EP2409837B1 - Dispositif de réglage automatique de registre pour machine d'impression de tasse - Google Patents

Dispositif de réglage automatique de registre pour machine d'impression de tasse Download PDF

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Publication number
EP2409837B1
EP2409837B1 EP11166974.3A EP11166974A EP2409837B1 EP 2409837 B1 EP2409837 B1 EP 2409837B1 EP 11166974 A EP11166974 A EP 11166974A EP 2409837 B1 EP2409837 B1 EP 2409837B1
Authority
EP
European Patent Office
Prior art keywords
adjustment
shaft
adjustment mechanism
roller
center
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
EP11166974.3A
Other languages
German (de)
English (en)
Other versions
EP2409837A1 (fr
Inventor
Hualin Zhang
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.)
Shanghai Zhanhong Machinery Co Ltd
Zhejiang Honghua Machinery Plastic Co Ltd
Original Assignee
Shanghai Zhanhong Machinery Co Ltd
Zhejiang Honghua Machinery Plastic Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shanghai Zhanhong Machinery Co Ltd, Zhejiang Honghua Machinery Plastic Co Ltd filed Critical Shanghai Zhanhong Machinery Co Ltd
Publication of EP2409837A1 publication Critical patent/EP2409837A1/fr
Application granted granted Critical
Publication of EP2409837B1 publication Critical patent/EP2409837B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F17/00Printing apparatus or machines of special types or for particular purposes, not otherwise provided for
    • B41F17/08Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces
    • B41F17/14Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces on articles of finite length
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/10Forme cylinders
    • B41F13/12Registering devices
    • B41F13/14Registering devices with means for displacing the cylinders
    • 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
    • B41F13/34Cylinder lifting or adjusting devices
    • B41F13/36Cams, eccentrics, wedges, or the like
    • 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
    • B41F13/34Cylinder lifting or adjusting devices
    • B41F13/38Cylinder lifting or adjusting devices electrically or magnetically operated
    • 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
    • B41F13/34Cylinder lifting or adjusting devices
    • B41F13/40Cylinder lifting or adjusting devices fluid-pressure operated
    • 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
    • B41P2213/90Register control

