EP1940624A1 - Procede de fabrication pour moyens d'emballage et publicitaires - Google Patents

Procede de fabrication pour moyens d'emballage et publicitaires

Info

Publication number
EP1940624A1
EP1940624A1 EP06828822A EP06828822A EP1940624A1 EP 1940624 A1 EP1940624 A1 EP 1940624A1 EP 06828822 A EP06828822 A EP 06828822A EP 06828822 A EP06828822 A EP 06828822A EP 1940624 A1 EP1940624 A1 EP 1940624A1
Authority
EP
European Patent Office
Prior art keywords
film
coating
sheet
printing
image
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.)
Granted
Application number
EP06828822A
Other languages
German (de)
English (en)
Other versions
EP1940624B1 (fr
Inventor
Gerhard Augsberg
Jens Kaiser
Dirk Meinhardt
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 Sheetfed GmbH
Original Assignee
MAN Roland Druckmaschinen AG
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
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=37685262&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=EP1940624(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by MAN Roland Druckmaschinen AG filed Critical MAN Roland Druckmaschinen AG
Publication of EP1940624A1 publication Critical patent/EP1940624A1/fr
Application granted granted Critical
Publication of EP1940624B1 publication Critical patent/EP1940624B1/fr
Revoked legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F19/00Apparatus or machines for carrying out printing operations combined with other operations
    • B41F19/02Apparatus or machines for carrying out printing operations combined with other operations with embossing
    • B41F19/06Printing and embossing between a negative and a positive forme after inking and wiping the negative forme; Printing from an ink band treated with colour or "gold"
    • B41F19/062Presses of the rotary type
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F16/00Transfer printing apparatus
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2219/00Printing presses using a heated printing foil
    • B41P2219/50Printing presses using a heated printing foil combined with existing presses
    • B41P2219/51Converting existing presses to foil printing presses

