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EP1606348B1 - Structure porteuse d'un systeme de formation de foule d'un metier mecanique - Google Patents

Structure porteuse d'un systeme de formation de foule d'un metier mecanique Download PDF

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Publication number
EP1606348B1
EP1606348B1 EP04719962A EP04719962A EP1606348B1 EP 1606348 B1 EP1606348 B1 EP 1606348B1 EP 04719962 A EP04719962 A EP 04719962A EP 04719962 A EP04719962 A EP 04719962A EP 1606348 B1 EP1606348 B1 EP 1606348B1
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EP
European Patent Office
Prior art keywords
housing part
housing
supporting structure
structure according
sub
Prior art date
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Expired - Lifetime
Application number
EP04719962A
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German (de)
English (en)
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EP1606348A1 (fr
Inventor
Dirk Sampers
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Picanol NV
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Picanol NV
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Priority claimed from BE2003/0155A external-priority patent/BE1015411A3/nl
Priority claimed from BE2003/0210A external-priority patent/BE1015455A6/nl
Priority claimed from DE2003118806 external-priority patent/DE10318806A1/de
Application filed by Picanol NV filed Critical Picanol NV
Publication of EP1606348A1 publication Critical patent/EP1606348A1/fr
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    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D49/00Details or constructional features not specially adapted for looms of a particular type
    • D03D49/02Construction of loom framework
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C1/00Dobbies
    • D03C1/14Features common to dobbies of different types
    • D03C1/16Arrangements of dobby in relation to loom

