EP0015223B1 - Vorrichtung zum Binden von Drahtspulen - Google Patents

Vorrichtung zum Binden von Drahtspulen Download PDF

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Publication number
EP0015223B1
EP0015223B1 EP80630006A EP80630006A EP0015223B1 EP 0015223 B1 EP0015223 B1 EP 0015223B1 EP 80630006 A EP80630006 A EP 80630006A EP 80630006 A EP80630006 A EP 80630006A EP 0015223 B1 EP0015223 B1 EP 0015223B1
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EP
European Patent Office
Prior art keywords
coil
tie
machine
point
support
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
Application number
EP80630006A
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English (en)
French (fr)
Other versions
EP0015223A1 (de
Inventor
Hubert Elineau
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.)
Cessione jubert Elineau
Original Assignee
MECANARBED Sarl
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 MECANARBED Sarl filed Critical MECANARBED Sarl
Priority to AT80630006T priority Critical patent/ATE2946T1/de
Publication of EP0015223A1 publication Critical patent/EP0015223A1/de
Application granted granted Critical
Publication of EP0015223B1 publication Critical patent/EP0015223B1/de
Expired legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B13/00Bundling articles
    • B65B13/18Details of, or auxiliary devices used in, bundling machines or bundling tools
    • B65B13/24Securing ends of binding material
    • B65B13/28Securing ends of binding material by twisting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B27/00Bundling particular articles presenting special problems using string, wire, or narrow tape or band; Baling fibrous material, e.g. peat, not otherwise provided for
    • B65B27/06Bundling coils of wire or like annular objects

