EP1760022B1 - Cylindre pour façonner des materiaux plats - Google Patents

Cylindre pour façonner des materiaux plats Download PDF

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Publication number
EP1760022B1
EP1760022B1 EP06122148A EP06122148A EP1760022B1 EP 1760022 B1 EP1760022 B1 EP 1760022B1 EP 06122148 A EP06122148 A EP 06122148A EP 06122148 A EP06122148 A EP 06122148A EP 1760022 B1 EP1760022 B1 EP 1760022B1
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EP
European Patent Office
Prior art keywords
cylinder
sector
cover disc
roller
control device
Prior art date
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Active
Application number
EP06122148A
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German (de)
English (en)
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EP1760022B8 (fr
EP1760022A1 (fr
Inventor
Michael Held
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Koenig and Bauer AG
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Koenig and Bauer AG
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Application filed by Koenig and Bauer AG filed Critical Koenig and Bauer AG
Publication of EP1760022A1 publication Critical patent/EP1760022A1/fr
Application granted granted Critical
Publication of EP1760022B1 publication Critical patent/EP1760022B1/fr
Publication of EP1760022B8 publication Critical patent/EP1760022B8/fr
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H45/00Folding thin material
    • B65H45/12Folding articles or webs with application of pressure to define or form crease lines
    • B65H45/16Rotary folders
    • B65H45/162Rotary folders with folding jaw cylinders
    • B65H45/168Rotary folders with folding jaw cylinders having changeable mode of operation

