EP1226937B1 - Entraînement sans arbre à moteur pour une machine d'impression avec un rouleau d'encrage anilox - Google Patents

Entraînement sans arbre à moteur pour une machine d'impression avec un rouleau d'encrage anilox Download PDF

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Publication number
EP1226937B1
EP1226937B1 EP02001099A EP02001099A EP1226937B1 EP 1226937 B1 EP1226937 B1 EP 1226937B1 EP 02001099 A EP02001099 A EP 02001099A EP 02001099 A EP02001099 A EP 02001099A EP 1226937 B1 EP1226937 B1 EP 1226937B1
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EP
European Patent Office
Prior art keywords
cylinder
roller
printing
anilox
motor
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 - Lifetime
Application number
EP02001099A
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German (de)
English (en)
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EP1226937A1 (fr
Inventor
Martin John Callahan
Stephen Franklin
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.)
Goss International Americas LLC
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Goss International Americas LLC
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Filing date
Publication date
Application filed by Goss International Americas LLC filed Critical Goss International Americas LLC
Publication of EP1226937A1 publication Critical patent/EP1226937A1/fr
Application granted granted Critical
Publication of EP1226937B1 publication Critical patent/EP1226937B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/004Electric or hydraulic features of drives
    • B41F13/0045Electric driving devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2213/00Arrangements for actuating or driving printing presses; Auxiliary devices or processes
    • B41P2213/70Driving devices associated with particular installations or situations
    • B41P2213/73Driving devices for multicolour presses
    • B41P2213/734Driving devices for multicolour presses each printing unit being driven by its own electric motor, i.e. electric shaft