Definitions

  • the invention relates to a cup printing machine, and more particularly to an automatic register device for a cup printing machine.
  • a conventional register device comprises a printing roller, and a center roll.
  • the printing roller is rotably disposed outside an eccentric sleeve, the eccentric sleeve is rotably disposed on a fixed shaft of the printing roller, the fixed shaft of the printing roller is fixedly disposed on the wallboard, the center roller is fixedly connected to the center shaft, and the center shaft is rotably disposed in a hole of the wallboard.
  • An axial adjustment mechanism is as follows: an axial adjustment nut is fixed on end surface of the printing roller, a bolt connects the axial adjustment nut with a sleeve of the printing roller, during adjustment, nuts on both ends are released to adjust the bolt, so that the axial adjustment nut drives the printing roller to axially move whereby facilitating axial adjustment of the printing roller with respect to the center roll.
  • this adjustment mechanism can operate only after the machine is shut down, adjustment at each time cannot be quantized, appropriate register requires large amount of time, and efficiency thereof is very low. 2.
  • a circumferential adjustment mechanism is as follows: an adjustment ring is connected to each of a sleeve of the printing roller, and the printing roller, a pair of adjustment nuts are disposed between the adjustment rings, a screw on the adjustment nut enables the adjustment rings to rotate whereby facilitating adjustment of the printing roller with respect to the center roller.
  • This adjustment mechanism can operate after the machine is shut down, adjustment at each time cannot be quantized, appropriate register requires large amount of time, and efficiency thereof is very low. 3.
  • a pressure adjustment mechanism is as follows: a housing of a gear box is manually toggled during adjustment, a planetary gear transmission device in the middle drives an eccentric sleeve to rotate whereby facilitating pressure adjustment between the printing roller and the center roller.
  • a register adjustment mechanism is as follows: a handle is manually toggled during adjustment, a gear transmission device in the middle drives an eccentric sleeve to rotate whereby facilitating attachment and detachment between the printing roller and the center roller, however, this adjustment mechanism features complex structure, inaccurate adjustment positions, and low efficiency.
  • a register device comprising a plate cylinder, an axial adjustment mechanism, a circumferential adjustment mechanism, and a pressure adjustment mechanism.
  • the plate cylinder has right and left shaft ends.
  • the axial adjustment mechanism, the circumferential adjustment mechanism, and the pressure adjustment mechanism are connected to right and left shaft ends.
  • the conventional register device for a cup printing machine features complex structure and inaccurate adjustment positions, axial adjustment, circumferential adjustment, and pressure adjustment can be done after the machine is shut down, appropriate register requires large amount of time, efficiency thereof is very low, automatic adjustment cannot be facilitated, and grade of products is not high.
  • an automatic register device for a cup printing machine that features simple structure, accurate adjustment, and high efficiency, and is capable of facilitating fast and automatic adjustment, axial adjustment, circumferential adjustment, pressure adjustment during printing.
  • An automatic register device for a cup printing machine comprising a printing roller, a roll shaft, a center roller, and a center shaft, said center roller being fixedly fit on said center shaft, said roll shaft being parallel to said center shaft, said center shaft being rotably disposed in a first hole of a wallboard, and capable of transmission connecting to a power mechanism of the cup printing machine, said automatic register device for a cup printing machine further comprising an axial adjustment mechanism, a circumferential adjustment mechanism; a pressure adjustment mechanism; and an adjustment mechanism for contacting or detaching the printing roller and the center roller;
  • the axial adjustment mechanism comprises a motor and an adjustment rod, the adjustment rod is disposed in a hole of the eccentric shaft, thread is disposed on an inner shaft end of the adjustment rod, an adjustment nut is connected to the thread, and rotably disposed in a bearing seat, the bearing seat is fixed on the wallboard, the adjustment nut is transmission connected to the motor, an outer shaft end of the adjustment nut is rotably disposed in another bearing seat, and the bearing seat is connected to the printing roller.
  • the motor is electrically connected to a potentiometer. Axial movement of the printing roller on the eccentric shaft is driven via an adjustment rod, and does not affect rotation of the printing roller during printing. Therefore, automatic axial adjustment during printing is facilitated.
  • the potentiometer accurately controls rotation of the motor, and thus axial adjustment is fast, accurate, and high efficient.
  • the circumferential adjustment mechanism comprises an electric adjustment device, and a helical transmission gear and a helical sun gear engaged with each other, a sliding sleeve of the electric adjustment device is disposed on an extension end of the eccentric shaft, and capable of axially sliding, the helical transmission gear is rotably disposed on excircle of the sliding sleeve, the helical transmission gear and the printing roller are transmission connected to each other via a pin, and capable of axially moving with respect to each other, and the helical sun gear is fixedly connected to the center shaft.
  • the electric adjustment device comprises a motor, a pull rod, and the sliding sleeve, the pull rod passes through the wallboard, one end of the pull rod is connected to the sliding sleeve, thread is disposed on the other end thereof and connected to an adjustment nut, the adjustment nut is rotably disposed in the bearing seat, the bearing seat is fixed on the wallboard, and the adjustment nut is transmission connected to the motor.