Definitions

  • the present invention relates to a machine for binding the coils of metal wire, manufactured in particular in metallurgical ones.
  • Tying devices are known in which clamps can be moved parallel to the axis of the coil, outside and inside thereof, so as to form a loop around the coil with a wire. tying, the two ends of this loop then being twisted.
  • French patent 1,571,118 thus relates to a machine for compressing and binding laminated products.
  • the pressing of the rollers into a bundle takes place between two hydraulically actuated plates.
  • U-shaped branch guides for a link are introduced on both sides of the roller pack.
  • the link is placed by guides around the package using a coaching device.
  • a coaching device When the end of the link arrives in a ligature head, it is held there and by reversing the movement of the training device, the link is pulled out of the guides and applied against the package.
  • the ligature head then seals the link.
  • Such a procedure has the disadvantage of operating the tension once the laying of the link around the package is finished.
  • the use of troughs serving as a guide leads to the wear of parts and to the work hardening of the link.
  • This carriage is movable in translation parallel to the axis of the coil, and means are provided for passing one arm externally to the coil, and the other arm internally to this coil.
  • This arrangement allows the link to pass over the internal surface and over the external face of the wall of the coil.
  • tie arms are satisfactory in most cases. However, these arms risk being damaged when the coil is irregular (which is often the case), poorly positioned opposite these ligating arms, or when this coil comprises wires projecting into the internal cylindrical space of the coil.
  • the twisting means of this machine comprise a mandrel movable in translation and in rotation, and comprising a head arranged to receive the two ends of the link, as well as a counterplate disposed opposite the head of the mandrel to maintain the link during rotation of the mandrel.
  • This twisting device makes it possible to tighten the link between the mandrel and the counter plate, the latter remaining fixed during the twisting.
  • this twisting device does not allow very effective tightening of the links against the wall of the coil.
  • the object of the invention is to remedy the drawbacks of known devices, by creating a relatively simple construction machine which allows the coiling of coils of metal wire in a fast and safe manner.
  • this machine comprising means for placing links around the coil, and means for twisting the free ends of these links, is characterized in that it comprises a substantially planar support comprising a recess, a guide- link defining a closed path extending around this recess, means for moving the support towards the coil in order to engage the wall of this coil in the aforementioned recess of the support, means for fixing one end of the link at a point located between the bottom of the support recess and the adjacent end of the wall of the spool, in that the link guide comprises means for hooking the link at a point located near the above-mentioned fixed point and means for cause this point of attachment of the link along the closed path of the link guide, and in that means are provided for cutting this link at a point located between the wall of the coil and the aforementioned attachment point of the link.
  • the link is driven by the link guide, along the path which extends all around the wall of the coil.
  • the attachment point of the link returns to its initial position, so that this link forms a loop around the wall of the coil. It then suffices to cut this link downstream from its point of attachment to the link guide, then to twist the two free ends of the link against the adjacent end of the wall of the coil.
  • the aforementioned support and its link guide are not likely to be damaged during the translation of the recess of this support relative to the wall of the coil.
  • the link guide defines a circular path around the wall of the coil. Such a circular route can be achieved using simple means.
  • the means for hooking and driving the link along the aforementioned circular path comprise a ring mounted in rotation about an axis perpendicular to the support, this ring having an opening which is located opposite the 'entry of the recess, when this ring is in the rest position, and this ring carries at least one roller for the attachment of the link.
  • the opening of this ring allows the engagement of the wall of the coil in the recess of the support.
  • This ring preferably carries several rollers which make it possible to guide the link upstream from its point of attachment to the ring, along the circular path determined by the ring.
  • the machine according to the invention comprises means for rotating the coil engaged in the recess of the support.
  • the machine comprises two substantially planar supports each comprising a link guide, these supports being arranged substantially in a diametral plane of the coil.
  • the machine according to the invention also comprises means for cutting the ends of the link and for twisting these ends against the wall of the coil.
  • the means for cutting the link are carried, preferably, by a rotary mandrel whose twisting end has a diametrical groove adapted to receive the ends of the link.
  • This diametral groove is used to twist these ends of the wire.
