EP2650129B1 - Unité d'impression - Google Patents

Unité d'impression Download PDF

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Publication number
EP2650129B1
EP2650129B1 EP11007792.2A EP11007792A EP2650129B1 EP 2650129 B1 EP2650129 B1 EP 2650129B1 EP 11007792 A EP11007792 A EP 11007792A EP 2650129 B1 EP2650129 B1 EP 2650129B1
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EP
European Patent Office
Prior art keywords
printing
gear wheels
transfer
drive
transfer cylinders
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.)
Active
Application number
EP11007792.2A
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German (de)
English (en)
Other versions
EP2650129A1 (fr
Inventor
Peter Knauer
Josef Singler
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.)
Manroland Web Systems GmbH
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Manroland Web Systems GmbH
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Publication date
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Publication of EP2650129A1 publication Critical patent/EP2650129A1/fr
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/008Mechanical features of drives, e.g. gears, clutches
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/24Cylinder-tripping devices; Cylinder-impression adjustments
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F7/00Rotary lithographic machines
    • B41F7/02Rotary lithographic machines for offset printing
    • B41F7/12Rotary lithographic machines for offset printing using two cylinders one of which serves two functions, e.g. as a transfer and impression cylinder in perfecting machines

Definitions

  • the invention relates to a printing unit of a web-fed printing press according to the preamble of claim 1.
  • printing units of a web-fed printing press with several printing units are known.
  • Each printing unit of a printing unit of a web press comprises a transfer cylinder, a forme cylinder, an inking unit and preferably a dampening unit, wherein the transfer cylinder is also referred to as a blanket cylinder and the forme cylinder as a plate cylinder.
  • the transfer cylinder of a first printing unit of the printing unit and the transfer cylinder of a second printing unit of the printing unit to form a printing gap for a substrate to be printed roll on each other, in which case the first printing unit and the second printing unit to Print on printing substrate on different sides.
  • the cylinders of the printing couples whose transfer cylinders roll on each other via drive gears in a drive connection, namely such that a positioned on a shaft of the transfer cylinder of the first printing drive gear and on a shaft of the transfer cylinder of the second printing unit positioned drive gear mesh respectively in a positioned on a shaft of the forme cylinder of the respective printing unit drive gear and in the positioned on the shaft of the transfer cylinder of the respective other printing unit drive gear.
  • the one cylinder of the first printing unit or a cylinder of the second printing unit is assigned, all cylinders of the first printing unit and all cylinders of the second printing unit to be driven.
  • the transfer cylinder from a so-called print-on position, in which the same pressure gap for Define printing substrate to be converted into a so-called print-off position, wherein in the print-off position, the axial distance between the transfer cylinders is increased to such an extent, so that a substrate can be guided without contact by the respective printing unit.
  • the transfer cylinder By transferring the transfer cylinder from the print-on position to the print-off position, as already mentioned, the axial distance between the transfer cylinders is increased, whereby then the drive gears of the transfer cylinder out of engagement, so then the drive connection between the transfer cylinders and so that the printing units is canceled.
  • the transfer cylinder by increasing the axial distance between the same from a print-on position to a print-off position can be transferred for each printing unit a separate drive motor kept ready, in which case only the cylinders of the corresponding printing unit via drive gears are in drive connection, the drive connection between the transfer cylinders is permanently canceled.