Definitions

  • the invention relates to a cylinder for the processing of flat material according to the preamble of claim 1.
  • cover plate in the radial direction adjustable cam.
  • these cams can be formed on the cover plate sections that lock a scanning movement of the tool during scanning by the control lever.
  • the cover plate can be adapted to the respective production method.
  • cover plates are known which comprise a plurality of partial cover plates and which are rotated relative to each other for switching between production ways by means of motors. In both cases, however, the construction of the cover disc and cylinder is very complex and includes many individual parts. In addition, the changeover between the production methods is complex and time-consuming.
  • the US 4 094 499 A discloses a cylinder for processing flat material, with a cylinder body rotatable about a cylinder axis, on which controllable tools are arranged. These tools are driven by a cam and a cover disc, these discs have sectors with different radii.
  • the US 5,305,993 A. discloses a cylinder for processing flat material, comprising a cylinder body rotatable about a cylinder axis, at least one group of a plurality of tools uniformly distributed around the circumference of the cylinder body, arranged to perform a working movement with respect to the cylinder body and respectively to a control means for driving the working movement coupled, a stationary cam scanned by the control means of each tool and a cover disc rotatable coupled to the rotation of the cylinder body and scanned by the control means of each tool, the cylinder having a triple-picking mode of operation.
  • the invention has for its object to provide a cylinder for the processing of flat material, with a simple structure.
  • the achievable with the present invention consist in particular in that the same cover plate can be used without conversion measures or other structural modifications for different ways of producing the cylinder.
  • Different ways of production may be, for example, those in which the cylinder collects one or more but not more than n-1 workpieces from the sheet, preferably paper signatures.
  • Each mode of production of the cylinder is associated with a sector group of the cover disk, the order of sectors, e.g. Circular sectors, with the first and second radius within the group, respectively, for the associated mode of production, d. H. allows or suppresses the working movements according to the mode of production.
  • the control means passes simultaneously with the working movement controlling portion only sectors of the cover disc of a single selected sector group. If, for example, all sectors have the first radius in one of the sector groups, the same working movement of the tools occurs during operation of the cylinder in the mode of operation of the cylinder determined by this sector group with each revolution of the cylinder.
  • cover disc Since the cover disc is rotatable coupled to the rotation of the cylinder body, can be easily switched between two modes of production by a phase between the cover plate and the cylinder body, so that now sectors of the desired production mode associated sector group allow the cooperation of control device and section for controlling the working movement or lock.
  • a wear of the control device is reduced in the cylinder, since the relative speed between the rotating cylinder body and the cover plate is reduced.
  • the number of sectors of the shroud is increased over conventional constructions, and the difference in rotational speeds of the cylinder body and the shroud required for controlling the tool movement with the desired periodicity is significantly reduced.
  • the acceleration experienced by the rear window scanning roller of the control device with each contact with the cover plate is thereby reduced. Since the fretting on the roller of the ceiling disc increases disproportionately with the acceleration occurring, the life of the roller is considerably extended.
  • the pulley for scanning the shroud can be easily mounted to a common control lever with a pulley for sensing the cam.
  • the role of the cam ever loses contact with the cam when the cover disc blocks the working movement. It slows down and needs to be accelerated again.
  • two control levers, one for each roller, may be provided which allow the roller of the cams to remain in contact with the cam even when the cover disc blocks the working movement.
  • the cover plate can be coupled via a differential gear, such as a planetary gear or a harmonic drive gearbox, to the cylinder body.
  • a differential gear such as a planetary gear or a harmonic drive gearbox
  • This transmission can on the one hand with held balance shaft as a drive for the cover plate serve. On the other hand, the same transmission can also enable switching between the production modes by turning the balance shaft.
  • Fig. 1 shows an end portion of a cylinder body 01 with three folding blades 02 (in Fig. 1 two visible).
  • the cylinder body 01 is shown here for the sake of simplicity as a cylinder 01 in a narrow, geometric sense, but it is understood that can deviate from the geometric cylindrical shape in practice, provided that promoted signatures on the lateral surface of the cylinder 01 on a circular or circular sector-shaped path become.
  • the lateral surface may be constructed from a plurality of mutually adjustable segments.
  • the tools 02, z. B. folding blade 02 are each arranged at a distance of 120 ° to the lateral surface of the cylinder body 01 slots extendable to cross-feed supplied signatures at a (not shown) transfer gap and thereby pass to a cylinder, also not shown.
  • the folding blades 02 In order to be able to load a subsequent signature on the cylinder body 01 after the transfer, the folding blades 02 must withdraw into the interior of the cylinder 01.
  • the folding blades 02 are fixedly connected in each case via arms, which are concealed in FIG. 1 by the jacket of the cylinder body 01, to a shaft 03, which is in each case pivotably mounted in the two opposite end plates 04 of the cylinder body 01.
  • Spigot 06 connected to the end plates 04 are rotatably mounted in a side frame, not shown.
  • a cam 07 and a cover plate 08 Coaxial with the axle journal 06 shown in the figure, a cam 07 and a cover plate 08 are provided.
