EP2862715B1 - Presse - Google Patents

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Publication number
EP2862715B1
EP2862715B1 EP14188792.7A EP14188792A EP2862715B1 EP 2862715 B1 EP2862715 B1 EP 2862715B1 EP 14188792 A EP14188792 A EP 14188792A EP 2862715 B1 EP2862715 B1 EP 2862715B1
Authority
EP
European Patent Office
Prior art keywords
printing
printed
cargo
transport device
conveyor belt
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
EP14188792.7A
Other languages
German (de)
English (en)
Other versions
EP2862715A3 (fr
EP2862715A2 (fr
Inventor
Stefan Albrecht
Marek Jirous
Xaver Bachmeir
Stephan Fischer
Christian Trometer
Norbert Rothenberger
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
Original Assignee
Manroland Web Systems GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from DE201310111534 external-priority patent/DE102013111534A1/de
Application filed by Manroland Web Systems GmbH filed Critical Manroland Web Systems GmbH
Publication of EP2862715A2 publication Critical patent/EP2862715A2/fr
Publication of EP2862715A3 publication Critical patent/EP2862715A3/fr
Application granted granted Critical
Publication of EP2862715B1 publication Critical patent/EP2862715B1/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
    • B41F7/00Rotary lithographic machines
    • B41F7/16Rotary lithographic machines for printing on non-deformable material, e.g. sheet metal
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F21/00Devices for conveying sheets through printing apparatus or machines