  • a printing unit with the features of the preamble of claim 1 is made US 2006/225590 A1 known.
  • the present invention has the object to provide a novel printing unit. This object is achieved by a printing unit according to claim 1.
  • the printing unit according to the invention allows the drive of the cylinders of such printing units, the transfer cylinder in the print-on position to form the printing gap for the printing material to roll on each other, on the one hand in the print-on position and on the other hand in the print-off position on a single drive motor.
  • the drive connection between the printing units namely between the transfer cylinders of the same, provided by drive gears.
  • the drive connection between the printing units, namely between the transfer cylinders thereof, is provided by the auxiliary gears, which together with the drive gears of the transfer cylinders are positioned on the shafts of the transfer cylinder.
  • the present invention relates to a printing unit of a web-fed printing press with a plurality of printing units.
  • a printing unit 10 which comprises two printing units 11 and 12, which is designed as a so-called four-cylinder printing unit.
  • the printing unit 10 comprises the Fig. 1a to 2c two printing units 11 and 12, wherein each of the printing units 11 and 12 has a transfer cylinder 13 and 14 and a rolling on the respective transfer cylinder 13 and 14 form cylinder 15 and 16 respectively.
  • the printing units 11 and 12 have the in Fig. 1a to 2c shown printing unit via inking units, not shown, and preferably not shown dampening units.
  • FIG. 1a to 2c shown four-cylinder printing unit 10 roll the transfer cylinders 13 and 14 of the two printing units 11 and 12 in a so-called print-on position, the Fig. 1a to 1c is shown, forming a printing gap 17 for a printing substrate 18 from.
  • the printing material 18 is therefore printed on both sides of the two printing units 11 and 12 of the four-cylinder printing unit 10 shown.
  • Fig. 1a can be seen that in a print-on position of the printing units 11, 12, in which the transfer cylinders 13 and 14 of the same define the printing gap 17 for the substrate to be printed 18, the drive gears of the cylinders 13 to 16 are engaged such a drive gear 21 positioned on a shaft 20 of the transfer cylinder 13 of the printing unit 11 meshes on the one hand with a drive gear 23 positioned on a shaft 22 of the forme cylinder 15 of the same printing unit 11 and on the other with a drive gear 25 positioned on a shaft 24 of the transfer cylinder 14 of the other printing unit 12.
  • the printing units 11 and 12, namely the transfer cylinders 13 and 14 thereof, which define the printing gap 17 for the printing substrate 18 to be printed in the print-on position, are from the print-on position to a print-off position, the in Fig. 2a to 2c is shown, convertible, namely by increasing the axial distance between the transfer cylinders 13 and 14 and thus enlarging the gap 17 between them, so that then the substrate 18 can be transported without contact by the printing unit 10 or promoted.
  • 15 and 16 printing plate changes can then be performed on the forme cylinders, for which it is necessary to drive the cylinders 13, 14, 15 and 16 of the printing units 11 and 12, wherein this driving in the printing unit 10 according to the invention from the single drive motor 19 made can, even if the distance between the transfer cylinders 13 and 14 is increased so far that the drive gears 21 and 25 of the transfer cylinders 13 and 14 are moved out of driving engagement.
  • the drive gears 21 and 25 and the auxiliary gears 30 and 31 of the transfer cylinders 13 and 14 are formed such that in the pressure-on position (see Fig. 1 c) Both the drive gears 21 and 25 and the auxiliary gears 30 and 31 mesh with each other, namely such that in the pressure-on position a backlash of the auxiliary gears 30 and 31 is greater than a backlash of the drive gears 21 and 25, so that in the pressure An-position of the transfer cylinders 13 and 14, the drive gears 21 and 25 thereof and not the auxiliary gears 30 and 31 thereof provide the drive connection between the printing units 11 and 12.