Definitions

  • the invention relates to a support structure for a shedding system of a weaving machine, which has a machine frame with two side parts, between which shingling means are to be attached, for which the support structure includes a system of rods and levers.
  • a support structure for a shedding system of a weaving machine of the type mentioned is from the EP 742 298 B1 or DE 696 07 675 T2 known.
  • the known support structure has a U-shaped profile with lateral elevations, in which the system of rods and levers is arranged.
  • the supporting structure also serves as an oil reservoir.
  • the known support structure is bulky and difficult to realize. It is also not particularly well suited to arrange different components mounted in the support frame in alignment with each other or to keep in alignment. Therefore, the known support structure is not particularly favorable for use in weaving machines that operate at high weaving speeds.
  • the well-known support structure limited to a particular drive system and also suitable only for use in a loom with a predetermined width.
  • US-A-5 642 758 (1997-07-01 ) is a support structure for a shedding system of a weaving machine of the type mentioned above, wherein for receiving the system of rods and levers, a housing composed of two sub-housings is provided, wherein the first sub-housing is arranged in the second sub-housing.
  • the aim of the invention is to provide a supporting structure of the type mentioned, which does not have the disadvantages mentioned and which is suitable for high weaving speeds.
  • a at least two sub-housings joined together housing is provided, of which a first sub-housing in the region of the outside of a side part and a second sub-housing in the region between the two side parts and transversely to the Side parts is to be arranged.
  • the advantage is achieved that the support structure formed from at least two partial housings is sufficiently resistant to changing forces, changing temperatures, deformations, oscillations or resonances and therefore permits weaving with high weaving speeds.
  • the support structure can be selected in a simple manner depending on the loom width or adapted to this.
  • the first part housing is provided with fastening means for attachment to a side part of the loom, and that the second part housing is attached to the first part housing.
  • the second part housing extends up to the side part of the weaving machine, which is opposite to the side part, to which the first part housing is attached. This results in a rigid support structure that allows weaving at high weaving speeds.
  • the fastening means for attaching the first part housing to a side part of the loom contain elastic elements.
  • This design of the fastening means is also advantageous if the supporting structure is in one piece and is not assembled from a plurality of sub-housings.
  • the sub-housing and housed therein system of rods and levers form a structural unit that can be attached to a loom and removed from the loom. It can be kept ready units that differ only in relation to be arranged between the side parts of a loom part housing, which is sized according to different loom widths.
  • the sub-housing are provided with facing reference surfaces.
  • the sub-housings can be positioned exactly to each other while they are attached to each other. This positioning is maintained even when changing forces and temperatures.
  • a seal between the two reference surfaces is provided. This can be avoided that oil, especially lubricating oil, passes between the reference surfaces.
  • the second sub-housing contains a U-shaped profile which forms a bottom and two side walls of the sub-housing.
  • a bottom and two side walls of the first part housing are components of a profile.
  • Such a partial housing can be used as an oil reservoir or serve as an oil passage to the formed, for example, a U-shaped profile second sub-housing, which may be oil reservoir at the same time.
  • a control lever is pivotally mounted about an axis in the first part housing, which is connected on the one hand by means of a coupling system with a drive lever and on the other hand by means of a transmission rod with a shedding means and by means of a connection system with at least one further lever in the second Part housing mounted and connected by means of a transmission rod also with the shedding means.
  • the reference surface of the first sub-housing parallel to the axis of the control lever and the reference surface of the second sub-housing parallel to the axis of the further lever Due to this arrangement of the reference surfaces, the axis of the control lever and the axis of the further lever can be aligned exactly parallel to each other, so that control lever and second lever are aligned. This alignment is maintained even when changing the forces occurring and temperature changes.
  • the axis of the control lever is mounted in the region of the front end of the first part housing, which is associated with the second part housing.