  • the motor is electrically connected to a potentiometer.
  • the helical transmission gear is rotably connected to the sliding sleeve, and the sliding sleeve is capable of axially sliding on the extension end of the eccentric shaft under the action of the electric adjustment device, the helical transmission gear is capable of axially moving on the extension end of the eccentric shaft. Since the helical transmission gear and the helical sun gear each has a helical angle, and the helical sun gear is axially fixed, the helical transmission gear rotates in a spiral-uprising direction with respect to the helical sun gear during axial movement. Thus, the helical transmission gear drives the printing roller to circumferentially rotate on the eccentric shaft via the pin, and the printing roller circumferentially moves with respect to the center roller. Circumferential adjustment of the printing roller does not affect rotation of the printing roller. Therefore, circumferential adjustment during printing is facilitated. Moreover, the potentiometer accurately controls rotation of the motor, and thus circumferential adjustment is fast, accurate, and high efficient.
  • the pressure adjustment mechanism comprises a worm gear, a worm, a motor, and a potentiometer
  • the worm gear is connected to a shaft end of the supported end of the eccentric shaft
  • shaft ends of the worm are respectively connected to an output shaft of each of the motor and the potentiometer
  • the motor is electrically connected to the potentiometer.
  • the motor drives the worm, the worm gear, and the eccentric shaft to rotate, and thus a position of an axis of the printing roller with respect to that of the center roller is changed, and contact pressure between the printing roller and the center roller is changed.
  • the structure is very simple, and rotation of the printing roller does not affect pressure adjustment, and thus automatic pressure adjustment during printing is facilitated.
  • the potentiometer accurately controls rotation of the motor, and thus pressure adjustment is fast, accurate, and high efficient.
  • the adjustment mechanism for contacting or detaching the printing roller and the center roller comprises a gas cylinder, and a cover plate, the cover plate is connected to the supported end of the eccentric shaft, and a piston rod and a tailstock of the gas cylinder are respectively hinge connected to the cover plate and the wallboard.
  • the gas cylinder pushes and adjusts the cover plate, so that the cover plate drives the eccentric shaft to rotate, and thus the position of the axis of the printing roller with respect to that of the center roller is changed, and contact and detachment between the printing roller and the center roller are facilitated.
  • the structure is simple, and adjustment is fast.
  • the gas cylinder only has two positions, and inaccuracy caused by manual adjustment is avoided, and thus adjustment is fast, accurate, and high efficient.
  • the motor and the gas cylinder are controlled via a touch screen. Starting of the motor and control of the gas cylinder are implemented via the touch screen, and thus automatic adjustment is facilitated, and grade of products is improved.
  • the automatic register device for a cup printing machine of the invention features simple structure, accurate adjustment, and high efficiency, and is capable of facilitating fast and automatic adjustment, axial adjustment, circumferential adjustment, pressure adjustment during printing, and improving grade of products.
  • the invention comprises the following figures:
  • FIG. 1 is a schematic view of an automatic register device for a cup printing machine of an exemplary embodiment of the invention.
  • FIG. 2 is an axial cross-sectional view of FIG. 1 .
  • an automatic register device for a cup printing machine of the invention comprises an axial adjustment mechanism, a circumferential adjustment mechanism, a pressure adjustment mechanism, a fast adjustment mechanism, a printing roller 8 , a roll shaft 7 , a center roller I , and a center shaft 2 .
  • the axial adjustment mechanism and the circumferential adjustment mechanism are connected to the printing roller 8
  • the pressure adjustment mechanism and the fast adjustment mechanism are connected to the roll shaft 7 .
  • the roll shaft 7 is an eccentric shaft
  • a left end of the eccentric shaft 7 is a supported end
  • a right end thereof is an extension end.
  • the supported end and the extension end are eccentrically disposed.
  • the supported end of the eccentric shaft 7 is rotably disposed in a hole of the wallboard 34 via a bearing 31 , and the extension end thereof extends from the wallboard.
  • the printing roller 8 is rotably connected to the extension end of the eccentric shaft 7 , and capable of axially sliding.
  • the center roller 1 is fixedly fit on the center shaft 2 .
  • the roll shaft 7 is parallel to the center shaft 2 .
  • the center shaft 2 is rotably disposed in the hole of the wallboard 34 , and transmission connected to a power mechanism of the cup printing machine (not shown).
  • the axial adjustment mechanism comprises a motor 23 , a potentiometer 27 , and an adjustment rod 4 .
  • the adjustment rod 4 is flexibly disposed in an inner hole of the eccentric shaft 7 .
  • Thread is disposed on an inner shaft end of the adjustment rod 4
  • an adjustment nut 24 is connected to the thread, and rotably disposed in a bearing seat 26 .
  • the bearing seat 26 is fixed on the wallboard 34 .
  • Gear teeth are disposed on excircle of the adjustment nut 24 , and engaged with a motor gear 22 of the motor 23 , and a potentiometer gear 28 of a potentiometer 27 , whereby forming transmission connection.
  • the motor 23 and the potentiometer 27 are fixedly connected to the bearing seat 26 .
  • the motor 23 is electrically connected to the potentiometer 27 .
  • the potentiometer 27 controls rotation of the motor 23 .
  • An external shaft end of the adjustment rod 4 is rotably disposed in the bearing seat 5 via the bearing 3 .