Definitions

  • the invention relates to a printing press according to the preamble of claim 1. Furthermore, the invention relates to a method for operating a printing press.
  • a sheet-fed printing machine In a sheet-fed printing machine, individual printing sheets are printed in printing units of the sheet-fed printing machine as substrates to be printed, with the printing sheets to be printed being transported by means of a gripper system in the printing units through the sheet-fed printing press.
  • cylinders of printing units of a sheet-fed printing press and positioned between the printing units transfer cylinders of the sheet printing machine associated gripper systems by means of which a printing sheet is detected at a leading edge in the transport direction of the sheet so as to transport the sheet to be printed by the individual printing units of the sheet-fed press At the beginning of the transport path of the printing sheet to be printed sheets to be printed by an investor of the sheet-fed press are kept, at the end of the transport path after printing the sheet, the printed sheets are designed via a boom.
  • such substrates can be printed as printed sheets, which are flexible and therefore unsteady, ie substrates which can adapt in their contour to the circumference of the cylinder of the printing press serving for the sheet transport.
  • substrates in a sheet-fed printing press sheets of paper, sheets of cardboard or sheets of flexible sheet metal can be printed.
  • Web presses have gripperless printing units and are used to print on a virtually endless substrate, such as printing on a continuous paper web to be unwound from a roll. Since in web presses a practically endless substrate belt is therefore printed, printing units of a web-fed printing press have no grippers, but merely devices for regulating the position of the substrate strip to be printed. Since no gripper must be controlled in web presses, higher printing speeds can be achieved with web presses, so that it is therefore possible to print in web presses a higher number of copies per unit time than in sheet-fed presses. In web presses so far only such substrates can be printed, which are flexible and non-rigid, such as paper, thin cardboard or films.
  • EP 1 364 783 A2 discloses a printing press with flexographic printing units for printing dimensionally stable piece goods. Next state of the art is from the EP 1 500 504 A2 and the DE 44 43 031 A1 known.
  • the present invention has the object to provide a novel printing press and a method for operating the same. This object is achieved by a printing machine according to claim 1.
  • the transport device is used, with the help of which the dimensionally stable and relatively rigid cargo is transported for printing by the gripperless printing units of the web press.
  • the feeder is used for accurate registration of the exact position of the page register and precise positioning of the dimensionally stable and relatively rigid piece goods on the transport device for registration-accurate printing of the piece goods in the gripper-free printing units of the web press.
  • the transport device is designed as a conveyor belt system, which has at least one tensioned on deflection rollers conveyor belt, wherein the piece goods to be printed is fixed by the or each gripperless printing unit on the conveyor belt preferably by gluing or by magnetic effects or by electrostatic effects ,
  • the transport device is designed as a vacuum conveyor belt system or Saug shorebandsystem having at least one stretched at deflection rollers vacuum conveyor belt or suction conveyor, wherein the to be printed piece goods fixed during transport through the or each gripperless printing unit on the vacuum conveyor belt or suction conveyor by vacuum is.
  • Both advantageous developments of the invention allow the transport of the piece goods to be printed by the printing units of the web press with a high transport speed, which can be achieved at the printing speed which can be achieved with web presses is adjusted. This allows a particularly advantageous printing of the piece goods in the gripperless printing units of the web press.
  • dimensionally stable and relatively rigid piece goods are transported by the or each gripper-free offset printing unit, with the feeder for the subsequent printing, the piece goods being placed on the transport device with the correct registration accuracy and precise registration.
  • Fig. 1 shows a highly schematic view of a printing machine 10 according to the invention, wherein in the illustrated embodiment, the printing machine 10 includes a plurality of gripperless printing units 11 of a web printing machine, through which a substrate to be printed in the horizontal direction 12 is transportable.
  • the printing units 11 comprise an inking unit, not shown, and preferably a dampening unit, not shown.
  • the printing units 11 are printing units of a web-fed printing press, which accordingly have no grippers.
  • the printing machine 10 furthermore has a transport device 16, via which dimensionally stable and relatively stiff piece goods 17 can be transported through the gripperless printing units 11 of the web press as the substrate to be printed.
  • dimensionally stable and relatively rigid cargo 17 is such general cargo to understand, which does not adapt to the cylinder contours of the printing units during transport and printing.
  • This dimensionally stable and relatively rigid piece goods are, for example, wood fiber boards such as MDF boards, thick cardboard boxes or glass panes.
  • the transport device 16 is designed as a conveyor belt system which has at least one endless conveyor belt 19 tensioned on deflecting rollers 18.
  • the printable, dimensionally stable and relatively rigid piece goods 17 are fixed for transport by the gripperless printing units 11 on the respective conveyor belt 19 preferably by gluing.
  • the respective conveyor belt 19 preferably has an at least two-layer construction of an outer layer 20 facing the goods to be transported 17 and an inner, facing away from the transporting cargo 17 layer 21, wherein it is preferably a layer 20 of polyurethane in the outer layer 20 of the respective conveyor belt 19, on which the cargo 17 is to be fixed by gluing.
  • the piece goods 17 to be transported and to be printed on such a polyurethane layer can be fixed particularly advantageously by gluing and, after printing, can also be easily released from the respective conveyor belt 19.
  • the printable, dimensionally stable and relatively stiff piece goods 17 can be fixed on the respective conveyor belt 19 by electrostatic effects or magnetic effects or adhesive effects.