  • the twisting means further comprise two plates arranged on either side of the axis of the mandrel, and movable towards this axis, in a plane situated between the twisting end of the mandrel and the wall of the coil, this plane passing substantially through the crossing point of the ends of the link.
  • the machine for binding spools of metal wire advantageously comprises, in combination, means for compacting the spool before it is tied up.
  • These compacting means comprise two pressing plates movable axially towards the coil.
  • these two pressing plates comprise means for advancing them towards the opposite ends of the coil at identical speeds and symmetrically with respect to this coil.
  • the machine according to the invention is a compactor-ligator, that is to say that it comprises, in combination, means for compacting coils of metal wire, and means for laying links around these coils.
  • the coil 1 of metal wire for example of wire, is brought, carried by the hook 2 of a conveyor (not shown), between the space 3 comprised between two vertical pressure plates 4 and 5, mounted on carriages movable in translation by rollers 4a and 5a.
  • the coil 1 Before compaction, the coil 1 has a longitudinal trapezoidal section Longitudinal section of the coil shown in FIG. 1) the fact that the turns of this coil are relatively loose.
  • the pressing plates 4 and 5 are associated with means making it possible to advance them at identical speeds and symmetrically with respect to the coil 1.
  • these means comprise two identical hydraulic cylinders 6 and 7, fixed to the frame 8 of the machine.
  • the rods 9 and 10 of these jacks 6 and 7 are made integral respectively with the pressure plates 4 and 5.
  • the pistons 11 and 12 are offset longitudinally with respect to their respective chambers 13, 14, so that when the rod 9 or 10 of one of the jacks 6 or 7 is in the retracted position, the rod 9 or 10 of the other cylinder is in the released position.
  • the displacement of the pistons 11 and 12 is carried out in opposite direction, one with respect to the other, by volume transfer of the hydraulic fluid 16 contained in one of the chambers 13 or 14 of the jacks 6 or 7 to the other chamber 13 or 14 of these jacks.
  • the compactor according to the invention thus makes it possible to significantly increase the production rate of the compacted coils, without additional energy consumption.
  • the compactor according to the invention also makes it possible to obtain perfect regularity in the compaction of the coils 1, which is likely to considerably facilitate the subsequent ligating operations.
  • the compactor according to the invention also has the advantage of allowing the compaction of the reel 1, without it being necessary to remove the reel 1 from the hook 2. In fact, during this compaction, this hook 2 can engage in recesses 4b and 5b formed behind the pressure plates 4 and 5 (see fig. 3).
  • the machine according to the invention further comprises means for compacting the coil 1 in two successive compression stages, separated by a stage for decompressing the coil 1.
  • the coils are compacted under a pressure corresponding to a thrust of 30 to 50 tonnes exerted by the pressing plates 4 and 5, then these coils 1 are decompressed to obtain an extension of their length by approximately 10% .
  • the coils 1 are then again compacted at the aforementioned compacting pressure.
  • the fully compacted coil is shown in fig. 1 by part 1a.
  • these means for placing links around the coil 1 firstly comprise a plane support 20 movable in translation relative to the coil 1. In the inactive position, this plane support 20 is housed at the rear of the pressure plate 4, as shown in fig. 1.
  • this planar support 20 The translation of this planar support 20 towards the reel 1 and towards the pressure plate 5 is controlled by a hydraulic cylinder 21 fixed to the frame 8 of the machine.
  • this planar support 20 can be moved in a horizontal plane passing substantially through the axis of the coil 1.
  • the planar support 20 comprises two identical guide guides 22, 23 defining circular paths.
  • link guides 22, 23 extend around two recesses 24, 25, substantially rectangular, mutually parallel, to the axis of the coil 1 and to the direction of movement of the planar support 20.
  • link guides 22 and 23 The detailed structure of the link guides 22 and 23 is shown in detail in FIGS. 5 and 7.
  • each link guide 22 or 23 comprises a series of rollers 27 regularly distributed around the circular path defined by the link guide 22 or 23. These rollers 27 are fixed to a split ring 28, the slot defining an opening 29 which is located opposite the entry of the recess 24 of the support 20, when the link guide 22 is in the inactive position.
  • This split ring 28 is relatively thin and it rests on the support 20.
  • Gears 30, 31, 32 meshing with each other and with the periphery 33 of the ring 28 make it possible to drive the latter in rotation about its axis 0.
  • the machine comprises, on the other hand, means for fixing the link 36 at a point A located between the bottom 24a of the recess 24, and the adjacent end 26a of the wall 26 of the coil 1.
  • this fixed point A is situated behind the axis XX 'relative to the direction of rotation of the ring 28 (see arrow F in FIG. 5).
  • This fixed point A can be obtained by a clamp 37 (see fig. 9), maintaining the end A of the link 36.
  • the link guide 22 also includes means for hooking the link 36 at a point B, located opposite the fixed point A, relative to the axis XX '.
  • these attachment means are constituted by the roller 27a, the link 36 being partially wound around this roller 27a.