  • the bearing seat 5 is capable of axially moving along with the adjustment rod 4 , and fixedly connected to the printing roller 8 via a bolt 6 .
  • the circumferential adjustment mechanism comprises an electric adjustment device, and a helical transmission gear 11 and a helical sun gear 35 engaged with each other.
  • the electric adjustment device comprises a motor 18 , a potentiometer 36 , a pull rod 13 , and a sliding sleeve 12 .
  • a sliding sleeve 12 of the electric adjustment device is flexibly disposed on the extension end of the eccentric shaft 7 , and capable of axially sliding.
  • the pull rod 13 passes through the wallboard 34 .
  • the right of the pull rod 13 is connected to the sliding sleeve 12 .
  • Thread is disposed on the left of the pull rod 13 , and connected to an adjustment nut 14 .
  • the adjustment nut 14 is rotably disposed in a bearing seat 16 .
  • the bearing seat 16 is fixed on the wallboard 34 .
  • Gear teeth are disposed on excircle of the adjustment nut 14 , and engaged with a motor gear 15 of the motor 18 , and a potentiometer gear of a potentiometer 36 , whereby forming transmission connection.
  • the motor 18 and the potentiometer 36 are fixedly connected to the bearing seat 16 .
  • the motor 18 is electrically connected to the potentiometer.
  • the potentiometer controls rotation of the motor 18 .
  • the helical transmission gear 11 is rotably disposed on excircle of the sliding sleeve 12 via a bearing 10 , the helical transmission gear 11 and the printing roller 8 are transmission connected to each other via a pin 9 .
  • the left of the pin 9 is fixedly connected to the helical transmission gear 11 , and the right thereof is flexibly connected to the printing roller 8 .
  • the helical sun gear 35 is fixedly connected to the center shaft 2 .
  • the pressure adjustment mechanism comprises a worm gear 2I , a worm 19 , a worm base 20 , a motor 37 , and a potentiometer 38 .
  • the worm gear 21 is connected to a shaft end of the supported end of the eccentric shaft 7
  • shaft ends of the worm 19 are respectively connected to an output shaft of each of the motor 37 and the potentiometer 38
  • the motor 37 is electrically connected to the potentiometer 38 .
  • the potentiometer 38 controls rotation of the motor 37
  • the motor 37 and the potentiometer 38 are fixedly connected to the worm base 20
  • the worm base 20 is fixedly disposed on the wallboard 34 .
  • the fast adjustment mechanism comprises a gas cylinder 32 , and a cover plate 30 .
  • the cover plate 30 is connected to the supported end of the eccentric shaft 7 , a piston rod of the gas cylinder 32 is hinge connected to the cover plate 30 via a pin 29 , and a tailstock of the gas cylinder 32 is hinge connected to the wallboard 34 via another pin 33 .
  • the above-mentioned motors and the gas cylinder 32 are controlled via a touch screen. Starting of the motor and control of the gas cylinder 32 are implemented via the touch screen, and thus automatic adjustment is facilitated, and grade of products is improved.
  • the touch screen controls one end of the gas cylinder to intake air, the piston rod of the gas cylinder extends and applies pivoting torque on the cover plate, and the cover plate rotates, then the eccentric shaft rotates along therewith, the position the axis of the extension end of the eccentric shaft is changed, and the position of the axis of the printing roller with respect to that of the center roller is changed.
  • the printing roller is contacted with the center roller, the printing ink on the printing roller is transferred to the center roller, and a printing process begins.
  • the touch screen controls the other end of the gas cylinder to intake air, the piston rod is retracted, and the printing roller is reset. At this time, the printing roller is detached from the center roller, and the printing process is stopped. Since the gas cylinder has only two positions, attachment and detachment between the printing roller and the center roller are accurate, and fast adjustment of register is facilitated, and is accurate, which prevents inaccuracy caused by manual adjustment.
  • the printing roller rotates, as the position of the printing roller with respect to the center roller is to be axially adjusted, the touch screen starts the motor, the motor drives the motor gear and the adjustment nut to rotate, and the adjustment rod axially moves.
  • the adjustment rod drives the roll shaft to axially move via the bearing seat, and movement of the roller shaft does not affect rotation of the printing roller, which facilitates axial adjustment during printing.
  • the potentiometer accurately controls rotation of the motor, and fast and accurate adjustment is facilitated.
  • the touch screen starts the motor, the motor drives the motor gear and the adjustment nut to rotate, and the pull rod axially moves, and drives the sliding sleeve and the helical transmission gear to axially move. Since there is a helical angle between the helical transmission gear and the helical sun gear, and the helical sun gear is axially fixed, the helical transmission gear rotates in a spiral-uprising direction with respect to the helical sun gear during axial movement.
  • the helical transmission gear drives the printing roller to circumferentially rotate on the eccentric shaft via the pin, and the printing roller circumferentially moves with respect to the center roller. Circumferential adjustment of the printing roller does not affect rotation of the printing roller. Therefore, circumferential adjustment during printing is facilitated.
  • the potentiometer accurately controls rotation of the motor, and thus circumferential adjustment is fast, accurate, and high efficient.
  • the automatic register device for a cup printing machine of the invention features simple structure, accurate adjustment, and high efficiency, is capable of facilitating fast and automatic adjustment, axial adjustment, circumferential adjustment, pressure adjustment during printing, and improving grade of products, and will bring users with great convenience and active use effect.