Definitions

  • the present invention relates to printing machines, and more particularly to an apparatus and method for driving rollers and cylinders in a printing press according to claims 1 and 13.
  • Offset printing machines usually have a printing form cylinder which carries an imaged printing plate. During printing, the printing plate is inked and the inked image is transferred to a blanket, which then prints on the paper sheets or on a continuous paper web.
  • the ink for the forme cylinder may be supplied from an anilox ink roller comprising an anilox roller having a row of cells for feeding the ink via a roller to the printing form cylinder.
  • the drive for an offset printing press has traditionally been a common drive shaft running on the drive side of the printing press, with worm gears and other transmissions distributing power from the shaft.
  • the US 6,050,185 describes a shaftless drive, wherein a first drive motor drives a first inking roller either directly or via another drive.
  • the first drive motor is mechanically coupled to the first plate cylinder via a first gear train having a gear fixed to the drive shaft of the first plate cylinder.
  • a second drive motor drives a further printing form cylinder and a further inking roller.
  • the first blanket cylinder and the second blanket cylinder of the printing press are mechanically coupled to each other and driven by a third motor.
  • the above patent does not disclose either an anilox roll, a two-motor configuration, an inking roll, or an inking roll of a similar diameter to that of the printing form cylinder.
  • EP 0 699 524 describes an offset printing machine. Cylinders and functional groups are driven with minimal technical effort. It is provided a printing unit, wherein the printing form cylinder are each driven by a separate electric motor and are not mechanically coupled to each other. Independently driven cylinders in a folder are also described.
  • the bridge-like printing units can be constructed symmetrically in the vertical direction and be movable in the horizontal direction to ensure a low height.
  • Each side of a unit comprises a plate cylinder and a blanket cylinder.
  • An inking unit for the printing form cylinder may comprise, instead of a paint pan and a paint roller, a paint chamber doctor in conjunction with an anilox roller.
  • the drive of the dampening unit and the inking unit can be done by friction with the printing forme cylinder or based on a single motor drive the inking roller and the dampening form roller or on the basis of a known gear drive.
  • the driving of the printing forme cylinder by a motor which drives the inking unit directly is not described. In addition, the correct lateral registration is difficult to maintain when a drive motor is connected directly to the plate cylinder.
  • the invention is therefore based on the object to provide an apparatus and a method for shaftless driving of rollers and cylinders in a printing press.
  • the present invention provides a printing unit of an offset printing press with a first printing form cylinder; a first blanket cylinder for selectively contacting the first printing form cylinder; an anilox ink roller for coloring the first printing form cylinder; a first motor directly connected to the anilox ink roller for driving the anilox ink roller and to the first printing form cylinder for driving the first plate cylinder; a second printing form cylinder; a second blanket cylinder for selectively contacting the second printing form cylinder; a second anilox ink roller for coloring the second printing form cylinder; a second motor directly connected to the second anilox ink roller for driving the second anilox ink roller and to the second printing forme cylinder for driving the second plate cylinder.
  • the anilox ink rollers include an inking roller and an anilox roller having a paint chamber, the motors driving the respective inking rollers directly.
  • the inking roller preferably has the same diameter as the printing form cylinder, whereby the drive properties are improved.
  • the anilox roller may be formed smaller or similar to the diameter of the plate cylinder.
  • the printing press comprises a third motor for driving the first and second blanket cylinders.
  • the first motor drives the first inking roller directly and the anilox roller and the first plate cylinder from a series of gears
  • the second motor directly drives the second inking roller and the second anilox roller and the second plate cylinder through a second series of gears.
  • the blanket cylinders are driven by the third motor through a third row of gears, which may be configured so that the blanket cylinder engages directly with two gears and the motor drives one of the gears.
  • each blanket cylinder may have a separate gear separate from the other, each gear being driven by the third motor.
  • the printing form cylinders can be separated from the blanket cylinders during the stopping operation because the three rows of gears are separate from each other, and each plate cylinder / blanket cylinder combination can continue to print while the other plate cylinder is turned off.
  • the first and second motors also drive the blanket cylinders.
  • the anilox ink rollers are driven directly and a first gear connected to the motor drives the first impression cylinder and a second gear connected to the second motor drives the second impression cylinder.
  • the first and second blanket cylinders are respectively connected to the third and fourth gearwheels. When both printing units are printing, one of the first and second gears drives the third and fourth gears, so that all the cylinders are driven.
  • the first and the third gear can be decoupled, while the second gear drives the third and fourth gears.
  • the second printing form cylinder can remain in printing operation.
  • the second and fourth gears can be decoupled.
  • the first printing form cylinder can still print.
  • the first and second gears are preferably axially movable relative to their respective die cylinders to respectively enable the parking of the third and fourth gears.
