EP1588813B1 - Appareil de brochage avec dispositif d' alimentation pour au moins un fil à brocher sans fin - Google Patents

Appareil de brochage avec dispositif d' alimentation pour au moins un fil à brocher sans fin Download PDF

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Publication number
EP1588813B1
EP1588813B1 EP05103016A EP05103016A EP1588813B1 EP 1588813 B1 EP1588813 B1 EP 1588813B1 EP 05103016 A EP05103016 A EP 05103016A EP 05103016 A EP05103016 A EP 05103016A EP 1588813 B1 EP1588813 B1 EP 1588813B1
Authority
EP
European Patent Office
Prior art keywords
stitching
wire
mode
stitcher according
stitcher
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.)
Not-in-force
Application number
EP05103016A
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German (de)
English (en)
Other versions
EP1588813A1 (fr
Inventor
Wolfgang Melchior
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.)
Koenig and Bauer AG
Original Assignee
Koenig and Bauer AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from DE102004040851A external-priority patent/DE102004040851A1/de
Priority claimed from DE102004040852A external-priority patent/DE102004040852B4/de
Application filed by Koenig and Bauer AG filed Critical Koenig and Bauer AG
Publication of EP1588813A1 publication Critical patent/EP1588813A1/fr
Application granted granted Critical
Publication of EP1588813B1 publication Critical patent/EP1588813B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42BPERMANENTLY ATTACHING TOGETHER SHEETS, QUIRES OR SIGNATURES OR PERMANENTLY ATTACHING OBJECTS THERETO
    • B42B4/00Permanently attaching together sheets, quires or signatures by discontinuous stitching with filamentary material, e.g. wire