  • the cam 07 has substantially the shape of a concentric with the axis of rotation of the cylinder body 01 circular disk, in the section 09, z. B. peripheral surface 09 a peripheral portion 11, z. B. a recess 11 is formed.
  • the cover plate 08 can as from sector 12; 13, z. B. circular sectors 12; 13
  • Each of the three shafts 03 of the cylinder body 01 carries two control levers 16; 17, which together each form a control device for controlling the movement of one of the folding blades 02.
  • the control levers 16; 17 shown in Fig. 1 only on one of the shafts 03.
  • the first control lever 16 carries at its free End of a roller 18, which rolls on the peripheral surface 09 of the cam 07.
  • the second control lever 17 carries a roller 19, which rolls on the peripheral surface of the cover plate 08.
  • the second control lever 17 is fixedly connected to the shaft 03, while the first control lever 16 is rotatable about the shaft 03.
  • the two control levers 16; 17 carry on each of the other control lever 16; 17 facing lateral edge a projection 21 and 22, as can be seen in the exploded detail view of the control device of FIG. Between the two projections 21; 22 is a compression spring 23, which the two projections 21; 22 apart.
  • On the second control lever 17 acts on the shaft 03, a torque of a not shown, for. B. housed in the cylinder body 01 spring, which drives the roller 19 against the peripheral surface of the cover plate 08. In the position shown in Fig. 1, the roller 18 rolls in the recess 11 and the roller 19 on a first sector 12.
  • FIG. 3 shows in a perspective view analogous to FIG. 2 a simplified control device in which a single control lever 17 'fastened to the shaft 03 has two rollers 18'; 19 'for rolling on the cam 07 and the cover plate 08 carries.
  • the control lever 17 ' only pivots radially inward when both rollers 18'; 19 ' at the same time pass the indentation 11 or a sector 12 with a small radius.
  • the cylinder 01 can also be five or seven sections, d. H. have five or seven tools 02, in particular folding blade 02 or puncture strips with puncture needles, grippers or jaws.
  • each sector group comprises twelve individual sectors 12; 13th
  • Each sector 12; 13 belongs to one of three groups; the group membership is indicated by a symbol “ ⁇ ", “ ⁇ ” or “ ⁇ ” with which each sector 12; 13 is provided in Fig. 4.
  • the sectors 12; 13 of the individual sector groups “ ⁇ ”; “ ⁇ ”; “ ⁇ ” alternate cyclically in the circumferential direction of the cover plate 08, d. H. between every two sectors 12; 13 of the same sector group “ ⁇ ”; “ ⁇ ”; “ ⁇ ” is in each case a sector 12; 13 of every other sector group “ ⁇ ”; “ ⁇ ”; “ ⁇ ” arranged.
  • All twelve sectors of the group “ ⁇ " are sectors 12 of small radius. This group “ ⁇ ” is for controlling non-collection operation. If the control device 16, 17 or 17 'coincides with a sector 12 of this group " ⁇ " at each pass through the recess 11, it follows the contour of the recess 11, and the folding blades 02 perform the working movement, d. H. They exit at each passing of the transfer gap, not shown, and then retract into the cylinder body 01.
  • the cam 07 comprises one in cooperation with the control device 16, 17; 17 ', the work movement controlling peripheral portion 11, which, if n is an integer equal to or greater than 2, at most 1 / n of the total circumference of the cam 07 accounts, and a working movement not controlling portion, which makes up the remainder of the total circumference ,
  • Fig. 6 a) and b) are to illustrate the operation of the cover plate 08 in non-collecting mode of production of the cylinder 01.
  • the rollers 18; 19 rotate cam and cover plate 07; 08 counterclockwise. While the cam plate 07 is fixed, the cover plate 08 rotates coupled to the cylinder body 01 in the same direction with this, however, according to the number 12 of the sectors of each group, by 1/12 slower. In the situation shown in Fig. 6 a), the roller 18 is about to pass the recess 11.
  • the phase angle of cover plate 08 and cam plate 07 to each other is selected so that the roller 19 has just entered the angular range of a first sector 12 'of the sector group " ⁇ ".
  • the roller 18 enters the recess 11, and the associated folding blade 02 extends.
  • the roller 19 rolls exclusively on the first sector 12 'from.
  • the folding blade 02 is retracted again.
  • the roller 19 has left the first sector 12 'behind, as can be seen in FIG. 6 b).
  • Fig. 6 c) and d) show the operation of the cover plate 08 with simply collecting the production mode of the cylinder 01.
  • the rotation phase of the cover plate 08 relative to the cam is set in that the situation shown in Fig. 6 c) results, in which the roller 18 is at the beginning of the recess 11.
  • the roller 19 is now at the height of a second sector 13 'of large radius belonging to the sector group ⁇ of the simple-collecting mode of production. On this rolls off the roller 19 until the situation of Fig. 6 d) results.
  • the roller 18 passes through the recess 11.
  • the roller 18 touched the cam 07 in the time of unwinding of the roller 19 on the second sector 13 'not.
  • the lever for the folding blade 02 is not actuated and this does not go out.
  • One revolution of the cylinder body 01 later rolls off the roller 19 as described above on the sector 12 "following the second sector 13 'within the sector group" ⁇ ", but since this is a first sector 12" of small radius, this time, the folding blade 02 extends as described above, when the roller 18 passes through the recess 11. Because the sector 13 "following the first sector 12" within the sector group " ⁇ " has a large radius, the folding blade 02 is not extended one revolution later. Based on the alternating arrangement of first sectors 12 and second sectors 13 within easy to can be seen that the folding blade 02 alternately extends once with each revolution of the cylinder body 01 and once does not extend.
  • cover plate 08 could over the shown sector groups " ⁇ "; “ ⁇ ”; “ ⁇ ” have even more, z.
  • a sector group ⁇ ⁇ " which has on each of three sectors 13 a sector 12 to control triple collection operation, etc.
  • Such a cover plate 14 for a folding blade cylinder with four different sector groups" ⁇ "," ⁇ ", and FIG. 5 also shows " ⁇ ". Also with the cover disk 14, the number of sectors of each group is 12.