  • Fig. 2c can be removed, the drive gears 21 and 25 and the auxiliary gears 30 and 31 of the transfer cylinders 13 and 14 formed such that in the print-off position exclusively the auxiliary gears 30 and 31 of the transfer cylinders 13 and 14 mesh with each other, whereas the drive gears 21 and 25 are moved out of engagement by increasing the axial distance between the transfer cylinders 13 and 14, and do not mesh with each other.
  • the drive connection between the printing units 11 and 12 is provided by the auxiliary gears 30 and 31.
  • the drive gears 21 and 25 of the transfer cylinders 13 and 14 have a coverage of at least 1.1. Under the degree of coverage is a measure of the currently engaged meshing number of teeth of the gears to understand.
  • the auxiliary gears 30 and 31 of the transfer cylinders 13 and 14 have a coverage of at least 1.1.
  • the drive gears 21 and 25 of the transfer cylinders 13 and 14 have a larger pressure angle than the auxiliary gears 30 and 31 of the transfer cylinders 13 and 14.
  • the pressure angle is to be understood as meaning an angle between a rolling straight line and a common normal of tooth flanks in their point of contact.
  • the pressure angle is also referred to as normal engagement angle, wherein for the drive gears 20, 21, for example, a normal engagement angle of 20 ° and for the auxiliary gears 30 and 31, for example, a normal engagement angle of 15 ° can be selected.
  • the drive gears 21 and 25 have a larger number of teeth as the auxiliary gears 30 and 31. Teeth of the auxiliary gears 30 and 31 are higher and possibly wider than teeth of the drive gears 21 and 25th
  • Teeth of the auxiliary gears 30 and 31, which are wider than the teeth of the drive gears 21 and 25, are used in particular for helical gears with helical teeth.
  • auxiliary gears 30 and 31 of the transfer cylinders 13 and 14 have a larger so-called module than the drive gears 21 and 25 thereof, wherein the module is a ratio of the pitch to the mathematical ⁇ to understand, and wherein the pitch of a gear, the distance from Zahnmitte to mid-tooth on the pitch circle diameter of the gear.
  • the printing unit according to the invention therefore has a main toothing, which is formed by the drive gears 21, 23, 25 and 27 of the cylinders 13, 14, 15 and 16, and in addition via an auxiliary toothing of the auxiliary gears 30 and 31 of the transfer cylinders 13 and 14th is formed.
  • a main toothing which is formed by the drive gears 21, 23, 25 and 27 of the cylinders 13, 14, 15 and 16, and in addition via an auxiliary toothing of the auxiliary gears 30 and 31 of the transfer cylinders 13 and 14th is formed.
  • the drive connection between the printing units 11 and 12 via the main teeth namely the drive gears 21 and 25 of the transfer cylinders 13 and 14
  • the auxiliary toothing In the pressure on position the auxiliary toothing is without function.
  • the pressure-off position in which the axial distance between the transfer cylinders 13 and 14 is increased, however, the drive connection is maintained via the auxiliary teeth.
  • the auxiliary teeth on the auxiliary gears 30 and 31 has a tooth height, which ensures an engagement between the auxiliary gears 30 and 31 even with an increased center distance between the transfer cylinders 13 and 14 and preferably has a coverage of at least 1.1, to a bumpless motion transmission guarantee.
  • the printing unit according to the invention thus comes out both in the print-on position and in the print-off position for driving all the cylinders with a single drive motor.
  • the auxiliary toothing with a high modulus, low number of teeth and high teeth and thus high toothing is not suitable for the transmission of motion, in particular because of a relatively low profile overlap and a low accuracy in the pressure on position.
  • the accuracy of the auxiliary teeth is sufficient to maintain the relative circumferential position of the two transfer cylinders and the drive gears 21 and 25 to run during the movement of the transfer cylinder, ie when transferring to the print-on position, that these in the same circumferential position as get back into meshing before moving apart.
  • the auxiliary teeth in the printing unit according to the invention for the transmission of motion has no relevance.
  • the auxiliary teeth can therefore be manufactured with low demands on accuracy and with little effort.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Rotary Presses (AREA)