Definitions

  • the invention relates to a stapler with a feeding device for feeding at least one endless stitching wire.
  • the DD 100 437 shows a feeding device for feeding at least one endless stitching wire from a staple wire supply moved as a whole to a stapler having a first conveying device for continuously conveying the stapling wire from the stapling wire supply and a second conveying device for conveying the stapling wire.
  • BE 554 705 A discloses a feeding device with a loop formed as an intermediate supply of the supplied material.
  • DE-PS 123 706 describes a stapler in which the switching from double production to collective production by changing the stitching wire supply takes place.
  • NL 106 938 C which is regarded as the closest prior art, discloses a stapling apparatus which conveys the stapling wire intermittently to a separating device by means of a material loop formed as an intermediate supply.
  • the invention has for its object to provide a stapler with a feeder for supplying at least one endless stitching wire with improved wire feed.
  • the achievable with the invention advantages are in particular that for switching the stapler from the first to the second mode, a reconfiguration of the separator or the second stapling head no longer necessary is.
  • the second stapling head also remains in the same position in the second operating mode as in the first operating mode of the stapler.
  • the second stapling head in the second mode is not supplied with wire sections as a result of the feed thrust, so that the second stapling head may perform a stapling movement in the second mode of operation, as in the first mode, but no stapling is due to the second stapling head the necessary wire section is missing.
  • this allows a simplified construction of the stitching heads or of the separating device, since they no longer have to be reconfigurable.
  • the feeder can also feed the stitching wire continuously in the stapling apparatus in the first mode.
  • the stitching wire can then move at a fixed speed.
  • the speed of the stitching wire is subject to change.
  • temporarily speeds may occur which are greater than the fixed speed of the stitching wire in the first mode.
  • a Tip speed of the stitching wire in the second mode to be twice as large as a fixed speed of the stitching wire in the first mode.
  • the stitching wire can be evenly accelerated or decelerated during feeding. This may occur during an acceleration phase of the stitching wire or during a deceleration phase of the stitching wire or during both acceleration and deceleration of the stitching wire.
  • the deceleration phase may be initiated immediately after the acceleration phase so that the stitching wire is immediately decelerated again upon reaching its tip speed, without maintaining this tip speed for a longer time.
  • the stapling heads are arranged on a stapling cylinder.
  • the stitching heads of the stapling head pair can be arranged diametrically on the stapling cylinder. It is also possible to provide a plurality of staggered pairs of stitching heads on the stitching cylinder in the axial direction.
  • the separating device comprises blades which interact in pairs to shear off the stitching wire.
  • the blades can be formed on the stitching heads.
  • the blades formed on the stitching heads may be protrusions with which the stitching heads, in cooperation with another blade, which may be an edge of an exit, e.g. Example, a nozzle (cutting nozzle) of a tube through which the stitching wire is supplied, or simply act a fixed stop, shear off a respective wire section of the stitching wire. Then, in the first mode of the stapler, both the first stapling head and the second stapling head shear wire portions from the stapling wire to subsequently staple them.
  • the stapler is very particularly preferably designed such that it can be switched over during operation between the first and the second operating mode. It is therefore particularly well suited for use in a printing machine controlled via a central control room.
  • the supply device of the stapler preferably comprises a first and a second conveyor, the first serves to convey stitching wire in both modes continuously from a main supply into an intermediate supply and the second at least in the second mode intermittently further advances the stitching wire from the intermediate supply.