  • folding blades 02 were considered as examples of the cylinder body 01 mounted and periodically driven tools. It is understood, however, that the invention in the same way as described above, also on other periodically moving tools such as folding blade puncture strips with puncturing needles, grippers, jaws, etc. is applicable.
  • Fig. 7 shows as an example of a cover plate 53 for controlling the working movements of tools other than folding blades 02, a cover plate 53 for controlling grippers of a gripper cylinder.
  • the cover disk has four different sector groups with sectors 12; 13 on. As explained above, the sectors 12 belonging to the same sector group are; 13 is marked with " ⁇ ", “ ⁇ ", “ ⁇ ” or “ ⁇ ”, where the symbols are simultaneously identified by the respective sector group " ⁇ ", " ⁇ ", “ ⁇ ” or “ ⁇ ” realized production methods.
  • These grippers move once each time the cylinder 01 rotates to pick up a newly delivered signature, and they move once per one or more revolutions, depending on the production mode selected, to release the signatures.
  • the roller 19 moves over in each case one of the sectors 12 or 13 of the group corresponding to the respectively set production mode.
  • the picking motion is controlled by the roller 19 being mounted on one of between four of the sectors 12; 13 lying lying areas 24, which are added to none of the sector groups and have a small radius as the sectors 12.
  • a cooperating with the cover plate 53 cam has therefore usually next to the recess 11, is controlled by the depending on the mode of production, the release of the signatures, a further indentation, which controls together with the areas 24 recording the signatures.
  • a transmission for a cylinder 01 of a folding apparatus as it is usually arranged downstream of a web-fed rotary printing machine, can be seen.
  • the cylinder 01 has a plurality of evenly distributed around the circumference of its cylinder body 01 folding blade 02 and beyond groups of several evenly around the circumference of the cylinder body 01 distributed grippers.
  • the cylinder 01 is as in the above DE 38 28 372 A1 described from two in cross-section star-shaped, uniformly driven mutually adjustable segments in the form of a laterally mounted Falzmesserteils with the folding blades and a gripper part with the grippers.
  • the folding blade part has a journal 26 and the gripper part has a journal 27 on.
  • the axle journal 27 is hollow and is pierced by the axle journal 26, so that both axle journals 26; 27 are mounted coaxially in a frame 28.
  • On the axle journal 26 is a drive wheel 29 for driving the Falzmesserteils and on the axle journal 27, a drive wheel 31 is fixed for driving the gripper part.
  • the drive wheels are 29; 30 are coaxially arranged side by side and have the same diameter.
  • a provided for controlling the folding blade cover plate 32 is on a coaxial with the axle journal 26; 27 and fixed to this rotatably mounted in the frame 28 hollow cylinder 37 and is thereby also coaxial with the journal 26; 27 arranged and rotatable about this.
  • One of the cover plate 32 adjacent cam 34 is fixedly connected to the frame 28.
  • the folding blades are controlled as described above.
  • On one of the cover plate 32 opposite end of the hollow cylinder 37 has a sprocket 38.
  • the sprocket 38 is in engagement with a gear 39 of a differential gear 41, z.
  • a cover plate 33 for controlling the gripper is attached to one end of a hollow cylinder 44, which surrounds the hollow cylinder 37 and is rotatably mounted about this.
  • the cover plate 33 is thus also coaxial with the axle journals 26, 27 and rotatably mounted about them.
  • One of the cover plate 33 adjacent cam 36 is fixedly connected to the frame 28 and serves in the manner described above together with the cover plate 33 for controlling the gripper, wherein the representation of the associated control lever has been omitted.
  • the hollow cylinder 44 has on a cover plate 33 opposite end via a sprocket 46.
  • the sprocket 46 is connected to a gear 47 of a differential gear 48, z. B.
  • a planetary gear or a harmonic drive gear 48 is engaged, which via a gear 49 with the drive wheel 29 is engaged.
  • Via balance shaft 51 of the harmonic drive transmission 48 an arbitrary phase position between the cover plate 33 and the gripper part is adjustable.
  • the transmission shown in Figure 8 provides a coupling of the cover plates 32; 33 to a rotation of the folding blade part and the gripper part. These are on the drive wheels 29; 31 driven. Since the harmonic drive gear 41; 48 with the drive wheel 29 of the folding blade part and with the corresponding sprockets 38; 46 are engaged, drives the drive wheel 29 and the cover plates 32; 33 on.
  • the cover disks 32 rotate; 33 such that, as described above, only sectors 12; 13 of the same sector group " ⁇ ";" ⁇ ";" ⁇ ";” ⁇ " together with the rollers 18; 19; 18 '; 19 ', the control lever 16; 17; 17 ', the indentations of the cams 34; 36 happen.
  • FIG. 9 An alternative embodiment of the transmission is shown in FIG. 9.
  • a further drive wheel 52 is fastened to the axle journal 26 in the present case.
  • this drive wheel 52 are the harmonic drive gear 41; 48 in engagement, so that the cover plates 32; 33, so to speak, indirectly via the drive wheel 52 instead of as in Fig. 8 directly via the drive wheel 29, via which a power flow into the transmission takes place, are operated.
  • the cylinder body 01 and the cover plate 08 rotate counterclockwise, for example.
  • the control device 16, 17; 17 ' is formed, for example, leading.
  • the drive of the ceiling plate 08; 14; 53 takes place from the folding blade cylinder, Falzgreiferzylinder, NOTEurzylinder or Falzklappenzylinder.
  • the cylinder 01 in a folding apparatus of a printing machine carries movable tools 02, which by means of a cover plate 08; 14; 53 are controllable, wherein the cover plate 08; 14; 53 is driven by its own position-controlled electric motor.
  • the first sector group “ ⁇ ” defines the “non-collective operation” mode.
  • the second sector group “ ⁇ ” defines the “single-collective operation” mode.
  • the third sector group “ ⁇ ” defines the operating mode “dual-axis operation”.
  • the fourth sector group “ ⁇ ” defines the “triple collection mode”.
  • the fifth sector group “ ⁇ ” determines the "Fourfold collection mode” (not shown).
  • the cylinder 01 has five tools 02.