  • the first and second anilox ink rollers each include an inking roller and an anilox roller, with the first and second motors directly driving the respective inking roller.
  • the method may further include driving the first and second blanket cylinders with one of the first and second motors or a third motor.
  • the second plate cylinder, the second anilox roller, and the first and second blanket cylinders may continue to operate.
  • the first anilox ink roller and the first and second blanket cylinders may continue to operate.
  • Fig. 1 shows a drive side of an embodiment of a printing press 1 with two longitudinally driven printing units 3 and 4.
  • a web 5 is on both sides of the offset printing units 3, 4 can be printed.
  • the printing unit 4 comprises a first pair of printing couples with a printing form cylinder 16 and a blanket cylinder 18.
  • An anilox roller 12 having a ink chamber 13 and an inking roller 14, which together form an anilox ink roller, apply ink to a printing form cylinder 16.
  • the printing unit 4 has a second pair of printing with a printing form cylinder 36 and a blanket cylinder 38.
  • the blanket cylinders 18 and 38 serve as impression cylinders and are in contact with the web when one or both print pairs are printing.
  • the anilox ink roller for the printing form cylinder 16 is driven on the inking roller 14 by a motor 20 having an axis of the roller 14th drives.
  • a gear 40 on the axis of the cylinder 14 is connected to a gear 42 on an axis of the anilox roller 12 and to a gear 46 on an axis of the plate cylinder 16.
  • the motor 20 thus drives the rollers 12, 14 and the cylinder 16 at.
  • the inking roller 14 and the plate cylinder 16 are preferably of the same diameter.
  • the anilox ink roller has the advantage that the pre-inking of the plate cylinder 16 can be done before the re-contacting the printing plate cylinder 16 with the blanket cylinder 18 after parking. In the anilox ink roller, no ink fountain keys need to be adjusted, and the proper ink coverage on the web 5 can be provided from the first revolution of the blanket cylinder 18.
  • the blanket cylinders 18 and 38 are driven by a motor 21 which is connected to a gear 50.
  • the gear 50 drives a gear 51 on a side that drives a gear 53 on a shaft of the blanket cylinder 18.
  • the gear 50 drives another gear 52 on the shaft of the blanket cylinder 38 at.
  • the gears 52 and 53 are not in contact.
  • Another motor 22 drives the axis of the inking roller 34, on the axis of a gear 60, the gears 62 and 66 drives.
  • the gears 62 and 66 respectively drive the plate cylinder 36 and the anilox roller 32.
  • the printing form cylinder 16 and 36 can each be pivoted away during a shutdown of the blanket cylinders 18, 38. Since the motors 20, 21, 22 are independent, the print pair 16, 18 and the blanket cylinder 38 can be operated when the plate cylinder 36 is turned off, and the pair of printing 36, 38 and the blanket cylinder 18 can be operated when the plate cylinder 36 is turned off is. Therefore, printing can be continued with one ink, while the other printing forme cylinder is e.g. is provided with a new image.
  • Fig. 4 shows a different configuration of Fig. 3 in which the motor 21 drives the gear 50, which in turn drives the gear 52 as in Fig. 3 shown drives.
  • the gear 52 drives the gear 53 to drive the blanket cylinder 18. Even if the Configuration off Fig. 4 less gears needed, can the power distribution off Fig. 3 be more desirable.
  • Fig. 2 shows an alternative embodiment of a printing machine 101 according to the invention with two motors. While the configuration with three motors off Fig. 1 creates more uniform loads, the configuration with the two motors reduces the number of necessary motors.
  • the printing unit 104 of the printing press 101 comprises a first printing couple with a printing form cylinder 116 and a blanket cylinder 118.
  • the printing unit 104 has a second pair of printing with a printing form cylinder 136 and a blanket cylinder 138.
  • the blanket cylinders 118 and 138 serve as impression cylinders and are in contact with the web when printing a pair or both pairs of prints.
  • the anilox ink roller for the plate cylinder 116 is driven on the inking roller 114 by a motor 120 which drives an axis of the roller 114.
  • a gear 140 on the axis of the inking roller 114 is connected to a gear 142 on an axis of the anilox roller 112 and to a gear 146 on an axis of the plate cylinder 116.
  • the motor 120 thus drives the rollers 112, 114 and the cylinder 116.
  • the inking roller 114 and the plate cylinder 116 preferably have the same diameter to ensure better power and color distribution.
  • the gear 146 is also axially movable relative to the cylinder 116 so as to be selectively engageable with a gear 148 connected to the blanket cylinder 118.
  • the gear 148 is connected to the gear 168 of the blanket cylinder 138.
  • Another motor 122 drives the axis of the inking roller 134, on which a gear 160 is arranged, which drives the gears 162 and 166.
  • the gears 162 and 166 drive the impression cylinder 36 and the anilox roller 132, respectively.
  • the gear 166 is selectively engageable with the gear 168, wherein in Fig. 5 the gear 168 is not in contact with the gear 166.
  • the gear 166 is thus driven by the motor 122 and the gear 168 of the motor 120th
  • Fig. 6 shows a printing form cylinder 136, which is turned off by the blanket cylinder 138, and a gear 166, which is offset from the gear 168.
  • the engine 120 drives the rollers 112 and 114 and the cylinders 116, 118 and 138.
  • Fig. 7 shows a plate cylinder 116, which is turned off by the blanket cylinder 118, wherein the gears 146 and 148 are turned off.
  • the motor 122 drives the rollers 132 and 134 and the cylinders 136, 138 and 118.
  • the inking roller can also be parked by their respective plate cylinder or their respective anilox roller.
  • Die Cylinder as defined herein includes each image bearing cylinder.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Inking, Control Or Cleaning Of Printing Machines (AREA)