Definitions

  • the invention relates to a method and an apparatus for producing coated packaging and advertising means, including the transfer of image-forming layers from a carrier film to printed sheets according to the preamble of patent claims 1 and 11.
  • EP 0 569 520 B1 describes a printing material and a printing device using this material.
  • a sheet-processing machine which has a feeder and a boom, wherein printing units and a Be istungsmo- module are arranged between the two units.
  • an adhesive pattern is applied by means of the planographic printing process. This adhesive pattern is applied in a cold printing process and has a specific imaging subject.
  • a film guide is provided in the printing unit following the coating module with a counter-pressure cylinder and a press roller.
  • the transfer film has a carrier layer on which imaging layers such as metallic layers, for example of aluminum, can be applied. Between the metallic layer and the carrier film, a separating layer is provided, which ensures that the metallic layer can be removed from the carrier layer.
  • each sheet is given an adhesive pattern.
  • the sheet is passed through the coating module, wherein by means of the press roller on the impression cylinder resting sheet with the film material in combination is brought.
  • the downwardly lying metallic layer enters into a close connection with the areas provided with adhesive on the printed sheet.
  • the metallic layer adheres only in the area provided with the adhesive pattern.
  • the carrier film is thus removed from the metallic layer in the region of the adhesive pattern. The used in this way transfer film is wound up again.
  • the print sheet is laid out in the coated state.
  • the object of the invention is therefore to provide a method and a device by means of which the transfer of an imaging layer, e.g. a metallization layer, can be done on a sheet safely, economically and accurately, the device should be manageable for an extended range of applications for generating variable surface properties.
  • an imaging layer e.g. a metallization layer
  • an integrated print image design of film image components and printed image components is combined.
  • a varnish layer of clear or translucent or colored varnish is applied to the printed sheet.
  • the printed image is protected and supported in a special way in its gloss effect. Drying takes place very quickly in an advantageous manner, so • further processing that is not delayed.
  • a printing press becomes more flexible in its application in that a film transfer module is integrated.
  • the film transfer module can be part of a workstation, run as a separate workstation, as an integrated workstation, or as a workable workstation.
  • the film transfer module can be arranged at different locations within a printing press depending on the application.
  • first adhesive pattern in a first coating module with a first image-forming coating or metallization layer and, in the following, superimpose another adhesive pattern enclosing the first and to provide it with another image-forming coating or metallization layer.
  • the film transfer module in a sheet-fed printing machine can also be arranged downstream of a device for the use of a sheet, so that an image-wise coating of the film transfer takes place on a sheet backside after previous front side printing
  • the image-forming layer can be applied by means of what is known as UV negative-pressure ink, by means of a printing unit for the adhesive in e.g. is applied over an offset printing plate.
  • Figure 1 is a basic illustration of a printing machine with a film transfer device and Figures 2 to 5 configurations for the integration of film transfer modules in a printing press.
  • FIG. 1 shows a sheet-processing machine, here a printing press, which consists of one or more printing units which are used for the following purposes:
  • a sheet to be coated is provided in a first step in an applicator 1 (printing unit, paint module, o. ⁇ .) With an imaging adhesive fabric pattern.
  • an applicator 1 printing unit, paint module, o. ⁇ .
  • an imaging adhesive fabric pattern For example, in a printing unit of an offset printing press via dyeing and dampening units 11, a printing plate on a plate cylinder 12, a blanket or blanket cylinder 13, a printed sheet is printed on an impression cylinder 4.
  • Applicators can also be configured as a flexographic printing unit or coating unit (see embodiment in FIG. 4).
  • the glue can by means of a
  • Dosing 21 are transmitted via an anilox roller 22 and a transfer roller 23 on a forme cylinder 24, which carries a high-pressure plate for generating the imaging adhesive application.
  • a transfer film 5 is guided through a transfer nip 6 in a coating module 2 together with the printing sheet, wherein the transfer film 5 is pressed in the transfer nip 6 against the printing sheet.
  • the coating module 2 may correspond to or be integrated in a printing unit, a coating module, a base unit or another type of processing station of a sheet-fed offset printing press.
  • the transfer nip 6 in the coating module 2 is formed by a press roll 3 and an impression cylinder 4.
  • the press roller 3 may be the blanket cylinder 13 of an offset printing unit or the forme cylinder of a lacquer module of a sheet-fed press.
  • the respective impression cylinder 4 is provided correspondingly in the corresponding processing station.
  • the press roll 3 is provided with a press fabric 10 or as a roll with a corresponding coating.
  • the press fabric 10 or Press coating can for example be designed as a plastic coating, comparable to a blanket or blanket.
  • the surface of the press fabric 10 or press coating is preferably very smooth. It can also be formed from antiadhesive substances or structures.
  • a limited pressing surface can be provided directly on the press roll 3 or on the press fabric 10. This can be worked out of the surface of the press fabric 10 or it can be additionally attached as a partial surface of the material of the press fabric 10 on the press roller 3.
  • the coating module 2 downstream of a so-called calendering be provided when the coated sheet to increase the adhesion of the coating or to increase the smoothness and gloss of the sheet is to be rolled under increased pressure.
  • further printing units of a sheet-fed offset printing press can be provided downstream of the coating module 2 if the coated printing sheet is to be further processed inline for printing with a single- or multi-color image.
  • the coating module 2 downstream of a so-called Lackiermodul be provided when the coated sheet to improve the adhesion of the coating, to protect the coating, for accelerated drying and / or to increase the smoothness and gloss of the sheet are provided with a corresponding coating should.
  • Transfer foils 5 which are suitable for processing have a multilayer structure. They have a carrier layer on which an imaging layer is applied by means of a release layer.
  • the separating layer serves to facilitate lifting of the imaging layer from the carrier layer.
  • the imaging layer can be, for example, a metallized layer or a gloss layer or a texture layer. Layer or a colored layer or a pattern containing one or more image patterns.
  • the transfer film 5 is assigned on a film supply roll 8 to the coating module 2 on the sheet feed side.
  • the film supply roll 8 has a rotary drive 7, which is required for the continuous controlled feeding of the transfer film 5 to the coating module 2.
  • the transfer film 5 can be guided around the press roll 3 (see dashed line illustration).
  • the film web 5 can hereby be guided closely parallel to one another depending on the space conditions on one side of the coating module 2 in the feeding and discharging strand.
  • the transfer film 5 can also be passed substantially tangentially past the press roll 3 or can be passed through the press nip 6 only in a small circumferential angle, being fed from one side of the coating module 2 and discharged to the opposite side.
  • a film collecting roller 9 On the outlet side of the printing unit, a film collecting roller 9 is shown, on which the used sheet material is wound up. Again, a controllable rotary drive 7 is provided.
  • the film advance of the transfer film 5 from the film supply roll 8 to the transfer nip 6 and the film collection roll 9 is controllable so that as far as possible the transfer film 5 is stopped when no transfer of the imaging layer should take place :
  • a further improvement of the film utilization of the type described results from the fact that the transfer film 5 is divided into one or more Operafolienbahnen lesser width.
  • the utilization of the transfer film 5 can be improved even in zonal different Lie long coating areas within an arc.
  • the image-wise applied adhesive layer can be predried by means of a first dryer 16 (intermediate dryer I) so that the wear layer of the transfer film 5 adheres better.
  • the adhesive effect of the applied wear layer on the printed sheet can be improved by the action of a second dryer 16 (intermediate dryer II) by additionally accelerating the drying of the adhesive.
  • an embodiment of an integrated film transfer module for use in a sheet-processing machine is possible.
  • the coating module 2 can be embodied integrated in the structural unit of the commissioned work 1.
  • a sheet leading impression cylinder 4 has to transport sheets one or more gripper fields with associated pressure surfaces and a corresponding one to multiple extent.