  • the respective conveyor belt can be designed as a flat belt or chain belt or link belt. Then, when the conveyor belt is designed as a link belt, the same preferably comprises a plurality of chain-like connected chain elements whose dimensions are matched to the print format of the piece goods to be printed.
  • the transport device 16 is designed as a vacuum conveyor belt system or Saug basicbandsystem, which Has at least one stretched on deflection rollers vacuum conveyor belt or suction conveyor.
  • the item to be printed 17 is then fixed or held by the or each gripperless printing unit 11 on the respective vacuum conveyor belt or suction conveyor belt by vacuum during transport.
  • a plurality of conveyor belts, vacuum conveyor belts or suction conveyor belts for transporting the piece goods 17 to be printed can be used by the gripperless printing units 11 of the printing press 10.
  • Fig. 5 an embodiment of a printing machine 10, which uses a plurality of conveyor belts 19 positioned behind one another in the transport direction.
  • a conveyor belt 19, which is guided on deflecting rollers 18, is positioned between in each case two printing units 11 positioned one behind the other as well as in front of the foremost printing unit 11 and behind the rearmost printing unit 11.
  • the transport device 16 comprises reversibly movable transport tables, however, such reversibly movable transport tables have the disadvantage of a limited production speed. Therefore, the use of a conveyor belt system for transporting the piece to be printed 17 by the printing units of the web press is preferred.
  • the printing press 10 of the invention further has a feeder 22, which holds the to be printed, dimensionally stable and relatively rigid piece goods 17 preferably in the form of a stack, and which the to be printed piece goods 17 on the transport device 16 for subsequent printing in the printing units 11 with the exactness of the circumference and the exact position of the page.
  • the printable, dimensionally stable and relatively rigid piece goods 17 is positioned on the conveyor 16 with the help of the investor 22 accurate to the circumference and precise page, so that an accurate, register-accurate printing of the piece goods 17 can be done.
  • the transport device 16 in particular the or each conveyor belt 19 thereof, is guided stably in the printing machine in the lateral direction and in the circumferential direction.
  • the register accuracy of the pressure is determined solely by placing the piece goods 17 on the transport device 16.
  • the feeder 22 is actuated by means of a signal, which is preferably dependent on the angular position of the cylinders of the printing units 11. This Signal can be embarrassed via a rotary position sensor, for example, the forme cylinder 13 or the transfer cylinder 14 of one of the printing units 11.
  • the actuation of the feeder 22 for the accurate positioning of the piece goods 17 with precise lateral register accuracy and on the transport device 16 can also take place as a function of the measurement of marks which are applied to a cylinder 13, 14 or 15 or to a printing forme.
  • the piece goods 17 to be printed are positioned by the feeder 22 on the transport device 16 in such a way that each piece goods 17 to be newly placed or repositioned on the transport device 16 is positioned on the transport device 16 at a defined distance ⁇ l from the respective upstream piece goods 17 ,
  • This distance .DELTA.l is dependent on the extent of the transfer cylinder 14 of the printing units 11 involved in the printing as well as on the printing format of the piece goods to be printed 17.
  • Fig. 1 corresponds to the distance .DELTA.l between two directly successive, to be printed piece goods 17 the distance .DELTA.l between the trailing edges or alternatively the distance between the leading edges of the piece goods 17th
  • the distance .DELTA.l between two successive, to be printed piece goods 17 corresponds to the circumference of the transfer cylinder 14 of the printing units 11. Per cylinder rotation is then a piece goods 17 printed.
  • the already mentioned exactness of the circumference and the position of the exact position of the piece goods 17 on the transport device 16 ensure that the position of the piece goods 17 to be printed on the transport device 16 with the position of a print image 23 on the transfer cylinder 14 (see Fig. 2 ) coincides.
  • the remaining area of the transfer cylinder 14 carries according to Fig. 1 no image information.
  • a printed image 23 to be applied by the respective transfer cylinder 14 to the respective article 17 occupies a relatively large section of the cylinder circumference of the respective transfer cylinder 14.
  • the distance .DELTA.l between successive piece goods 17 is determined not only dependent on the size of the transfer cylinder 14 of the printing units 11, but rather additionally depending on the print size of the piece goods to be printed 17th
  • the distance .DELTA.l corresponds to half the circumference of the transfer cylinder 14. Then, if each piece of machinery 17 three piece goods to be printed, corresponds to the Distance .DELTA.l one-third of the circumference of the transfer cylinder 14. Then, if per machine revolution, a number m piece goods 17 are to be printed, the distance .DELTA.l corresponds to one m-th of the circumference of the transfer cylinder fourteenth
  • the printed images 23 to be printed are evenly distributed over the circumference of the transfer cylinders 14 of the printing units 11. In this case, then the distance .DELTA.l between the cargo 17 is uniform. In contrast, it is also possible to make a non-uniform distribution of the printed images 23 on the circumference of the transfer cylinder 14 with a corresponding control of the web printing press 10.
  • the printable printing format corresponds at most to the circumference of the transfer cylinder 14.
  • the printing units 11 of the printing press 10 are all designed as offset printing units.
  • the print format of the piece goods 17 to be printed is smaller than the circumference of the transfer cylinder 14 used for printing of the respective printing units 11 or corresponds to this maximum extent.
  • the transfer cylinders 14 used for printing transmit at least one printed image on their circumference or subject.
  • the transfer cylinders 14 preferably transmit a plurality of printed images or subjects per revolution, so that a plurality of printed images or subjects are then transmitted one after the other at the circumference.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Feeding Of Articles By Means Other Than Belts Or Rollers (AREA)