  • the control lever can be arranged closer to a shed forming means, in particular a shank frame. It is thus easily possible to connect the shedding means with the control lever.
  • This arrangement also makes it possible to attach a lubricating system, such as lubricant lines or lubricating oil spray nozzles in the storage area of the control lever.
  • a lubricating system such as lubricant lines or lubricating oil spray nozzles
  • the bearing of the control lever which is normally subjected to high forces, can be well lubricated.
  • the arranged in this way storage the control lever are cooled in an advantageous manner.
  • the lubricating oil is preferably used at the same time for cooling the bearing.
  • the support structure has a third sub-housing, which is mounted on the side facing away from the second sub-housing on the first sub-housing.
  • the drive lever is stored in the third part housing.
  • the first sub-housing and the third sub-housing facing each other reference surfaces, wherein preferably the reference surface of the first sub-housing parallel to the axis of the control lever and the reference surface of the third sub-housing parallel to the axis of the drive lever.
  • a seal is provided between the reference surfaces in order to prevent oil, in particular lubricating oil, from passing between the reference surfaces.
  • control lever is connected by means of a coupling system with the drive lever, wherein a coupling rod is rotatably mounted at the level of a first articulation point of the control lever, which is located above in the first housing part, and a coupling rod is connected via an adjusting unit with the drive lever.
  • control lever is connected by means of a connection system with the other lever, wherein a connecting rod is articulated to a second articulation point of the control lever, wherein this articulation point is preferably located below in the first housing part.
  • At least one intermediate wall is provided between sub-housings, which protrudes from the bottom of the respective sub-housing upwards.
  • the oil present in the two adjoining subhousings in particular lubricating oil, can be separated from one another.
  • the intermediate wall is designed as a seal between the sub-housings.
  • the sub-housing are each provided with an intermediate wall. This makes it possible to separate the sub-housings from each other and to remove from each other, without oil can leak from the sub-housings.
  • pressure oil supply lines are guided to one or more of the arranged in the sub-housings axes.
  • the axles which are provided in the area of the bearings with outlet openings, then serve as an internal supply of lubricating oil to the bearings.
  • the lubricating oil supplied to the bearings may drip into the sub-housings.
  • oil is guided by means of extending through the rods and lever pressure oil ducts to articulation points, which connect the rods and levers with each other.
  • the support structure 1 according to the invention shown in Fig. 1 to 5 has a first part housing 10 which is attached to a side part 12 of a machine frame 11 of a loom. Furthermore, the support structure has a second sub-housing 24 which extends transversely to the side parts 12, 13 of the machine frame 11 of the loom and in the area between these side parts 12, 13 across the width A of the loom.
  • the second sub-housing 24, which can be supported in the vertical direction in the region of the side part 13, is connected to the sub-housing 10 in the region of the side part 12.
  • the first sub-housing 10 has a reference surface 36.
  • the second sub-housing 24 has a reference surface 37.
  • the two mentioned reference surfaces 36 and 37 face each other and abut each other when the two sub-housings 10, 24 are connected together. Between the two reference surfaces 36, 37, a seal 38 is provided, which consists for example of a thin strip, which has the contour of the reference surfaces 36, 37.
  • the second housing part 24 has a U-shaped profile, which is provided in the region of its bottom with a depression or a groove in which oil can be guided.
  • the first sub-housing 10, which may be manufactured as a casting, has two side walls 29, 30 and a bottom 31. The side walls and the bottom form a U-shaped profile delimited on both faces with plates forming attachment flanges.
  • an axle 3 is provided in the first part housing 10, on which a control lever 4 is mounted.
  • the control lever 4 is connected via a coupling rod 20 and an adjusting unit 21 with a drive lever 6.
  • the control lever 4 has a substantially T-shaped configuration.
  • the axis 3 is located at the height of the middle leg.
  • the upwardly projecting leg is connected via a hinge 5 with the coupling rod 20.
  • the downwardly projecting leg is connected via a hinge 7 with a connecting rod 22 which is articulated by means of a joint to a further, angular lever 9 which is rotatable about an axis 8.
  • connection between the coupling element 18 and the coupling rod 19 of the shaft frame 14 of a shedding means 2 can be structurally designed as that from the EP 520 540 A1 is known.