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

Claims (9)

  1. Dispositif de registre automatique pour une machine d'impression de tasses, comprenant un rouleau d'impression (8), un arbre de rouleau (7), un rouleau central (1) et un arbre central (2), le rouleau central (1) étant inséré de manière fixe sur l'arbre central (2), l'arbre de rouleau (7) étant parallèle à l'arbre central (2), l'arbre central (2) étant disposé en rotation dans un premier trou d'une cloison (34), et capable d'une liaison en transmission vers un mécanisme de puissance de la machine d'impression de tasses,
    le dispositif de registre automatique pour une machine d'impression de tasses comprenant en outre un mécanisme de réglage axial, un mécanisme de réglage circonférentiel ; un mécanisme de réglage de la pression ; et un mécanisme de réglage pour mettre en contact ou séparer le rouleau d'impression (8) et le rouleau central (1) ;
    dans lequel :
    le mécanisme de réglage de la pression et le mécanisme de réglage pour mettre en contact ou séparer le rouleau d'impression (8) et le rouleau central (1) sont reliés à l'arbre de rouleau (7) ; l'arbre de rouleau (7) est un arbre excentrique ;
    une extrémité supportée de l'arbre excentrique est disposée dans un second trou de la cloison (34) ;
    une extrémité d'extension de l'arbre excentrique s'étend de la cloison (34) ; caractérisé en ce que :
    le rouleau d'impression (8) et l'arbre de rouleau (7) sont des pièces séparées, le rouleau d'impression (8) est ajusté de manière flexible sur l'arbre de rouleau (7) ;
    le mécanisme de réglage axial et le mécanisme de réglage circonférentiel sont reliés au rouleau d'impression (8) ; et
    le rouleau d'impression (8) est relié en rotation à l'extrémité d'extension de l'arbre excentrique, et capable d'être entraîné par glissement axial par le mécanisme de réglage axial.
  2. Dispositif de registre automatique selon la revendication 1, caractérisé en ce que
    le mécanisme de réglage axial comprend un moteur (23) et une tige de réglage (4) ;
    la tige de réglage (4) est disposée dans un trou de l'arbre excentrique ;
    le filetage est disposé sur une extrémité d'arbre intérieur de la tige de réglage (4) ;
    un écrou de réglage (24) est relié au filetage, et disposé en rotation dans un logement de palier (26) ;
    le logement de palier (26) est fixé sur la cloison (34) ; l'écrou de réglage (24) est relié en transmission au moteur (23) ;
    une extrémité d'arbre extérieur de la tige de réglage (4) est disposée en rotation dans un autre logement de palier (5) ; et
    le logement de palier (5) est relié au rouleau d'impression (8).
  3. Dispositif de registre automatique selon la revendication 1, caractérisé en ce que
    le mécanisme de réglage circonférentiel comprend un dispositif de réglage électrique, et un pignon de transmission hélicoïdal (11) et un pignon planétaire hélicoïdal (35) mis en prise l'un avec l'autre ;
    un manchon de glissement (12) du dispositif de réglage électrique est disposé sur une extrémité d'extension de l'arbre excentrique, et capable de glissement axial ;
    le pignon de transmission hélicoïdal (11) est disposé en rotation sur un cercle exinscrit du manchon de glissement (12) ;
    le pignon de transmission hélicoïdal (11) et le rouleau d'impression (8) sont reliés en transmission l'un à l'autre via une broche (9), et capables de se déplacer axialement l'un par rapport à l'autre ; et
    le pignon planétaire hélicoïdal (35) est relié de manière fixe à l'arbre central (2).
  4. Dispositif de registre automatique selon la revendication 3, caractérisé en ce que
    le dispositif de réglage électrique comprend un moteur (18), une barre de traction (13) et le manchon de glissement (12) ;
    la barre de traction (13) passe à travers la cloison (34) ;
    une extrémité de la barre de traction (13) est reliée au manchon de glissement (12) ;
    le filet est disposé sur l'autre extrémité de celle-ci et relié à un écrou de réglage (14) ;
    l'écrou de réglage (14) est disposé en rotation dans un logement de palier (16) ;
    le logement de palier (16) est fixé sur la cloison (34) ; et
    l'écrou de réglage (14) est relié en transmission au moteur (18).
  5. Dispositif de registre automatique selon la revendication 2 ou 4, caractérisé en ce que le moteur est relié électriquement à un potentiomètre.
  6. Dispositif de registre automatique selon la revendication 1, caractérisé en ce que
    le mécanisme de réglage de la pression comprend un engrenage à vis sans fin (21), une vis sans fin (19), un moteur (37), et un potentiomètre (38) ;
    l'engrenage à vis sans fin (21) est relié à une extrémité d'arbre de l'extrémité supportée de l'arbre excentrique ;
    les extrémités d'arbre de la vis sans fin (19) sont respectivement reliées à un arbre de sortie du moteur (37) et du potentiomètre (38) respectivement ; et
    le moteur est relié électriquement au potentiomètre (38).
  7. Dispositif de registre automatique selon la revendication 1, caractérisé en ce que
    le mécanisme de réglage pour mettre en contact ou séparer le rouleau d'impression (8) et le rouleau central (1) comprend un vérin à gaz (32) et une plaque de couvercle (30) ;
    la plaque de couvercle est reliée à l'extrémité supportée de l'arbre excentrique ; et
    une tige de piston et une contrepointe du vérin cylindrique (32) sont respectivement reliées en articulation à la plaque de couvercle (30) et à la cloison (34).
  8. Dispositif de registre automatique selon la revendication 2, 4, ou 6, caractérisé en ce que le moteur est commandé par un écran tactile.
  9. Dispositif de registre automatique selon la revendication 7,
    caractérisé en ce que le vérin à gaz est commandé par un écran tactile.
EP11166974.3A 2010-05-22 2011-05-20 Dispositif de réglage automatique de registre pour machine d'impression de tasse Not-in-force EP2409837B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010101832187A CN101830100B (zh) 2010-05-22 2010-05-22 印杯机自动对版部件