Claims (16)

  1. Machine d'impression offset, comportant un premier cylindre porte-plaque (16) ;
    un premier cylindre porte-blanchet (18) destiné à entrer en contact au choix avec le premier cylindre porte-plaque (16) ;
    un premier rouleau d'encrage anilox destiné à encrer le premier cylindre porte-plaque (16) ;
    un premier moteur (20) qui est relié directement au rouleau d'encrage anilox pour actionner le rouleau d'encrage anilox et qui est relié au premier cylindre porte-plaque (16) pour actionner le premier cylindre porte-plaque (6) ;
    un deuxième cylindre porte-plaque (36) ;
    un deuxième cylindre porte-blanchet (38) destiné à entrer en contact au choix avec le deuxième cylindre porte-plaque (36) ;
    un deuxième rouleau d'enerage anilox destiné à encrer le deuxième cylindre porte-plaque (36) ; et
    un deuxième moteur (22), qui est relié directement au deuxième rouleau d'encrage anilox pour actionner le deuxième rouleau d'enerige anilox, et qui est relié au deuxième cylindre porte-plaque (36) pour actionner le deuxième cylindre porte-plaque (36),
    caractérisée en ce que
    les rouleaux d'encrage anilox comprennent chacun un rouleau d'encrage (14, 34, 114, 134) et un rouleau anilox (12, 32, 112, 132), les premiers et deuxièmes moteurs (20, 22, 120, 122) actionnant directement le rouleau d'encrage (14, 34, 114, 134) respectif.
  2. Machine d'impression selon la revendication 1, caractérisée en ce que
    le rouleau d'encrage (14) et le premier cylindre porte-plaque (16) ont le même diamètre.
  3. Machine d'impression selon la revendication 1, caractérisée en ce que
    la machine d'impression (1) comporte, en outre, un troisième moteur (21) destiné à actionner le premier et le deuxième cylindre poete-blanchet (18, 38).
  4. Machine d'impression selon la revendication 3, caractérisée en ce que
    le rouleau d'encrage anilox comprend un rouleau anilox (12, 32, 112, 132) et un rouleau d'encrage (14, 34, 114, 134), le premier moteur (20) actionnant directement le rouleau d'encrage (14) et actionnant par l'intermédiaire d'une rangée de roues dentées (40, 42, 46) le rouleau anilox (12) et le premier cylindre porte-plaque (16), et le deuxième rouleau d'encrage anilox comprend un deuxième rouleau anilox (32) et un deuxième rouleau d'encrage (34), le deuxième moteur (22) actionnant directement le deuxième rouleau d'encrage (34) et actionnant par l'intermédiaire d'une deuxième rangée de roues dentées (60, 62, 66) le deuxième rouleau anilox (32) et le deuxième cylindre porte-plaque (36).
  5. Machine d'impression selon la revendication 3, caractérisée en ce que
    le premier et le deuxième cylindre porte-blanchet (18, 38) sont en engrènement direct l'un avec l'autre.
  6. Machine d'inpression selon la revendication 3, caractérisée en ce que
    le premier et le deuxième cylindre porte-blanchet (18, 38) comportent des roues dentées (52, 53) directes, séparées l'une de l'autre, chaque roue dentée directe étant actionnée par le troisième moteur (21).
  7. Machine d'impression selon la revendication caractérisée en ce que
    le premier cylindre porte-plaque (116) peut être découplé du premier cylindre porte-blanchet (118), tandis que le deuxième cylindre porte-plaque (136) continue un processus d'impression.
  8. Machine d'impression selon la revendication 1, caractérisée en ce que
    le premier et le deuxième moteur (120, 122) actionnent le premier et le deuxième cylindre porte-blanchet (118, 138),
  9. Machine d'impression selon la revendication 8, caractérisée en ce que
    le premier rouleau d'encrage anilox comprend un rouleau d'encrage (114) et le deuxième rouleau d'encrage anilox comprend un deuxième rouleau d'encrage (134), dans un premier mode de fonctionnement, le rouleau d'encrage (114) étant actionne directement par le premier moteur (120), et le premier cylindre porte-plaque (116), le premier cylindre porte-blanchet (118) et le deuxième cylindre porte-blanchet (138) étant actionnés indirectement par le premier moteur (120).