  • a design is particularly advantageous when it is necessary to remove the stapling wire from a stapling wire main stock, such as a wire reel, which is moved as a whole when fed as a whole by means of the second clamp. Because such a wire roll can have a considerable mass of up to 100 kg, the first conveyor must be able to apply considerable torque; since it keeps the main supply moving evenly due to the continuous production, nevertheless a low acceleration capacity is sufficient, ie. H. a low drive power of the first conveyor.
  • the second conveyor must accelerate only the contents of the intermediate supply in the second mode. Its mass, however, corresponds only approximately to that of a staple, so that despite a low drive power and the second conveyor for the timely supply of the adhesive wire required high accelerations can be achieved.
  • the stitching wire is accelerated and decelerated in the second mode by the second conveyor, while it is continuously supplied by the first conveyor, there is a periodic forming jamming of the stitching wire on the second conveyor.
  • a storage space for the stitching wire between the first and the second conveyor is provided.
  • the second conveyor may operate continuously such that, like the first conveyor, it continuously advances the stitching wire or the second conveyor may be stopped by the stitching wire in the first mode.
  • the first conveyor alone provides for the forward movement and the supply of the stitching wire.
  • the feed device comprises a sensor for detecting the position of the respective stapling head to be supplied with wire sections.
  • the supply device then preferably further comprises a control unit which controls the second conveyor in the second operating mode on the basis of the detection results of the sensor. For an automated operation of the stapler is possible.
  • the conveyors may comprise, for example, a pair of rollers clamping the stitching wire.
  • the clamps may be any other stapling wire clamping and advancing means such as: B. gripper in various designs, jaws, etc.
  • FIG. 1 is a schematic representation of a stapler in front view to see.
  • Fig. 2 shows the stapler of Fig. 1 from a lateral view.
  • On a lateral surface of a rotatably mounted stapling cylinder 03 is a pair of stapling heads 01; 02, consisting from a first stapling head 01 and a second stapling head 02, arranged.
  • the stitching heads 01; 02 are arranged diametrically on the stitching cylinder 03.
  • the stitching heads 01; 02 each have two projections 08; 17, z. B. blades 08; 17, which define a recess 18 and 19 in the longitudinal direction of the stapling cylinder 03.
  • the protrusions 08; 17 each have a in the radial direction of the stapling cylinder 03 aligned step 22.
  • this step 22 is located at the projections 17 of the stapling head 02 on the side facing away from the viewer and is therefore not visible.
  • a feed device 04, 07 essentially comprises a parallel to the longitudinal axis of the stapling cylinder 03 extending feed tube 04 and a servo motor 07, z. B. an electric motor 07 drives a pair of rollers. At one end of the staple head, the feed tube 04 forms an edge 21.
  • a stapling wire 06 unrolled from an endless reel, not shown, is clamped between the rollers driven by the servomotor 07 and is pushed by the latter through the feed tube 04.
  • FIG. 1 shows this wire section 09 at a moment immediately before it interacts with the edge 21 of the feed tube 04 and the projection 08 or 17 facing this edge of the stapling head 01 is sheared off from the stitching wire 06.
  • a cylinder 23, with which the stapler cooperates when stapling, and a bending roller 28 in Fig. 1 are not shown; but they are shown in Fig. 2.
  • the stapler is set to the rotatably mounted cylinder 23, the closing plates 26 has.
  • a circumferential circle 27 is shown, the ends of the stitching heads 01; Run through 02 during a rotation of the stapling cylinder 03.
  • This circumferential circle 27 forms with the cylinder 23 a stitching nip through which a staple stack of sheets 24 is guided by sheets.
  • a bending roller 28 is at the level of the recesses 18; 19 such between the stapler and the cylinder 23 arranged that it partially penetrates into the circumferential circle 27 and thereby into the recesses 18; 19 intervenes.
  • the stapling cylinder 03 rotates in the direction indicated by an arrow in FIG.
  • the stitching wire 06 is continuously pushed by the servomotor 07 through the feed tube 04, so that a protruding at the tack side end of the feed tube 04 wire section 09 of the stitching wire 06 is evenly longer over time.