Claims (10)

  1. Machine d'impression, comportant au moins une unité d'impression offset sans préhenseur, à travers laquelle un substrat à imprimer peut être transporté dans le sens horizontal, l'unité ou chaque unité d'impression offset sans préhenseur (11) comprenant un cylindre porte-cliché (13), un cylindre de transfert (14), un cylindre d'impression (15), un groupe d'encrage et de préférence un groupe de mouillage et le substrat à imprimer étant transporté entre le cylindre de transfert (14) et le cylindre d'impression (15) dans le sens horizontal par l'unité respective d'impression offset sans préhenseur (11), un dispositif de transport (16) grâce auquel peuvent être transportés dans l'unité ou chaque unité d'impression offset sans préhenseur (11), en tant que substrats imprimés, des exemplaires (17) de forme stable et relativement rigides qui, lors du transport et de l'impression, ne s'adaptent pas aux contours cylindriques des unités d'impression offset (11),
    caractérisée par un margeur (22) qui tient prêt l'exemplaire à imprimer (17) et grâce auquel l'exemplaire à imprimer (17) peut être placé sur le dispositif de transport (16) pour impression consécutive dans les unités d'impression offset (11) en s'adaptant précisément à la circonférence et en s'adaptant précisément à la face,
    le margeur (22) positionnant les exemplaires à imprimer (17) sur le dispositif de transport (16) de manière à ce que chaque exemplaire (17) à placer nouvellement sur le dispositif de transport (16) soit positionné à une distance définie dépendant d'une circonférence du cylindre de transfert (14) et d'un format d'impression de l'exemplaire à imprimer (17) par rapport à l'exemplaire amont respectif (17) sur le dispositif de transport (16).
  2. Machine d'impression selon la revendication 1, caractérisée en ce que si, par rotation du cylindre de transfert (14), un nombre m d'exemplaires (17) est imprimé, la distance équivaut à un m-ième de la circonférence des cylindres de transfert (14).
  3. Machine d'impression selon la revendication 1, caractérisée en ce que si, à chaque n-ième rotation des cylindres de transfert (14), un exemplaire (17) est imprimé, la distance équivaut à n fois la circonférence des cylindres de transfert (14).
  4. Machine d'impression selon une des revendications 1 à 3, caractérisée en ce que le margeur (22), pour un placement précis de l'exemplaire (17) sur le dispositif de transport (16), est commandé en fonction de la position de l'angle de rotation d'un cylindre ou en fonction de la mesure d'une marque qui est apposée sur un cylindre ou sur un cliché d'impression ou en fonction d'un balayage sans marqueur d'un cliché d'impression.
  5. Machine d'impression selon une des revendications 1 à 4, caractérisée en ce que le dispositif de transport (16) est réalisé sous forme d'un système de bande transporteuse qui présente au moins une bande transporteuse (19) tendue sur des rouleaux d'inversion (18), l'exemplaire à imprimer (17) étant fixé, lors du transport dans l'unité ou chaque unité d'impression offset sans préhenseur (11), sur la bande transporteuse respective (16).
  6. Machine d'impression selon la revendication 5, caractérisée en ce que l'exemplaire à imprimer (17) est fixé sur la bande transporteuse respective (19) par des effets électrostatiques ou des effets magnétiques ou des effets adhésifs ou par collage.
  7. Machine d'impression selon la revendication 6, caractérisée en ce que la bande transporteuse respective (19) présente une structure multicouche, l'exemplaire à imprimer (17) étant fixé sur une couche extérieure en polyuréthane (20) de la bande transporteuse respective (19) par collage.
  8. Machine d'impression selon une des revendications 1 à 4, caractérisée en ce que le dispositif de transport (16) est réalisé sous forme d'un système de bande transporteuse à vide ou d'un système de bande transporteuse à aspiration qui présente au moins une bande transporteuse à vide ou une bande transporteuse à aspiration tendue sur des rouleaux d'inversion, l'exemplaire à imprimer (17) étant fixé lors du transport dans l'unité ou dans chaque unité d'impression offset sans préhenseur (11) sur la bande transporteuse à vide ou la bande transporteuse à aspiration par dépression.
  9. Machine d'impression selon une des revendications 1 à 8, caractérisée par un margeur qui prend l'exemplaire imprimé (17) sur le dispositif de transport (16) après l'impression.
  10. Procédé d'utilisation d'une machine d'impression selon une ou plusieurs des revendications 1 à 9, caractérisé en ce que, au moyen du dispositif de transport, des exemplaires de forme stable et relativement rigides sont transportés dans l'unité ou chaque unité d'impression offset sans préhenseur, l'exemplaire étant positionné à l'aide du margeur sur le dispositif de transport en s'adaptant précisément à la circonférence et en s'adaptant précisément à la face pour impression consécutive, l'exemplaire à imprimer (17) étant positionné sur le dispositif de transfert (16) de manière à ce que chaque exemplaire (17) à positionner nouvellement sur le dispositif de transport (16) soit positionné à une distance définie par rapport à l'exemplaire amont respectif (17) sur le dispositif de transport (16), la distance définie étant réglée en fonction d'une circonférence du cylindre de transfert (14) et d'un format d'impression de l'exemplaire à imprimer (17).
EP14188792.7A 2013-10-18 2014-10-14 Presse Not-in-force EP2862715B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE201310111534 DE102013111534A1 (de) 2012-11-05 2013-10-18 Druckmaschine