  • an applicator 1 is arranged at the impression cylinder 4, at the impression cylinder 4, an applicator 1 is arranged.
  • the impression cylinder 4 is still a Beschich- associated module 2, which has a press roll 3, which forms a transfer nip 6 with the impression cylinder 4.
  • the transfer nip 6 is arranged downstream of the coating nip of the applicator 1 on the impression cylinder 4 in the sheet travel direction.
  • an integrated film transfer module which has two workstations, which are used for the following steps.
  • the printing material is guided in such a film transfer module in a very advantageous manner by all the necessary cleavage points in a single gripper closure, while it rests on a single impression cylinder 4.
  • the coating module 2 or integrated film transfer module is substantially suitable for printing a printed sheet before printing with an imaging layer, e.g. to provide a metallization layer.
  • an imaging layer e.g. to provide a metallization layer.
  • the coating module 2 or integrated film transfer module receiving sheet processing machine for. B. a sheetfed offset printing press, the coating module 2 or integrated film transfer module but can also be placed at any other location within the machine. This is to enable the desired imaging layers, e.g. Metallmaschines slaughter, both before, as well as after and between the application of ink layers can take place.
  • Advertising can be effectively refined.
  • the arrangement of the coating module 2 or of the integrated film transfer module makes it possible to apply a film pattern of metal or effect film on a printed sheet.
  • one or more paint modules L which make it possible to apply a primer layer to the printed sheet, are connected upstream of the first printing unit or the applicator 1 and the coating module 2 or the integrated film transfer module on a corresponding printing press.
  • a conventional adhesive similar to an offset printing ink, can then be used.
  • a UV adhesive can be used. In both cases, a predrying of the adhesive layer can take place.
  • the film pattern from the transfer film 5 When applying the film pattern from the transfer film 5, it can be heated by means of appropriate devices in order to facilitate the solution of the imaging layer or metallization layer of the film carrier and thus to improve the transfer of the film pattern.
  • a colored image can be printed on the film image.
  • conventional offset printing inks or so-called film colors or so-called UV printing inks can be used in the corresponding printing units.
  • the drying effect and the adhesion of the conventional printing inks on the film image is relatively poor here, since they dry to a large extent by so-called knocking off.
  • Film inks are generally oxidative curing inks that adhere better but also require a relatively long drying time.
  • UV inks are used to achieve rapid drying using a UV dryer.
  • a not yet dried printed sheet carrying a film image and a color image can be prevented from being damaged or stained by applying a paint film.
  • dispersion varnishes so-called primers in combination with dispersion varnishes or so-called UV varnishes.
  • a print sheet provided with a coating of film image and printed image can be well protected, with the adhesive and printing ink layers can cure completely under the varnish layer.
  • the surface of such a sheet is thereby additionally refined. The surface receives in addition to a uniform appearance and a very desirable gloss effect.
  • the surface of the film image is protected against oxidative influences.
  • the paints used are transparent or translucent and can be clear or colored.
  • appropriate color-lacquer combinations eg. B. from conventional printing ink or using a so-called primer and a UV varnish
  • the surface of the sheet can also be provided with areas of differing gloss level lent.
  • Foil image printed with a multi-color print of foil color This applies in particular to printed sheets with a high areal proportion of the film image.
  • the color image dries oxidatively and is not protected. It has a good gloss, but is relatively rough when touched.
  • a Drucksujet of a conventional adhesive for the film image is applied to a film or metallization layer is transferred.
  • the printed sheet is then printed with a single- or multi-color printed image from conventional offset printing ink (sheet with low to high film content).
  • the color image is optionally dried by means of a dryer.
  • a layer of an invisible primer for adhesion mediation is applied to the printing sheet and then protected by means of a layer of UV varnish. Thereafter, a final drying can take place.
  • the sheet has a very good gloss and is very smooth when touched. The gloss effects of the film areas are slightly dampened and thus Subjected to a visually attractive balancing effect.
  • the printed sheet is immediately dry and processable.
  • a Drucksujet a UV adhesive for the film image is applied to a film or metallization layer is transferred.
  • the printed sheet is then printed with a single or multi-color printed image of UV ink (sheet with low to high film content).
  • the color image is optionally dried by means of a UV dryer and protected by means of a layer of UV varnish. Thereafter, a final drying can take place.
  • the sheet has a very good gloss and is very smooth when touched. The gloss effect of the film area, in particular of effect films with iridescent or refractive effects, is supported and their effect clearly highlighted.
  • the printed sheet is immediately dry and processable.
  • FIGS. 2 to 5 schematically show various possible combinations of the assignment of coating modules 2 and applicators 1 to a printing machine for carrying out the described production methods for packaging means or advertising means.
  • the printing presses shown can be preceded by one or more paint modules L in all the configurations shown according to a film feeder modules or printing units D provided for in order to allow the application of a compensating layer, primer layer or other type of pre-coating of printed sheets
  • the printing units D can be followed by one or more paint modules L in front of a boom AU.
  • an intermediate dryer can be arranged between such paint modules L.
  • FIG. 2 basically shows a conventional configuration.
  • a sheet feeder AN of the web printing machine is initially followed by an applicator 1 and then a coating module 2.
  • the coating module 2 is again followed by printing units D of the sheet-fed printing press.
  • a bow boom AU completes the configuration.
  • an imagewise coating with metallized film can take place on the empty printed sheet. Thereafter, a multicolored printed image can be applied over this coating.
  • a full-surface coating with metallized film can be produced, which can subsequently be overprinted in the printing units D.
  • a coating module 2 can also be arranged downstream of the printing units D in front of the sheet delivery mechanism AU, wherein the printing unit D upstream of the coating module 2 can serve as an application unit 1.
  • the color print should be dried beforehand.
  • FIG. 3 shows a comparable configuration to FIG. 3.
  • two film transfer modules are arranged downstream of the sheet feeder AN as integrated coating modules IM.
  • both a coating module 2 and an associated application unit 1 are arranged within a work unit (see also FIG. 2).
  • the image-wise application of two different coatings next to each other but optionally overlapping each other can be carried out.
  • the arrangement of an integrated coating module IM is particularly useful if at least two film transfer modules are to be arranged directly one after the other.
  • FIG. 4 shows a flexible variant for a printing machine with further improved characteristics of the further processing of signatures.
  • the film transfer module is designed here as an add-on module AM.
  • Such a top module AM is preferably designed as a transportable unit and can be on a standardized substructure UB a printing unit D of the printing press are placed.
  • a substructure UB normally contains a frame in which a sheet transport drum and a counter-pressure cylinder 4 are arranged associated with one another.
  • a printing blanket cylinder 13 of an offset printing unit or a forme cylinder 20 of a lacquer module can each be assigned to the impression cylinder 4 on the substructure.
  • the blanket cylinder 13 or forme cylinder 20 can be used in conjunction with the Be Mrsungsmo- module 2 as a press roll 3, wherein a corresponding fabric 10 is to be attached.
  • Corresponding clamping devices are available on both cylinder types.
  • FIG. 5 shows a further developed variant.
  • the printing press shown has, after two printing units D connected to the sheet feeder AN, a so-called turning device W.
  • Turning devices W serve to invert a single-sided printed or coated printed sheet during sheet-fed operation of a sheet-fed printing press, so that its previous underside becomes the upper side, which can subsequently be printed or coated.
  • the applicator 1 and a coating module 2 adjoin the turning device W. After that, several additional printing units D are provided as far as the sheet extractor AU if necessary.
  • each printed sheet can first be printed on its reverse side in one or two colors, then turned over, then image-coated with a metallized layer and subsequently printed again in multiple colors.
  • An application example of this are greeting cards with jewelery inserts made of metal foil on the image page.