  • the propelling speed of the stapling wire 06 and the rotational speed of the stapling cylinder 03 are coordinated so that when the wire portion 09 has reached the width of the stapling head 01 or 02 corresponding length I, the stage 22 of a stapling head 01 or 02, in Fig. 1, the first stapling head 01, the stitching wire 06 presses against the edge 21 and a wire section 09 from the stitching wire 06 shears off.
  • the wire section 09 is taken from the stapling head 01.
  • the stapling head 01 performs a stapling of the stack of sheets 24 in a known manner.
  • the wire section 09 is pressed against the bending roller 28 in the further course of the rotation. Because the bending roller 28 is arranged such that it passes through a stapling head 01; 02 in its recess 18; 19 engages the wire portion 09 of the bending roller 28 in the respective recess 18; 19 pressed.
  • the wire section 09 is bent to a shape with a rectilinear central portion and two legs bent at 90 °.
  • the stapling head 01 reaches the cylinder 23, it pushes the then bent wire portion 09 with the tips of the legs ahead through the stack of sheets 24.
  • the cylinder 23 has until then turned so far that one of the closing plates 26 the stapling head 01 is opposite.
  • the stapling head 01 cooperates with the closing plate 26 and completes the stapling of the stack of sheets 24 with the wire section 09.
  • the stapling cylinder 03 continues to rotate and also the stitching wire 06 is further pushed by the servo motor 07 continues through the feed tube 04, so that upon arrival of the stapling head 02 at the end of the feed tube 04 a renewed wire section 09 of length I protrudes from this, which abuts in the manner just described on the projection 08 of the stapling head 02 and is sheared off from the step 22 and the edge 21.
  • the new wire section 09 is taken along by the second stapling head 02, whereupon the latter, like the first stapling head 01, performs a stapling with it in the same way as described. Subsequently, the process is repeated in the manner described.
  • FIG. 3 a For clarification, in the case of the double production in FIG. 3 a a speed-time diagram and in FIG. 3 b an associated location-time diagram for the tip of the stitching wire 06 are shown. Since the stitching wire 06 is fed at a continuous speed v in the double production, the speed v of the Stitching wire 06 for all times t the constant value v 1 . This is shown in the speed-time diagram of FIG. 3a. In the time-time diagram of FIG. 3b, the path traveled by the stitching wire 06 corresponds to the removal of the tip of the stitching wire 06 from the edge 21, this path being at the same time the length of the wire section 09 of the stitching wire 06 protruding at the stapler side end of the feed tube 04.
  • this wire section 09 begins to form; its length increases linearly up to time T 1 .
  • the end section has reached the length I and is sheared off from the stitching wire 06 by the projection 08 of the stitching head 01 and the edge 21 as the wire section 09 having this length I.
  • a renewed projecting wire section 09 whose length in turn increases linearly, is formed at the end of the feed tube 04 at the head end.
  • This new wire section 09 is sheared off at the time T 2 from the projection 17 of the second stitching head 02 and the edge 21 also with a length I as the wire section 09.
  • FIGS. 4a, 4b and 4c Corresponding diagrams are shown for the advancement of the stitching wire 06 for the second mode of operation, ie in collective production, in FIGS. 4a, 4b and 4c.
  • the feed of the stitching wire 06 in the second mode is in batches, wherein in FIGS. 4a, 4b and 4c, a preferred variant of such a batch feed is shown.
  • the type of feed can be easily adjusted via the servo motor 07.
  • the stitching wire 06 With an acceleration -a 0 with the same amount as a 0 , but with the opposite sign, delayed.
  • the associated speed profile of the stitching wire 06 is shown in Fig. 4b.
  • this projection is sheared from the projection 08 of the stapling head end of the feed tube 04 passing stapling head 01 and the edge 21 and taken as a wire section 09 with a length I.
  • the stapling wire 06 remains at rest and undergoes no advance. Both its velocity v and its acceleration a are zero.
  • FIGs. 5 and 6 another embodiment of a stapler is shown once in front view and once in side view.
  • this stapler has a second stapling head pair 11, 12, which is arranged on the same stapling cylinder 03 as the first stapling head pair 01, 02, with diametrical arrangement of the stapling heads 01; 02, 11; 12.
