lisières selon l'une des revendications 1 à 20, caractérisé en ce que les organes d'entraínement excentrés et les éléments guide-fils sont disposés dans un cadre commun (31).
  22. Dispositif de formation de lisières selon l'une des revendications 1 à 21, caractérisé en ce que la longueur et/ou la disposition des manivelles (15, 17) des organes d'entraínement excentrés et/ou la longueur et/ou la disposition des barres d'accouplement (16, 16', 16a, 16b, 16c, 18) sont définies de façon que les fils de lisière (8, 39, 11) se croisent approximativement pour un pivotement maximal des barres d'accouplement.
EP97902318A 1996-02-09 1997-02-04 Dispositif de formation de lisiere pour metier mecanique Expired - Lifetime EP0879308B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
BE9600115A BE1010014A3 (nl) 1996-02-09 1996-02-09 Kanteninrichting voor een weefmachine.
BE9600115 1996-02-09
PCT/EP1997/000495 WO1997029232A1 (fr) 1996-02-09 1997-02-04 Dispositif de formation de lisiere pour metier mecanique

Publications (2)

Publication Number Publication Date
EP0879308A1 EP0879308A1 (fr) 1998-11-25
EP0879308B1 true EP0879308B1 (fr) 2000-05-24

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EP97902318A Expired - Lifetime EP0879308B1 (fr) 1996-02-09 1997-02-04 Dispositif de formation de lisiere pour metier mecanique

Country Status (6)

Country Link
US (1) US6009917A (fr)
EP (1) EP0879308B1 (fr)
JP (1) JP2000504789A (fr)
BE (1) BE1010014A3 (fr)
DE (1) DE59701757D1 (fr)
WO (1) WO1997029232A1 (fr)

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE1010818A3 (nl) * 1996-12-20 1999-02-02 Picanol Nv Kanteninlegapparaat voor een weefmachine.
DE29716100U1 (de) * 1997-09-08 1997-10-30 Textilma Ag, Hergiswil Fadensteuervorrichtung
ITFI980083A1 (it) * 1998-04-07 1999-10-07 Leonardo Lenzi Metodo ed apparecchiatura per la fabbricazione di manufatti tessili
JP2001159046A (ja) * 1999-11-16 2001-06-12 Sulzer Textil Ag からみ織を製造するための装置
BE1015461A6 (nl) * 2003-03-18 2005-04-05 Picanol Nv Inrichting voor het vormen van een zelfkant aan een weefsel.
KR100754106B1 (ko) * 2003-11-28 2007-08-31 텍스틸마 악티엔게젤샤프트 직물 기계, 특히 셰딩 장치에 대한 실 제어 장치
JP4718248B2 (ja) * 2005-06-06 2011-07-06 津田駒工業株式会社 耳織成装置
CN115012098B (zh) * 2022-07-06 2024-02-02 吴江万工机电设备有限公司 一种织造绞边装置

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EP0879308A1 (fr) 1998-11-25
BE1010014A3 (nl) 1997-11-04
WO1997029232A1 (fr) 1997-08-14
US6009917A (en) 2000-01-04
DE59701757D1 (de) 2000-06-29
JP2000504789A (ja) 2000-04-18

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