Claims (10)

  1. Unité d'impression (10) d'une presse d'impression rotative, comprenant au moins deux groupes d'impression (11, 12), chaque groupe d'impression (11, 12) comprenant un cylindre de transfert (13, 14), un cylindre de forme (15, 16), un dispositif d'encrage et de préférence un dispositif de mouillage, dans laquelle le cylindre de transfert (13) d'un premier groupe d'impression (11) et le cylindre de transfert (14) d'un deuxième groupe d'impression (12) roulent l'un sur l'autre en formant une fente d'impression (17) pour un support d'impression (18) à imprimer, dans laquelle le cylindre de transfert (13) et le cylindre de forme (15) du premier groupe d'impression (11) et le cylindre de transfert (14) et le cylindre de forme (16) du deuxième groupe d'impression (12) sont mis en liaison d'entraînement par le biais de roues dentées d'entraînement (21, 23, 25, 27) de telle façon qu'une roue dentée d'entraînement (21) positionnée sur un arbre (20) du cylindre de transfert (13) du premier groupe d'impression (11) ainsi qu'une roue dentée d'entraînement (25) positionnée sur un arbre (24) du cylindre de transfert (14) du deuxième groupe d'impression (12) engrènent respectivement dans une roue dentée d'entraînement (23, 27) positionnée sur un arbre (22, 26) du cylindre de forme (15, 16) du groupe d'impression (11, 12) respectif et dans une roue dentée d'entraînement (21, 25) positionnée sur l'arbre (20, 24) du cylindre de transfert (13, 14) de l'autre groupe d'impression respectif, et dans laquelle les cylindres de transfert (13, 14) du premier groupe d'impression (11) et du deuxième groupe d'impression (12) peuvent être transférés d'une position d'impression dans laquelle ceux-ci définissent la fente d'impression (17) vers une position d'arrêt d'impression, caractérisé en ce que un moteur d'entraînement (19) est attribué au cylindre de forme (15, 16) du premier groupe d'impression (11) ou du deuxième groupe d'impression (12), de telle façon qu'une roue dentée (28) positionnée sur un arbre (29) entraîné par le moteur d'entraînement (19) engrène dans la roue dentée d'entraînement (23, 27) positionnée sur l'arbre du cylindre de forme (15, 16) respectif, les cylindre (13, 14, 15, 17) du premier groupe d'impression (11) et du deuxième groupe d'impression (12) pouvant être entraînés par le moteur d'entraînement ;
    une roue dentée auxiliaire (30, 31) est respectivement positionnée sur l'arbre du cylindre de transfert (13) du premier groupe d'impression (11) et sur l'arbre du cylindre de transfert (14) du deuxième groupe d'impression (12), en plus de la roue dentée d'entraînement (21, 25) respective, dans laquelle les roues dentée d'entraînement (21, 25) des cylindres de transfert (13, 14) et non pas les roues dentées auxiliaires (30, 31) de ceux-ci fournissent la liaison d'entraînement entre les groupes d'impression (11, 12) dans la position d'impression de ceux-ci, et dans laquelle, en revanche, les roues dentées auxiliaires (30, 31) des cylindres de transfert (13, 14) et non pas les roue dentée d'entraînement (21, 25) de ceux-ci fournissent la liaison d'entraînement entre les groupes d'impression (11, 12) dans la position d'arrêt d'impression de ceux-ci.
  2. Unité d'impression selon la revendication 1, caractérisée en ce que les roue dentée d'entraînement (21, 25) et les roues dentées auxiliaires (30, 31) des cylindres de transfert (13, 14) sont formées de telle façon, que dans la position d'impression, aussi bien les roue dentée d'entraînement (21, 25) des cylindres de transfert que les roues dentées auxiliaires (30, 31) des cylindres de transfert engrènent les unes dans les autres, et en ce qu'un jeu de denture des roues dentées auxiliaires (30, 31) est supérieur à un jeu de denture des roues dentées d'entraînement (21, 25), de telle façon que dans la position d'impression des cylindre de transfert, les roues dentées d'entraînement de ceux-ci et non pas les roues dentées auxiliaires de ceux-ci fournissent la liaison d'entraînement entre les groupes d'impression (11, 12).
  3. Unité d'impression selon la revendication 1 ou 2, caractérisée en ce que les roues dentées d'entraînement (21, 25) et les roues dentées auxiliaires (30, 31) des cylindres de transfert (13, 14) sont formées de telle façon que dans la position d'arrêt d'impression, les roues dentées auxiliaires (30, 31) des cylindres de transfert engrènent les unes dans les autres, les roues dentées d'entraînement (21, 25) des cylindres de transfert n'engrenant pas les unes dans les autres.
  4. Unité d'impression selon l'une des revendications 1 à 3, caractérisée en ce que dans la position d'arrêt d'impression, les roues dentées auxiliaires (30, 31) des cylindres de transfert (13, 14) présentent un degré de recouvrement d'au moins 1,1.
  5. Unité d'impression selon l'une des revendications 1 à 4, caractérisée en ce que les roues dentées d'entraînement (21, 25) et les roues dentées auxiliaires (30, 31) des cylindres de transfert sont formées de telle façon que lors du passage des cylindres de transfert (13, 14) de la position d'impression vers la position d'arrêt d'impression, les roues dentées auxiliaires (30, 31) récupèrent la liaison d'entraînement entre les groupes d'impression avant le désengagement des roues dentées d'entraînement (21, 25).
  6. Unité d'impression selon la revendication 5, caractérisée en ce que dans la position de récupération de la liaison d'entraînement, dans laquelle les roues dentées auxiliaires (30, 31) récupèrent la liaison d'entraînement, les roues dentées d'entraînement (21, 25) des cylindres de transfert (13, 14) présentent un degré de recouvrement d'au moins 1,1.
  7. Unité d'impression selon l'une des revendications 1 à 6, caractérisée en ce que les roues dentées d'entraînement (21, 25) des cylindres de transfert (13, 14) présentent un angle d'attaque supérieur à celui des roues dentées auxiliaires (30, 31) des cylindres de transfert (13, 14).
  8. Unité d'impression selon l'une des revendications 1 à 7, caractérisée en ce que des dents des roues dentées auxiliaires (30, 31) des cylindres de transfert sont plus hautes que des dents des roues dentées d'entraînement (21, 25) des cylindres de transfert.
  9. Unité d'impression selon l'une des revendications 1 à 8, caractérisée en ce que des dents des roues dentées auxiliaires (30, 31) des cylindres de transfert sont plus larges que des dents des roues dentées d'entraînement (21, 25) des cylindres de transfert.
  10. Unité d'impression selon l'une des revendications 1 à 9, caractérisée en ce que les roues dentées auxiliaires (30, 31) des cylindres de transfert présentent un module supérieur à celui des roues dentées d'entraînement (21, 25) des cylindres de transfert.
EP11007792.2A 2010-09-30 2011-09-24 Unité d'impression Active EP2650129B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE201010047180 DE102010047180A1 (de) 2010-09-30 2010-09-30 Hilfsverzahnung an den Gummizylindern eines Gummi-Gummi-Druckwerks