  • the stapling head pairs 01, 02 and 11, 12 are arranged staggered in the axial direction of the stapling cylinder 03.
  • the stitching heads 11; 12 have projections 29; 31, z. B. blades 29; 30 on.
  • a first feed tube 04 serves to supply the stitching heads 01; 02 with wire sections 09, of a first stitching wire 06, as described above, of projections 08; 17 of the stitching heads 01; 02 and the edge 21 are sheared off.
  • a second supply pipe 13 for supplying the pair of stitching heads 11; 12 provided. It has an edge 32 at the end of the staple head.
  • a stitching wire 14 is supplied from which the projections 29; 31 of the stitching heads 11; 12 with the edge 32 each wire sections 16 shear.
  • the feed tube 13 is offset in the manner shown in Fig. 5 and forms between the stapling head pairs 01, 02 and 11, 12 two bends.
  • FIG. 6 A preferred embodiment of the feed device 33 of a stapler is shown in FIG. 6 in schematic form.
  • the stapling cylinder 03 in Figure 6 it is shown from a direction parallel to its axis of sight; the feeder 33, however, from a contrast by 90 ° rotated viewing direction.
  • the conveying direction of the stitching wire 06 is substantially parallel to the axis of the stapling cylinder 03, as shown in FIGS. 1 and 5.
  • the feeder 33 includes a first motor 37, z. B. electric motor 37 with a driven by this first conveyor 38, z. B. pair of rollers 38 and a second motor 34, z. B. electric motor 38 with a driven by this second conveyor 36, z. B. roller pair 36, and a wire cutting nozzle 39 with feed tube 04 and edge 21, and a sensor 41 with control unit.
  • the roller pairs 36; 38 are spaced from each other by a storage space 43.
  • the stitching wire 06 unwound from the wire roller 42 first passes through the first pair of rollers 38, passes through the storage space 43, then passes through the second pair of rollers 36 and finally reaches the feed tube 04 of the wire cutting nozzle 39, from which it exits at the edge 21.
  • the first motor 37 drives the first roller pair 38, which continuously unwinds the stitching wire 06 from the wire roller 42 weighing up to 100 kg.
  • the stitching wire 06 from the second pair of rollers 36 which is driven by the weaker second motor 34, inserted into the feed tube 04 and occurs at the edge 21 of the Wire cutting nozzle 39 off.
  • a leaked wire section 09 is alternately separated from one of the stitching heads 01: 02 from the stitching wire 06 and taken away.
  • the rollers of the second pair of rollers 36 in the first mode of the stitching wire 06 can be turned off, so that the stitching wire 06 is driven by the first pair of rollers 38 alone.
  • the first motor 37 drives the second pair of rollers 38 uniformly, as in the first mode, so that the second pair of rollers 38 unwinds and transports the stitching wire 06 continuously from the wire roller 42, however with a speed v divided in half by comparison with the first type of drive, so that only the length of a single staple is unwound from the wire roller 42 per revolution of the stapling cylinder 03.
  • the first motor 34 is always set in motion by the control unit connected to the sensor 41 when the sensor 41 detects the passage of the stapling head 01 to be supplied with stitching wire.
  • the rollers of the second pair 36 are lightweight, with a low moment of inertia, designed to allow high acceleration by the motor 34 despite low power thereof, and the clamping force between the rollers of the pair 36 and the stitching wire 06 is not substantially greater than that Accelerating the stitching wire 06 of the wire loop 44 required.
  • the second motor 34 therefore does not require accurate speed control; as soon as the stitching wire 06 in the storage space 43 - in time before the passage of the stapling head 01 before the edge 21 - pulled taut, it slips between the rollers of the pair 36, so that between the time of tightening of the stitching wire 06 and the shearing by the stapling head 01 the propulsion speed the stitching wire 06 is determined by the speed v of the first pair of rollers 38.
  • control unit switches off the second motor 34 again, so that after shearing, no stitching wire 06 leaves the wire cutting nozzle 39 until the stapling head 02, which is not to be supplied, has passed the edge 21.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Dovetailed Work, And Nailing Machines And Stapling Machines For Wood (AREA)
  • Folding Of Thin Sheet-Like Materials, Special Discharging Devices, And Others (AREA)
  • Portable Nailing Machines And Staplers (AREA)