Publications (2)

Publication Number Publication Date
EP2409837A1 EP2409837A1 (fr) 2012-01-25
EP2409837B1 true EP2409837B1 (fr) 2013-12-18

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EP11166974.3A Not-in-force EP2409837B1 (fr) 2010-05-22 2011-05-20 Dispositif de réglage automatique de registre pour machine d'impression de tasse

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EP (1) EP2409837B1 (fr)
CN (1) CN101830100B (fr)

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CN107650488A (zh) * 2017-10-18 2018-02-02 新乡市大为创新印刷包装机械有限公司 印花机压力预置装置
CN107901581B (zh) * 2017-12-14 2023-04-14 浙江华龙机械股份有限公司 柔性版印刷机墙板
CN110356100A (zh) * 2018-03-26 2019-10-22 苏州三彩机械设备有限公司 精密可联动印刷压力调节装置
CN109514992B (zh) * 2018-12-20 2024-04-02 浙江炜冈科技股份有限公司 着墨辊机构和印刷机
CN109532209B (zh) * 2018-12-24 2023-10-27 中山市优绿智得数码科技有限公司 一种版辊传动机构
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CN112706505B (zh) * 2021-02-19 2024-05-03 温州海多堡机械科技有限公司 一种直驱式版辊结构
CN113183599B (zh) * 2021-04-29 2024-05-17 无锡光群雷射科技有限公司 版辊调节装置及调节方法
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CN115107346B (zh) * 2022-07-19 2024-01-02 无锡宝南机器制造有限公司 一种印刷机版辊微调结构
CN117283972B (zh) * 2023-11-20 2024-02-27 广东华盛铭兔环保科技股份有限公司 一种曲面印刷机的印版机构

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