  • the drive lever 6 is mounted pivotably about an axis 27 and connected to a drive 23, for example an eccentric drive or cam drive or a dobby.
  • the joints 5, 7, 15 and 17 are formed as bearings of journal and a bearing, such as ball bearings or roller bearings.
  • the reference surface 36 of the housing part 10 extends parallel to the axis 3, on which the control lever 4 is mounted.
  • the reference surface 37 of the housing part 24 extends parallel to the axis 8, on which the further lever 9 is mounted.
  • the axis 3 of the control lever is arranged in the region of the end face 25 of the first sub-housing 10, which faces the second sub-housing 24.
  • On the second part of the housing 24 are in the Embodiment vertical guides 26 which guide the coupling elements 18.
  • the supporting structure 1 has a third partial housing 28, which is fastened to the partial housing 10.
  • the drive lever 6 is mounted on the axis 27.
  • the drive 23 is located in the sub-housing 28.
  • the first sub-housing 10 is provided with a reference surface 44, which faces a reference surface 45 of the third sub-housing 28. Between the two reference surfaces 44, 45, a seal 46 is arranged, which consists of a thin strip, which has the contour of the reference surfaces 44, 45.
  • the reference surface 44 is parallel to the axis 3 of the control lever 4.
  • the reference surface 45 is parallel to the axis 27 of the drive lever 6. If the sub-housing 10 and 28 are connected together so that the reference surfaces 44 and 45 abut each other, the axis 3 and run Axis 27 parallel to each other.
  • the third sub-housing 28 is fastened by means of screws 32 to the first sub-housing 10.
  • the first sub-housing 10 is fastened to the side part 12 of the machine frame 11 of the weaving machine by means of a fastening system which contains, for example, screws 33.
  • the second part housing 24 is fastened by means of screws 34 on the first part housing 10.
  • the fastening system for the sub-housing 10 includes a resilient connection 69 for attachment to the side part 12 of the machine frame 11 of the loom.
  • This elastic connection 69 contains the screw 33 which is screwed into the side part 12.
  • an elastic element 71 and between the sub-housing 10 and the side part 12 an elastic member 72 is arranged.
  • the elastic elements 71, 72 consist for example of rubber rings or disc springs or coil springs.
  • Such elastic connection 69 with which the sub-housing 10 is connected at at least four points with the side part 12, is also advantageous in a support structure, which is not composed of sub-housings, but only represents a one-piece housing.
  • a sub-housing 28 may be mounted with an eccentric drive or a cam drive or a dobby or any other type of drive.
  • an intermediate wall is provided between the first sub-housing 10 and the second sub-housing 24 that projects upwards from the floor area, which may be, for example, the seal 38,
  • the two sub-housings 10, 24 are separated from each other without leaking oil from a sub-housing.
  • an intermediate wall may be provided between the sub-housing 10 and the third sub-housing 28, which may also consist of the seal 46.
  • the reference surfaces 36, 37 and the reference surfaces 44, 45 parallel to each other and perpendicular to the longitudinal direction of the support structure 1.
  • the axis 3 of the control lever 4 is designed as a shaft 39 which is fixed by means of a clamping system 40 in the region of the end face 25 of the housing part 10 ,
  • a bearing not shown, is arranged, for example, a ball or roller bearing which receives the control lever 4.
  • a lubrication system 41 is provided (FIG. 1), which consists of a lubricant line, in particular an oil line 42, and spray nozzles 43.
  • the entire support structure 1 can be attached as a preassembled unit to the side part 12 of the machine frame 11. But it can also be done so that initially only the sub-housing 10 and the sub-housing 28 are assembled and then attached as a whole to the side part 12.
  • the sub-housing 24 can be attached to the sub-housing 10 before the sub-housing 10 is attached to the side part 12.
  • the assembled sub-housing 10, 24 and 28 form a structural unit, which also serves as a reservoir for oil 47, in particular for lubricating oil.
  • the level of the oil 47 can be selected.
  • the first sub-housing 10 and the second sub-housing 24 are each provided with partitions 48, 49, where they can be separated.
  • the intermediate walls 48, 49 remain after the separation respectively on their sub-housing 10, 24.
  • two intermediate walls 50, 51 are provided between the sub-housing 10 and the third sub-housing, in which the two sub-housings 10, 28 can be separated from each other, wherein the wall 50 in the sub-housing 10 and the wall 51 remains at the sub-housing 28.
  • the intermediate walls 50, 51 may be relatively high, while the intermediate walls 48, 49 must be chosen to be relatively low in order not to hinder the movement of the control lever 4.