Claims (20)

  1. Appareil de brochage avec un dispositif d'alimentation (04, 07, 13 ; 33) pour au moins un fil à brocher (06 ; 14) continu, un dispositif de séparation (08, 17, 29, 31, 21, 32) pour la séparation de tronçons de fil (09 ; 16) vis-à-vis du fil à brocher (06 ; 14) amené, et au moins une première et une deuxième paires de têtes de brochage (01, 02 ; 11, 12), susceptibles d'être alimentées avec les tronçons de fils (09 ; 16) produits à partir du au moins un fil à brocher (06 ; 14), et où, au choix, soit en un premier type de fonctionnement, les deux têtes de brochage (01, 02 ; 11, 12) des deux paires sont disposées en effectuant des brochages, soit en un deuxième type de fonctionnement, seules les têtes de brochage (01 ; 11) de la première paire sont disposées en effectuant des brochages, où, dans le deuxième type de fonctionnement, le disposition d'alimentation (04, 07, 13; 33) est disposé en amenant par poussée le fil à brocher (06 ; 14), le dispositif d'alimentation (04, 07, 13 ; 33) présentant un moteur électrique (07 ; 34 ; 37), le moteur électrique (07 ; 34 ; 37), dans le premier type de fonctionnement, étant commandé selon un premier diagramme vitesse-temps et, dans le deuxième type de fonctionnement, étant commandé selon un deuxième diagramme vitesse-temps, différent du premier.
  2. Appareil de brochage selon la revendication 1, caractérisé en ce que, dans le premier type de fonctionnement, le dispositif d'alimentation (04, 07, 13 ; 33) est disposé en amenant de façon continue le fil à brocher (06 ; 14).
  3. Appareil de brochage selon la revendication 1, caractérisé en ce que le dispositif d'alimentation (04, 07, 13 ; 33) est commutable, entre un premier type de fonctionnement, dans lequel il amène le fil à brocher (06 ; 14) de façon intermittente, et un deuxième type de fonctionnement, dans lequel il amène le fil à brocher (06 ; 14) de façon continue.
  4. Appareil de brochage selon la revendication 1 ou 3, caractérisé en ce que le dispositif d'alimentation (04, 07, 13 ; 33) est commutable, pendant le fonctionnement, entre le premier et le deuxième type de fonctionnement.
  5. Appareil de brochage selon la revendication 1, caractérisé en ce qu'un premier dispositif de transport (38) transporte le fil à brocher (06 ; 14) en un stockage intermédiaire (44), en ce qu'un deuxième dispositif de transport (36) est disposé en transportant de façon intermittente le fil à brocher (06 ; 14), en l'extrayant du stockage intermédiaire (44).
  6. Appareil de brochage selon une des revendications 3 ou 5, caractérisé en ce que, le deuxième dispositif de transport (36) est dégagé du fil à brocher (06 ; 14), pendant qu'on est au premier type de fonctionnement.
  7. Appareil de brochage selon la revendication 1 ou 3, caractérisé en ce qu'une vitesse de pointe du fil à brocher (06 ; 14), dans le deuxième type de fonctionnement, est de deux fois une vitesse du fil à brocher (06 ; 14), dans le premier type de fonctionnement.
  8. Appareil de brochage selon la revendication 1 ou 3, caractérisé en ce que, dans le deuxième type de fonctionnement, le fil à brocher (06 ; 14) est accéléré ou freiné de façon régulière pendant l'amenée.
  9. Appareil de brochage selon la revendication 1, caractérisé en ce que le dispositif d'alimentation (04, 07, 13 ; 33) comprend un capteur (41), pour détecter la position de la tête de brochage (01, 02 ; 11, 12) chaque fois alimentée avec des tronçons de fils (09 ; 16).
  10. Appareil de brochage selon la revendication 9 et 1 ou 3, et en ce que, dans le deuxième type de fonctionnement, le deuxième dispositif de transport (36) est commandé à l'aide des résultats de détection du capteur (41).
  11. Appareil de brochage selon la revendication 5, caractérisé en ce qu'à chaque dispositif de transport (36 ; 38) est associé un moteur électrique (34 ; 37) propre.
  12. Appareil de brochage selon la revendication 5, caractérisé en ce qu'un espace d'accumulation (43) pour le stockage intermédiaire (44) est disposé entre le premier et le deuxième dispositif de transport (36 ; 38).
  13. Appareil de brochage selon la revendication 5, caractérisé en ce que les dispositifs de transport (36 ; 38) comprennent chacun une paire de rouleaux (36 ; 38).
  14. Appareil de brochage selon la revendication 1, caractérisé les têtes de brochage (01, 02 ; 11, 12) sont disposées sur un cylindre de brochage (03).
  15. Appareil de brochage selon la revendication 14, caractérisé par une pluralité de paires de tête de brochage (01, 02 ; 11, 12), disposées de façon échelonnée en quinconce sur le cylindre de brochage (03).
  16. Appareil de brochage selon la revendication 1, caractérisé en ce que, le dispositif de séparation (08, 17, 29, 31, 21, 32) comprend des lames, coopérant par paires pour cisailler le fil à brocher (06 ; 14).
  17. Appareil de brochage selon la revendication 14, 15 ou 16, caractérisé en ce que des lames (08 ; 17 ; 29 ; 31) sont réalisées sur les têtes de brochage (01 ; 02 ; 11; 12).
  18. Appareil de brochage selon la revendication 1, caractérisé en ce que l'appareil de brochage présente au moins un cylindre de brochage (03) avec au moins une tête de brochage (01 ; 02 ; 11 ; 12).
  19. Appareil de brochage selon la revendication 1 ou 18, caractérisé en ce qu'au moins deux têtes de brochage (01 ; 02 ; 11 ; 12), disposées axialement l'une à côté de l'autre, sont prévues.
  20. Appareil de brochage selon la revendication 1 ou 18, caractérisé en ce qu'au moins deux dispositifs d'alimentation (04, 07, 13 ; 33) sont disposés par rapport à la direction périphérique d'un cylindre de brochage (03).
EP05103016A 2004-04-23 2005-04-15 Appareil de brochage avec dispositif d' alimentation pour au moins un fil à brocher sans fin Not-in-force EP1588813B1 (fr)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
DE102004040852 2004-04-23
DE102004019977 2004-04-23
DE102004019977 2004-04-23
DE102004040851A DE102004040851A1 (de) 2004-04-23 2004-08-23 Zuführeinrichtung zum Zuführen wenigstens eines endlosen Heftdrahtes
DE102004040851 2004-08-23
DE102004040852A DE102004040852B4 (de) 2004-04-23 2004-08-23 Heftapparat