Publications (3)

Publication Number Publication Date
EP2862715A2 EP2862715A2 (fr) 2015-04-22
EP2862715A3 EP2862715A3 (fr) 2015-06-03
EP2862715B1 true EP2862715B1 (fr) 2016-11-30

Family

ID=51690295

Family Applications (1)

Application Number Title Priority Date Filing Date
EP14188792.7A Not-in-force EP2862715B1 (fr) 2013-10-18 2014-10-14 Presse

Country Status (2)

Country Link
EP (1) EP2862715B1 (fr)
CN (1) CN104553293A (fr)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105269994B (zh) * 2015-12-02 2017-11-14 浙江友丰包装材料有限公司 一种印刷定位复合工艺
CN110978743B (zh) * 2019-12-24 2024-04-05 广东必硕智能科技有限公司 纸塑包装盒侧面图案印刷装置
CN113524894A (zh) * 2021-07-15 2021-10-22 宁夏金世纪包装印刷有限公司 一种带印刷内衬的瓦楞纸板及其印刷设备

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5562032A (en) * 1993-12-06 1996-10-08 Kabushiki Kaisha Isowa Corrugated board sheet transporting system in printing line
ITAP20020005A1 (it) * 2002-05-20 2002-08-19 Maria Teresa Cintio Apparecchiatura di stampa ad alta velocita' con matrice flexografica diretta su foglio trasportato da nastro continuo aspirante
DE10333626A1 (de) * 2003-07-24 2005-02-17 Robert Bürkle GmbH Vorrichtung zum Bedrucken von flächigen Werkstücken

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
EP2862715A3 (fr) 2015-06-03
EP2862715A2 (fr) 2015-04-22
CN104553293A (zh) 2015-04-29

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