  • a level for the lubricating oil 47 can be selected in the sub-housing 28, which is relatively high, while in the sub-housing 24, a level is selected which is relatively low.
  • a level for the lubricating oil 47 can be selected in the sub-housing 28, which is relatively high, while in the sub-housing 24, a level is selected which is relatively low.
  • the sub-housing 10 can be provided that the level, however, again reduced and is practically very low.
  • the two sub-housings 10, 28 are provided with a common cover 35 which, as can be clearly seen in particular from FIG. 5, extends through the side part 12 of the machine frame 11 of the loom up to the sub-housing 24 and closes in a dust-tight manner. After removing this common cover 35, the adjustment means 21 are easily accessible.
  • the drive lever 6 is mounted in a part housing 52, which also accommodates the axis 3 of the control lever 4.
  • the attachment of the housing part 52 on the side part 12th and the attachment of the sub-housing 24 to the sub-housing 52 for example, in the same manner as has been explained for the sub-housing 10 with reference to the embodiment 1 to 5.
  • the sub-housing 52 may be provided corresponding to the sub-housing 10 with an intermediate wall.
  • not only a further lever 9, but at least a third lever 53 is provided which is pivotable about an axis 8 corresponding and arranged as well as the axis 8 in the housing part 54 axis 54 and also hinged to the connecting rod 22 is.
  • Increasing the number of the shaft frame 14 raising and lowering lever 9, 53 on several levers is useful in weaving machines, which is woven with a large weaving width, and / or in which heavy fabrics are woven.
  • a coupling rod is provided between the drive lever 6 and the control lever 4, which is formed of two fixedly interconnected sub-rods 57, 58. These sub-rods 57, 58 are directed obliquely downwards and articulated in the vicinity of the joint 7 to the control lever 4 with the joint 5.
  • the sub-rod 57 can be released from the sub-rod 58 when dismantling the sub-housing 28, which contains the drive 23 and the drive lever 6.
  • the position of the setting unit 21 then does not have to be changed.
  • the connecting rod 22 has been replaced by a split into two sub-rods 59, 60 connecting rod.
  • a coupling element 66 is guided in each case in the vertical guides 26 which is coupled to a hook 67 which is located at the upper end of the shaft frame 14th located.
  • the coupling element 66 is provided with a thickened part 68, which engages in the hook 67.
  • spray nozzles 55 are provided for all bearings, which are supplied according to the spray nozzle 43 via supply lines with oil.
  • guides 73, 74 are provided for the shaft frame 14 on the housing part 24.
  • the guide 73 can be moved away from the shaft frame 14 in accordance with the direction of the arrow and can be returned to be able to remove the shaft frame 14.
  • the guides 73, 74 are mounted by means of holders 75, 76 at the top of the housing part 24.
  • the holders 75, 76 are detachably connected to the sub-housing 24 so that they are not mounted in the loom until the support structure has been placed in the weaving machine.
  • Fig. 11 it is provided that the axes of rotation 3, 8, 27 and the joints between the levers and the rods are supplied by means of pressure oil.
  • pressure oil lines 77, 78, 79 which are indicated by dash-dotted lines, are led from a schematically illustrated pressure oil source 80, for example an oil pump, to connections of the axles 3, 8 and 27.
  • the axles have outlet openings in the area of the bearings, so that the bearings are supplied with oil, which then drips down into the sub-housing.
  • oil passages 81, 82 are provided, which branch off from outlet openings of the axles 3, 8, 27 and lead to the individual joints.
  • the dimensions of the supporting structure 1 of the partial housing 10, the partial housing 24 and the partial housing 28 or of the partial housing 52 and the partial housing 24 can, of course, be selected as a function of the dimensions of the loom. This applies in particular to the length of the sub-housing 24.
  • the supporting structure 1 is designed so that above Preparing means for the insertion of weft threads, not shown, can be arranged so that the partial housings 10 or 52 can be arranged optionally on the right or left side of a weaving machine, ie the partial housing 10 or the partial housing 52 can also be attached to the side part 13 of the machine frame 11 of the loom are attached.
  • the support structure according to the invention can be used in different weaving machine types, for example in air jet looms, rapier looms, Greiferflexenwebmaschinen, water jet looms, projectile or other weaving machines.
  • the support structure according to the invention can also be retrofitted to existing looms.
  • the support structure according to the invention is easy to install in a weaving machine and also easily removable from a loom.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Looms (AREA)
  • Spinning Or Twisting Of Yarns (AREA)