Publications (2)

Publication Number Publication Date
EP1588813A1 EP1588813A1 (fr) 2005-10-26
EP1588813B1 true EP1588813B1 (fr) 2006-08-30

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP05103016A Not-in-force EP1588813B1 (fr) 2004-04-23 2005-04-15 Appareil de brochage avec dispositif d' alimentation pour au moins un fil à brocher sans fin

Country Status (3)

Country Link
EP (1) EP1588813B1 (fr)
AT (1) ATE337897T1 (fr)
DE (1) DE502005000077D1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102007019009A1 (de) 2007-04-21 2008-10-30 Koenig & Bauer Aktiengesellschaft Heftapparat
DE102012215560A1 (de) 2012-09-03 2014-03-06 Koenig & Bauer Aktiengesellschaft Hefteinrichtung, Rollendruckmaschine mit einer Hefteinrichtung sowie Verfahren zum Betreiben einer Hefteinrichtung

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102007033586B4 (de) 2007-07-19 2009-10-08 Koenig & Bauer Aktiengesellschaft Heftapparat

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE123706C (fr) *
BE536583A (fr) *
NL106938C (fr) * 1900-01-01
US3107870A (en) * 1959-02-13 1963-10-22 Wunderlich Spring Machinery Co Wire feeding apparatus
DD100437A1 (fr) * 1972-11-17 1973-09-20
EP0621095B1 (fr) * 1993-03-25 1997-04-02 H.A. Schlatter Ag Procédé pour le redressage intermittent de fils
WO1998050240A1 (fr) * 1997-05-07 1998-11-12 Ferag Ag Dispositif d'agrafage longitudinal de produits imprimes en plusieurs parties
US6705355B1 (en) * 2000-04-03 2004-03-16 Yair Wiesenfeld Wire straightening and cut-off machine and process

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102007019009A1 (de) 2007-04-21 2008-10-30 Koenig & Bauer Aktiengesellschaft Heftapparat
DE102007019009B4 (de) * 2007-04-21 2010-03-04 Koenig & Bauer Aktiengesellschaft Heftapparat
DE102012215560A1 (de) 2012-09-03 2014-03-06 Koenig & Bauer Aktiengesellschaft Hefteinrichtung, Rollendruckmaschine mit einer Hefteinrichtung sowie Verfahren zum Betreiben einer Hefteinrichtung
DE102012215560B4 (de) 2012-09-03 2019-01-24 Koenig & Bauer Ag Rollendruckmaschine mit einer Hefteinrichtung sowie Verfahren zum Betreiben einer Rollendruckmaschine mit einer Hefteinrichtung

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Publication number Publication date
DE502005000077D1 (de) 2006-10-12
ATE337897T1 (de) 2006-09-15
EP1588813A1 (fr) 2005-10-26

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