Claims (12)

  1. Cylindre pour façonner du matériau plat, avec un corps de cylindre (01) susceptible de tourner autour d'un axe de rotation, au moins un groupe d'une pluralité d'outils (02) répartis régulièrement autour de la périphérie du corps de cylindre (01), disposés en effectuant un déplacement opératoire par rapport au corps de cylindre (01) et chaque fois couplés à un dispositif de commande (16, 17 ; 17') pour l'entraînement du mouvement opératoire, un disque de came (07) localement fixe, palpé par le dispositif de commande (16, 17 ; 17') de chaque outil (02), et un disque de couverture (08 ; 14 ; 53), susceptible de tourner en étant couplé à la rotation du corps de cylindre (01) et palpé par le dispositif de commande (16, 17 ; 17') de chaque outil (02), le cylindre (01) présentant un type de fonctionnement "fonctionnement en collecte triple", sachant que, sur la périphérie, sont disposés cinq ou sept groupes d'outils (02) réalisés sous la forme de lames de pliage (02), caractérisé en ce qu'un disque de couverture (32) unique est disposé en commandant les groupes de lames de pliage (02).
  2. Cylindre selon la revendication 1, caractérisé en ce que le cylindre (01) présente un type de fonctionnement "fonctionnement en collecte quadruple".
  3. Cylindre selon la revendication 1, caractérisé en ce que le disque de couverture (08 ; 14 ; 53) est couplé au corps de cylindre (01) par l'intermédiaire d'une transmission de compensation (41 ; 48).
  4. Cylindre selon la revendication 1, caractérisé en ce que le dispositif de commande (17') comprend un levier de commande (17') portant un premier galet (18'), pour palper le disque de came (07), et un deuxième dispositif galet (19'), pour palper le disque de couverture (08 ; 14 ; 53).
  5. Cylindre selon la revendication 1, caractérisé en ce que le dispositif de commande (16, 17 ; 17') comprend deux leviers de commande (16, 17 ; 17') susceptible de pivoter autour d'un axe commun, dont l'un palpe le disque de came (07) et l'autre le disque de couverture (08 ; 14 ; 53).
  6. Cylindre selon la revendication 1, caractérisé en ce que l'entraînement du disque de couverture (08 ; 14 ; 53) s'effectue depuis un cylindre à lames de pliage.
  7. Cylindre selon la revendication 1, caractérisé en ce que l'entraînement du disque de couverture (08 ; 14 ; 53) s'effectue depuis un cylindre à preneurs, ou un cylindre à picots.
  8. Cylindre selon la revendication 1, caractérisé en ce que l'entraînement du disque de couverture (08 ; 14 ; 53) s'effectue depuis un cylindre à volets de pliage.
  9. Cylindre selon la revendication 1, caractérisé en ce que l'entraînement du disque de couverture (08 ; 14 ; 53) s'effectue depuis un moteur électrique à régulation de position, spécifique.
  10. Cylindre selon la revendication 1, caractérisé en ce que cinq groupes de systèmes à picots ou de preneurs sont disposés sur la périphérie.
  11. Cylindre selon la revendication 1, caractérisé en ce que sept groupes de systèmes à picots ou de preneurs sont disposés à la périphérie.
  12. Cylindre selon la revendication 10 ou 11, caractérisé en ce qu'un unique disque de couverture (33) est disposé, en commandant les groupes preneurs ou de bandes à picots.
EP06122148A 2004-04-26 2005-04-13 Cylindre pour façonner des materiaux plats Active EP1760022B8 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102004020304A DE102004020304B4 (de) 2004-04-26 2004-04-26 Zylinder für die Bearbeitung von Flachmaterial
EP05743088A EP1742865B1 (fr) 2004-04-26 2005-04-13 Cylindre pour façonner des materiaux plats