Claims (18)

  1. Structure porteuse (1) pour un système de formation de foule d'un métier à tisser, qui présente un bâti de machine (11) avec deux parties latérales (12, 13), entre lesquelles des moyens de formation de foule (2) peuvent être placés, pour lesquels la structure porteuse (1) contient un système constitué de tiges et de leviers, dont un boîtier assemblé à partir d'au moins deux boîtiers partiels (10, 28, 24, 52, 24) est prévu pour le logement du système constitué de tiges et de leviers, caractérisée en ce qu'un premier boîtier partiel (10, 52) peut être disposé dans la zone du côté extérieur d'une partie latérale (12) et qu'un second boîtier partiel (24) peut être disposé dans la zone entre les deux parties latérales et transversalement aux parties latérales.
  2. Structure porteuse selon la revendication 1, caractérisée en ce que le premier boîtier partiel (10, 52) est doté d'un système de fixation (33, 69) pour le placement sur une partie latérale (12) du métier à tisser, et en ce que le second boîtier partiel (24) est fixé sur le premier boîtier partiel.
  3. Structure porteuse selon la revendication 2, caractérisée en ce que le système de fixation (33, 69) contient des éléments (71, 72) élastiques pour le placement du premier boîtier partiel (10, 52) sur la partie latérale (12) du métier mécanique.
  4. Structure porteuse selon l'une quelconque des revendications 1 à 3, caractérisée en ce que les boîtiers partiels (10, 24, 28; 52, 24) et le système logé là-dedans constitué de tiges et de leviers forment une unité modulaire, qui peut être montée dans un métier à tisser ou peut être enlevée de ce métier à tisser.
  5. Structure porteuse selon l'une quelconque des revendications 1 à 4, caractérisée en ce que le second boîtier partiel (24) a une longueur qui correspond approximativement à la distance (A) entre les parties latérales (12, 13) du métier à tisser.
  6. Structure porteuse selon l'une quelconque des revendications 1 à 5, caractérisée en ce que le premier boîtier partiel (10, 52) et le second boîtier partiel (24) sont dotés de surfaces de référence (36, 37) tournées l'une vers l'autre.
  7. Structure porteuse selon l'une quelconque des revendications 1 à 6, caractérisée en ce que le second boîtier partiel (24) contient un profilé en U qui forme le fond et deux parois latérales du boîtier partiel.
  8. Structure porteuse selon l'une quelconque des revendications 1 à 7, caractérisée en ce qu'un fond (31) et deux parois latérales (29, 30) du premier boîtier partiel (10) sont un élément constitutif d'un profilé.
  9. Structure porteuse selon l'une quelconque des revendications 1 à 8, caractérisée en ce que dans le premier boîtier partiel (10, 52) est logé un levier de commande (4) de façon à pouvoir basculer autour d'un axe (3), lequel levier est relié d'une part au moyen d'un système d'accouplement (20, 21) à un levier d'entraînement (6) et d'autre part au moyen d'une tige de transmission (16) à un moyen de formation de foule (2) et au moyen d'un système de liaison (22; 59, 60) à au moins un autre levier (9, 53), qui est logé dans le second boîtier partiel (24) et est relié au moyen d'une tige de transmission (16) également au moyen de formation de foule (2).
  10. Structure porteuse selon la revendication 9, caractérisée en ce que la surface de référence (36) du premier boîtier partiel (10, 52) se déroule parallèlement à l'axe (3) du levier de commande (4) et la surface de référence (37) du second boîtier partiel (24) se déroule parallèlement à l'axe (8) de l'autre levier (9).
  11. Structure porteuse selon l'une quelconque des revendications 1 à 10, caractérisée en ce que l'axe (3) du levier de commande (4) est disposé dans la zone de l'extrémité avant (25) du premier boîtier partiel (10, 52), qui est tourné vers le second boîtier partiel (24).
  12. Structure porteuse selon l'une quelconque des revendications 1 à 11, caractérisée en ce qu'un troisième boîtier partiel (28) est prévu, lequel est placé sur le côté, opposé au second boîtier partiel (24), sur le premier boîtier partiel (10).
  13. Structure porteuse selon la revendication 12, caractérisée en ce que le premier boîtier partiel (10) et le troisième boîtier partiel (28) présente des surfaces de référence (44, 45) tournées l'une vers l'autre, dont, de préférence, la surface de référence (44) du premier boîtier partiel se déroule parallèlement à l'axe (3) du levier de comande (4) et la surface de référence (45) du troisième boîtier partiel se déroule parallèlement à l'axe (27) du levier d'entraînement (6) disposé là-dedans.
  14. Structure porteuse selon l'une quelconque des revendications 1 à 13, caractérisée en ce que entre les boîtiers partiels (10, 24, 28 ; 52, 24) une paroi intermédiaire (48, 49 ; 50, 51) est prévue qui dépasse du fond du boîtier partiel concerné vers le haut.
  15. Structure porteuse selon l'une quelconque des revendications 1 à 14, caractérisée en ce que dans le boîtier (10, 24, 28 ; 52, 24) en plusieurs parties plusieurs systèmes constitués de tiges et de leviers sont disposés de façon juxtaposée, afin d'entraîner plusieurs moyens de formation de foule (2) disposés parallèlement entre eux.
  16. Structure porteuse selon l'une quelconque des revendications 1 à 15, caractérisée en ce que des conduites d'huile de pression, qui sont dotées d'ouvertures de sortie dans la zone de paliers, sont guidées vers un ou plusieurs axes (3, 8, 27) disposés dans les boîtiers partiels (10, 24, 28 ; 52, 24).
  17. Structure porteuse selon la revendication 16, caractérisée en ce que des canaux d'huile de pression sont guidés à partir des axes (3, 8, 27) à l'intérieur des tiges et leviers vers des articulations qui relient les tiges et leviers entre eux.
  18. Structure porteuse selon l'une quelconque des revendications 1 à 17, caractérisée en ce que des supports (75, 76) pour des guides (73, 74) pour les moyens de formation de foule (2) pouvant être soulevés et abaissés sont placés sur le second boîtier partiel (24) à disposer entre les parties latérales (12, 13) d'un métier à tisser.
EP04719962A 2003-03-12 2004-03-12 Structure porteuse d'un systeme de formation de foule d'un metier mecanique Expired - Lifetime EP1606348B1 (fr)