Publications (2)

Publication Number Publication Date
EP2650129A1 EP2650129A1 (fr) 2013-10-16
EP2650129B1 true EP2650129B1 (fr) 2016-08-31

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EP11007792.2A Active EP2650129B1 (fr) 2010-09-30 2011-09-24 Unité d'impression

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EP (1) EP2650129B1 (fr)
DE (1) DE102010047180A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104859281A (zh) * 2015-04-27 2015-08-26 深圳市博泰印刷设备有限公司 一种间歇印刷设备
CN113978108B (zh) * 2021-11-12 2024-06-11 高斯图文印刷***(中国)有限公司 一种多色卷筒纸印刷机及其印刷方法

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2725030C3 (de) * 1977-06-03 1982-01-07 M.A.N. Maschinenfabrik Augsburg-Nürnberg AG, 8900 Augsburg Umstellvorrichtung für ein umstellbares Satellitendruckwerk
DE19746108C2 (de) * 1997-10-17 2002-12-19 Roland Man Druckmasch Antriebsanordnung für Druckzylinder einer Rotationsdruckmaschine
DE202004019776U1 (de) * 2004-12-22 2006-05-04 Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. Antriebsgetriebe für eine Werkzeugmaschine
CN101163589B (zh) * 2005-04-11 2010-05-19 高斯国际美洲公司 允许自动装版的具有单个电动机驱动的印刷单元

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Publication number Publication date
DE102010047180A1 (de) 2012-04-05
EP2650129A1 (fr) 2013-10-16

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