Related Parent Applications (2)

Application Number Title Priority Date Filing Date
EP05743088.6 Division 2005-04-13
EP05743088A Division EP1742865B1 (fr) 2004-04-26 2005-04-13 Cylindre pour façonner des materiaux plats

Publications (3)

Publication Number Publication Date
EP1760022A1 EP1760022A1 (fr) 2007-03-07
EP1760022B1 true EP1760022B1 (fr) 2007-11-28
EP1760022B8 EP1760022B8 (fr) 2010-06-02

Family

ID=34967635

Family Applications (3)

Application Number Title Priority Date Filing Date
EP06122148A Active EP1760022B8 (fr) 2004-04-26 2005-04-13 Cylindre pour façonner des materiaux plats
EP05743088A Not-in-force EP1742865B1 (fr) 2004-04-26 2005-04-13 Cylindre pour façonner des materiaux plats
EP08159821A Withdrawn EP1972588A1 (fr) 2004-04-26 2005-04-13 Cylindre d'un appareil de pliage d'une presse

Family Applications After (2)

Application Number Title Priority Date Filing Date
EP05743088A Not-in-force EP1742865B1 (fr) 2004-04-26 2005-04-13 Cylindre pour façonner des materiaux plats
EP08159821A Withdrawn EP1972588A1 (fr) 2004-04-26 2005-04-13 Cylindre d'un appareil de pliage d'une presse

Country Status (6)

Country Link
US (1) US7494455B2 (fr)
EP (3) EP1760022B8 (fr)
AT (1) ATE407084T1 (fr)
DE (3) DE102004020304B4 (fr)
ES (2) ES2310826T3 (fr)
WO (1) WO2005102890A2 (fr)

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DE102006011841B4 (de) * 2006-03-15 2013-07-18 Koenig & Bauer Aktiengesellschaft Falzapparat
DE102006019799A1 (de) 2006-04-28 2007-10-31 Koenig & Bauer Aktiengesellschaft Falzapparat
DE102006051569A1 (de) 2006-11-02 2008-05-08 Man Roland Druckmaschinen Ag Sammelzylinder eines Falzapparats einer Druckmaschine
DE102008060740A1 (de) * 2008-01-23 2009-07-30 Heidelberger Druckmaschinen Ag Druckmaschine
DE102010001171A1 (de) 2010-01-25 2011-07-28 KOENIG & BAUER Aktiengesellschaft, 97080 Zylinder für die Bearbeitung von Flachmaterial
JP5425294B1 (ja) * 2012-11-21 2014-02-26 株式会社東京機械製作所 バリアブルカットオフ折機、及びバリアブルカットオフ折機を備える印刷機

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JP2004149272A (ja) * 2002-10-31 2004-05-27 Tokyo Kikai Seisakusho Ltd コレクト折り機能付き折機

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DE102004020304B4 (de) 2007-11-29
WO2005102890A3 (fr) 2006-05-26
EP1742865B1 (fr) 2008-09-03
EP1760022B8 (fr) 2010-06-02
ES2296268T3 (es) 2008-04-16
DE102004020304A1 (de) 2005-11-17
WO2005102890A2 (fr) 2005-11-03
US7494455B2 (en) 2009-02-24
US20070214975A1 (en) 2007-09-20
EP1742865A2 (fr) 2007-01-17
DE502005005262D1 (de) 2008-10-16
ATE407084T1 (de) 2008-09-15
EP1760022A1 (fr) 2007-03-07
DE502005002114D1 (de) 2008-01-10
ES2310826T3 (es) 2009-01-16
EP1972588A1 (fr) 2008-09-24

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