  • the link 36 is stretched between the fixed point A, around the roller 27a and around three pulleys 38, by means of a tensioner 39.
  • This tensioner 39 comprises a fixed disc 40 and a wheel 41 rotatably mounted about an axis YY 'centered on the disc 40.
  • the link 36 is wound in a clockwise direction around this pulley 40, then is wound in a loop in opposite directions on a series of rollers 42 arranged on the periphery of the wheel 41.
  • the tension exerted on the link 36, between the tensioner 39 and the fixed point A, is produced by means of a spiral spring or the like (not shown), inserted between the disc 40 and the wheel 41.
  • the support 20 comprises two recesses 25 and 25, and two link guides 22 and 23, juxtaposed, making it possible to simultaneously place two links 36 around the wall 26 of the coil 1.
  • the link guides 22 and 23 are located in planes slightly offset with respect to the axis ZZ ', so as to allow a partial superposition of the link guides 22 and 23, and consequently, to reduce the size in support width 20.
  • rollers 43 are carried by arms 44 pivotally mounted on axes 45, 46, so as to allow the position of the coil 1 relative to the recesses 24 and 25 of the support 20 to be correctly adjusted.
  • the support 20 is then moved towards the coil 1 so that the wall 26 of this coil is completely engaged in the recesses 24 and 25 of the support 20.
  • the link 36 is placed around the pulleys 38, then around the roller 27a of the ring 28, then the end of the link is fixed at A, by means of the clamp 37.
  • the ring 28 is subjected to a complete rotation around its center 0, in the direction of the arrow F (see fig. 5).
  • the link 36 attached to the roller 27a, is thus pulled around the wall 26 of the coil 1 (see intermediate dotted position of the link 36, in FIG. 5).
  • the portion 36a of the link 36 between the attachment roller 27a and the pulley 38 is wound around the rollers 27 preceding the roller 27a. These rollers 27 thus guide the link 36 along the circular path defined by the ring 28.
  • This mandrel 50 is aligned substantially in the axis XX ′ of the section of the wall 26 of the coil 1, which is surrounded by the link 36, and with the crossing point D of the ends 36c and 36d of the link 36.
  • This rotary mandrel laterally carries an arm 51 comprising a knife 52 which can come into contact with the part 36c of the link 36, during the rotation of this mandrel 50.
  • a fixed knife 53 serves as a support for the portion 36c of the link 36, when the knife 52 is supported on the latter.
  • the mandrel 50 comprises, on its end 50a, adjacent to the end of the wall 26 of the coil, one or more diametrical grooves 54 capable of receiving these ends 36c and 36d of the link 36, when the mandrel 50 is moved towards the crossing point D of its ends 36c and 36d of the link 36.
  • the twisting device further comprises two plates 55, disposed on either side of the axis XX 'of rotation of the mandrel 50, and movable towards this axis in a plane located between the head 50a of the mandrel 50, and the wall 26 of the coil 1. This plane also passes through the crossing point D of the ends 36c and 36d of the link 36.
  • the different operating sequences of the machine namely the correct positioning of the coil 1 by means of the pivoting arms 44 carrying the rollers 43, the translation of the support 20 by means of the jack 21, the rotation of the rings 28 of the guides -links 22 and 23, the movement of the clamp 37 towards the fixed point A, the successive rotations of the coil 1, can be controlled in a fully automatic manner, by known means.
  • the link guides 22 and 23 are not liable to be damaged during the relative engagement of the wall 26 of the coil 1, and of the recesses 24 and 25 of the support 20, even when certain turns of the coil 1 protrude into the inner cylindrical space of this coil.
  • the construction of the assembly constituted by the support 20 and of the link guides 22 and 23 is simple and robust, given, in particular, that the support 20 remains fixed during the whole operation of tying the reel.
  • the link 36 is not likely to seize, or to break, or to be deteriorated during its travel on the link guides 22 and 23, since the link 36 describes a circular route devoid of sharp angles, and that this link 36 undergoes practically no friction on the rollers 27.
  • the cutting and twisting device 50 comprising the cutting arm 51 and the movable plates 55, makes it possible to execute tight twists, properly applied against the wall 26 of the coil 1.
  • the links thus produced do not therefore risk not to relax, which is likely to pose considerable difficulties during the transport of the coils 1.
  • the link guides 22 and 23 could define a closed non-circular route, provided that the mode of movement of the roller 27 or other attachment or guide system for the link 36 is adapted to the shape of such a route. .
  • the support 20 carrying the link guides 22 and 23 could be rotated about the axis of the coil 1, in order to be able to place several links 36, angularly spaced around this coil, without having to rotate this coil.
  • the support 20 could be fixed, in which case the coil 1 itself could be moved towards this support 20, to engage the wall 26 of this coil 1 in the recesses 24 and 25 of the support 20.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Basic Packing Technique (AREA)
  • Winding, Rewinding, Material Storage Devices (AREA)
  • Insulation, Fastening Of Motor, Generator Windings (AREA)
  • Wire Bonding (AREA)