Applications Claiming Priority (7)

Application Number Priority Date Filing Date Title
BE2003/0155A BE1015411A3 (nl) 2003-03-12 2003-03-12 Draagstructuur voor een weefmachine.
BE200300155 2003-03-12
BE200300210 2003-04-03
BE2003/0210A BE1015455A6 (nl) 2003-04-03 2003-04-03 Een draagstructuur voor een weefmachine.
DE2003118806 DE10318806A1 (de) 2003-04-17 2003-04-17 Antrieb für Webschäfte einer Webmaschine
DE10318806 2003-04-17
PCT/EP2004/002590 WO2004081113A1 (fr) 2003-03-12 2004-03-12 Structure porteuse d'un systeme de formation de foule d'un metier mecanique

Publications (2)

Publication Number Publication Date
EP1606348A1 EP1606348A1 (fr) 2005-12-21
EP1606348B1 true EP1606348B1 (fr) 2007-08-08

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Application Number Title Priority Date Filing Date
EP04719962A Expired - Lifetime EP1606348B1 (fr) 2003-03-12 2004-03-12 Structure porteuse d'un systeme de formation de foule d'un metier mecanique

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EP (1) EP1606348B1 (fr)
AT (1) ATE369399T1 (fr)
DE (1) DE502004004572D1 (fr)
WO (1) WO2004081113A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104178889B (zh) * 2014-09-19 2015-12-16 山东日发纺织机械有限公司 一种可伸缩的织机专用储纬器架子
EP4151787A1 (fr) 2021-09-15 2023-03-22 Picanol Procédé permettant de déterminer une configuration d'un mécanisme d'entraînement avec un élément mobile, élément mobile, et système

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2679264B1 (fr) * 1991-07-15 1993-12-03 Staubli Ets Mecanisme de tirage a leviers oscillants interpose entre une mecanique d'armure et les cadres de lisses d'un metier a tisser.
FR2733518B1 (fr) * 1995-04-26 1997-06-27 Staubli Sa Ets Bati-support pour mecanique d'armure
FR2734001B1 (fr) * 1995-05-12 1997-06-27 Staubli Sa Ets Mecanique d'armure du type rotatif pour la formation de la foule sur les machines a tisser

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Publication number Publication date
ATE369399T1 (de) 2007-08-15
EP1606348A1 (fr) 2005-12-21
DE502004004572D1 (de) 2007-09-20
WO2004081113A1 (fr) 2004-09-23

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