  10. Machine d'impression selon la revendication 9, caractérisée en ce que
    le deuxième cylindre porte-plaque (136) est découplé du deuxième cylindre porte-blanchet (138).
  11. Machine d'impression selon la revendication 9, caractérisée en ce que
    dans un deuxième mode de fonctionnement, le deuxième moteur (122) actionné le deuxième rouleau d'encrage (134), le deuxième cylindre porte-plaque (136) et le premier et le deuxième cylindre parte-blanchet (118, 138),
  12. Machine d'impression selon la revendication 11, caractérisée en ce que
    le premier cylindre porte-plaque (116) est découplé du premier cylindre porte-blanchet (118).
  13. Procédé pour l'actionnement d'un groupe d'impression (104), comportant un premier rouleau anilox (132), un premier cylindre porte-plaque (116), un premier cylindre porte-blanchet (118), destiné à entrer en contact au choix avec le premier cylindre porte-plaque (116), comportant un deuxième cylindre porte-plaque (136), un deuxième cylindre porte-blanchet (138), destiné à entrer en contact au choix avec le deuxième cylindre porte-plaque (136), et un deuxième rouleau d'encrage anilox, ledit procédé comprenant les étapes suivante
    actionnement direct du premier rouleau d'encrage anilox au moyen d'un premier moteur (120) ;
    actionnement indirect du premier cylindre porte-plaque (116) au moyen du premier monteur (120);
    actionnement direct du deuxième rouleau d'encrage anilox au moyen d'un deuxième moteur (122); et
    actionnement indirect du deuxième cylindre porte-plaque (136) au moyen du deuxième moteur (122),
    caractérisé en ce que
    le premier et le deuxième rouleau d'encrage anilox comprennent chacun un rouleau d'encrage (14, 114) et un rouleau anilox (12, 112), le premier et deuxième moteur (20, 120) actionnant directement le rouleau d'encrage (14, 114) respectif.
  14. Procédé selon la revendication 13, caractérisé en ce que
    le procédé comprend, en outre, l'actionnement du premier et du deuxième cylindre porte-blanchet (118, 138) avec un des premiers ou deuxièmes moteurs (120, 122).
  15. Procédé selon la revendication 13, caractérisé en ce que
    le procédé comprend, en outre, l'actionnement du premier et du deuxième cylindre porte-blanchet (18, 38) avec un troisième moteur (21).
  16. Procédé selon la revendication 13, caractérisé en ce que
    le rouleau d'encrage (14, 114) et le premier cylindre porte-plaque (16, 116) ont le même diamètre,
EP02001099A 2001-01-24 2002-01-23 Entraînement sans arbre à moteur pour une machine d'impression avec un rouleau d'encrage anilox Expired - Lifetime EP1226937B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US768736 2001-01-24
US09/768,736 US7216585B2 (en) 2001-01-24 2001-01-24 Shaftless motor drive for a printing press with an anilox inker

Publications (2)

Publication Number Publication Date
EP1226937A1 EP1226937A1 (fr) 2002-07-31
EP1226937B1 true EP1226937B1 (fr) 2011-10-19

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EP02001099A Expired - Lifetime EP1226937B1 (fr) 2001-01-24 2002-01-23 Entraînement sans arbre à moteur pour une machine d'impression avec un rouleau d'encrage anilox

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Country Link
US (1) US7216585B2 (fr)
EP (1) EP1226937B1 (fr)
AT (1) ATE529258T1 (fr)
DE (1) DE10202388A1 (fr)

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US9475276B2 (en) 2011-04-27 2016-10-25 Stolle Machinery Company, Llc Can decorator machine, ink station assembly therefor, and can decorating method employing same
CN113260513B (zh) 2018-11-09 2023-02-03 鲍尔公司 用于装饰机的油墨站组件的计量辊和使用装饰机装饰容器的方法

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Also Published As

Publication number Publication date
ATE529258T1 (de) 2011-11-15
DE10202388A1 (de) 2002-07-25
US7216585B2 (en) 2007-05-15
US20020096066A1 (en) 2002-07-25
EP1226937A1 (fr) 2002-07-31

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