Claims (16)

1. Vorrichtung zum Binden von Metalldrahtspulen, welche Mittel zum Legen der Binden (36) um die Spule (1) umfasst sowie Mittel, um die freien Enden der Binden (36) zu verdrillen und abzuschneiden, dadurch gekennzeichnet, dass sie einen vornehmlich flachen Träger (20) begreift, der mit wenigstens einer vornehmlich U-förmigen Aussparung (24) versehen ist, ein Bindeführungselement (22), das einen geschlossenen Weg um die Aussparung (24) bestimmt, Mittel (21), um den Träger (20) zur Spule (1) zu bewegen, um die Wand (26) der Spule in die Aussparung (24) des Trägers (20) einzuführen, Mittel, um ein Ende der Binde an einem Punkt (A) zu befestigen, der sich zwischen dem Boden der Aussparung (24) des Trägers und dem anliegenden Spulen-Wand-Ende befindet, dass das Bindeführungselement (22) Mittel begreift, um die Binde (36) an einem Punkt (B), der nahe bei dem genannten Fixpunkt liegt, zu befestigen, und Mittel (27), um den Befestigungspunkt der Binde (36) längs des geschlossenen, vom Bindeführungselement (22) bestimmten Weges mitzunehmen, und dass Mittel (52, 53) vorgesehen sind, um die Binde (36) an einem Punkt (C), der sich zwischen der Wand der Spule (1) und dem genannten Befestigungspunkt befindet, durchzuschneiden.
2. Vorrichtung gemäss Anspruch 1, dadurch gekennzeichnet, dass das Bindeführungselement (22) einen kreisförmigen Weg um die Wand der Spule (1) bestimmt.
3. Vorrichtung gemäss Anspruch 2, dadurch gekennzeichnet, dass die Mittel zur Befestigung der Binde (36) und zum Mitnehmen derselben längs des besagten kreisförmigen Weges einen Ring (28) begreifen, welcher drehbar um eine senkrecht zum Träger (20) befindlichen Achse (0) angeordnet ist, wobei der Ring (28) eine Öffnung (29) vorweist, die sich im Ruhestand gegenüber dem Eingang der Aussparung (24) befindet, und dass dieser Ring (28) wenigstens eine Rolle (27a) umfasst, welche ein Festhalten der Binde (36) ermöglicht.
4. Vorrichtung gemäss Anspruch 3, dadurch gekennzeichnet, dass der Ring (28) mehrere Rollen (27) trägt, welche die Binde (36) oberhalb seines Befestigungspunktes (B) an dem Ring (28) führen.
5. Vorrichtung gemäss einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass sie Mittel zum Drehen der sich in der Aussparung (24) des Trägers (20) befindlichen Spule (1) umfasst.
6. Vorrichtung gemäss einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass sie zwei vornehmlich flache Träger (20) umfasst, welche jeder ein Bindeführungselement (22, 23) begreift, wobei diese Träger grundsätzlich in einer Diametralebene der Spule (1) angeordnet sind.
7. Vorrichtung gemäss Anspruch 6, dadurch gekennzeichnet, dass die zwei Träger (20) in einer Richtung, welche senkrecht zur Diametralebene der Spule (1) ist, leicht versetzt angeordnet sind.
8. Vorrichtung gemäss einem der Ansprüche 5 bis 7, dadurch gekennzeichnet, dass die Mittel zum Drehen der Spule (1) zwei Walzen (43) begreifen, auf denen die Spule (1) ruht.
9. Vorrichtung gemäss Anspruch 8, dadurch gekennzeichnet, dass die Walzen (43) auf schwenkbaren Armen (44) befestigt sind, welche ein Positionieren der Spule (1) relativ zum Träger (20) des oder der Bindeführungselemente (22, 23) erlauben.
10. Vorrichtung gemäss einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass der Fixpunkt (A) eines der Enden der Binde (36) symmetrisch zum Befestigungspunkt (B) der Binde (36) auf dem Bindeführungselement (22) ist, bezogen auf eine Ebene, welche die Aussparung des Trägers (20) mittig schneidet und zum letztgenannten senkrecht ist.
11. Vorrichtung gemäss einem der Ansprüche 1 bis 10, dadurch gekennzeichnet, dass sie Mittel (39) umfasst, um die Binde (36) oberhalb des Befestigungspunktes (B) an dem Bindeführungselement (22) zu spannen.
12. Vorrichtung gemäss einem der Ansprüche 1 bis 11, dadurch gekennzeichnet, dass die Mittel (52, 53) zum Abschneiden der Binde (36) von einer drehbaren Spindel (50) getragen werden, deren Stirnende eine diametrale Nut (54) vorweist, wobei die Nut die Enden (36c, 36d) der sich zwischen dem Wand-Ende (26a) der Spule, dem Befestigungspunkt (B) des Bindeführungselementes (22) und dem besagten Fixpunkt (A) befindlichen Binde aufnehmen kann.
13. Vorrichtung gemäss Anspruch 12, dadurch gekennzeichnet, dass sie ausserdem zwei Platten (55) begreift, welche auf beiden Seiten der Achse der Spindel (50) und in einer Ebene beweglich zu dieser hin angeordnet sind, wobei diese Ebene sich zwischen dem Stirnende (50a) der Spindel (50) und der Wand (26) der Spule (1) befindet und den Schneidpunkt (D) der Enden (36c, 36d) der Binde (36) durchquert.
14. Vorrichtung gemäss einem der Ansprüche 1 bis 13, welche ausserdem Mittel zum Verdichten der Spule (1) vor dem Binden umfasst, wobei diese Mittel zwei axial zur Spule (1) hin bewegliche Druckplatten (4, 5) begreifen, dadurch gekennzeichnet, dass sie Mittel umfasst, um die zwei Platten (4, 5) mit identischer Geschwindigkeit relativ zur Spule (1) zu bewegen.
15. Vorrichtung gemäss Anspruch 14, dadurch gekennzeichnet, dass die besagten Mittel zwei identische hydraulische Zylinder (6, 7) umfassen, wobei deren Kolben (11, 12) derart längsversetzt sind, dass, wenn die Stange (9 oder 10) des einen Kolbens in eingefahrener Position ist, die Stange (10 oder 9) des anderen sich in ausgefahrener Position befindet, und dass eine Leitung (15) die Enden (13a, 13b) der die Stangen beinhaltenden Hydraulikzylinderkammern verbindet, um ein Bewegen der Kolben (11, 12) der zwei Zylinder (6, 7) mittels wechselweisem Übergang von hydraulischer Flüssigkeit von einem hydraulischen Zylinder (6) zum andern (7) zu erlauben.
16. Vorrichtung gemäss einem der Ansprüche 14 oder 15, dadurch gekennzeichnet, dass sie Mittel zum Verdichten der Spule (1) in zwei aufeinanderfolgenden Kompressionsstufen umfasst, wobei diese von einer Kompressionsverminderungsstufe getrennt sind.
EP80630006A 1979-02-22 1980-02-06 Vorrichtung zum Binden von Drahtspulen Expired EP0015223B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AT80630006T ATE2946T1 (de) 1979-02-22 1980-02-06 Vorrichtung zum binden von drahtspulen.

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR7904535 1979-02-22
FR7904535A FR2429150A1 (fr) 1979-02-22 1979-02-22 Machine pour lier les bobines de fil metallique

Publications (2)

Publication Number Publication Date
EP0015223A1 EP0015223A1 (de) 1980-09-03
EP0015223B1 true EP0015223B1 (de) 1983-04-06

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP80630006A Expired EP0015223B1 (de) 1979-02-22 1980-02-06 Vorrichtung zum Binden von Drahtspulen

Country Status (9)

Country Link
US (1) US4301720A (de)
EP (1) EP0015223B1 (de)
JP (1) JPS55154207A (de)
AT (1) ATE2946T1 (de)
CA (1) CA1124635A (de)
DE (1) DE3062566D1 (de)
ES (1) ES488099A1 (de)
FR (1) FR2429150A1 (de)
PT (1) PT70605A (de)

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DE10017908A1 (de) * 2000-04-11 2001-11-08 Schmitz Soehne Gmbh Maschf Verfahren und Drahtbundbindemaschine zum Abbinden von auf einem Tisch aufliegenden Drahtbunden

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LU84025A1 (fr) * 1982-03-19 1983-11-17 Mecan Arbed Dommeldange S A R Installation pour le ligaturage de bobines de fil
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DE69814389T2 (de) * 1998-10-16 2004-03-25 Maillefer S.A. Vorrichtung zum Festhalten des freien Endes und Entladen eines Bündels eines langgestreckten Elementes
IT1302792B1 (it) * 1998-11-04 2000-09-29 Danieli & C Ohg Sp Dispositivo per estrarre e movimentare matasse di prodottilaminati avvolte da una corrispondente rocchettatrice
DE69937844D1 (de) * 1999-01-29 2008-02-07 Kohan Kogyo Co Ltd Verpackungsvorrichtung
US6935665B2 (en) 2002-03-29 2005-08-30 L & P Property Management Co. Apparatus and method for spooling of wire cores
US6701831B2 (en) 2002-03-29 2004-03-09 L & P Property Management Company Apparatus and method for automated binding and spooling of wire cores
ATE375920T1 (de) * 2003-12-17 2007-11-15 Michelin Soc Tech Verfahren und vorrichtung zum konditionieren von reifen in stapel
ITRN20050028A1 (it) * 2005-04-20 2006-10-21 Mazzoni & Mazzanti Srl Un metodo per confezionare una bobina toroidale di un elemento allungato, mediante legatura con un laccio di legatura.

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FR2186000A5 (de) * 1972-05-23 1974-01-04 Elineau Hubert
JPS4942036A (de) * 1972-08-25 1974-04-20
FR2306881A1 (fr) * 1975-04-07 1976-11-05 Botalam Machine de compactage et de liage de couronnes
SU560793A1 (ru) * 1976-02-25 1977-06-05 Предприятие П/Я А-7697 Устройство дл группировани стержнеобразных изделий

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10017908A1 (de) * 2000-04-11 2001-11-08 Schmitz Soehne Gmbh Maschf Verfahren und Drahtbundbindemaschine zum Abbinden von auf einem Tisch aufliegenden Drahtbunden
DE10017908C2 (de) * 2000-04-11 2002-03-07 Schmitz Soehne Gmbh Maschf Verfahren und Drahtbundbindemaschine zum Abbinden von auf einem Tisch aufliegenden Drahtbunden

Also Published As

Publication number Publication date
JPS55154207A (en) 1980-12-01
FR2429150B1 (de) 1982-07-02
ATE2946T1 (de) 1983-04-15
DE3062566D1 (en) 1983-05-11
US4301720A (en) 1981-11-24
PT70605A (fr) 1980-01-01
CA1124635A (en) 1982-06-01
ES488099A1 (es) 1980-09-16
EP0015223A1 (de) 1980-09-03
FR2429150A1 (fr) 1980-01-18

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