Abstract

L'objectif de cette invention est d'étendre le domaine d'application du pelliculage dans un module de couchage (2) permettant de transférer des couches formant une image d'un film de transfert (5) sur un matériau à imprimer. A cet effet, un module de transfert par film est placé dans une machine à imprimer destinée à l'impression de feuilles en une ou plusieurs couleurs. De plus, un ou plusieurs dispositifs de couchage (1 ; 2 ; L ; D : IM) sous forme de modules de vernissage sont placés en amont et/ou en aval de la machine à imprimer. L'application de couches permet d'appliquer une image de film et une image imprimée sur une partie ou sur l'ensemble de la surface d'un sujet. Les couches supplémentaires servent à la protection, au séchage et à la production d'effets optiques.
EP06828822.4A 2005-10-20 2006-10-17 Procede de fabrication et machine d'impression pour moyens d'emballage et publicitaires Revoked EP1940624B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102005050656 2005-10-20
PCT/EP2006/009990 WO2007045431A1 (fr) 2005-10-20 2006-10-17 Procede de fabrication pour moyens d'emballage et publicitaires

Publications (2)

Publication Number Publication Date
EP1940624A1 true EP1940624A1 (fr) 2008-07-09
EP1940624B1 EP1940624B1 (fr) 2014-05-14

Family

ID=37685262

Family Applications (1)

Application Number Title Priority Date Filing Date
EP06828822.4A Revoked EP1940624B1 (fr) 2005-10-20 2006-10-17 Procede de fabrication et machine d'impression pour moyens d'emballage et publicitaires

Country Status (3)

Country Link
US (1) US20090301649A1 (fr)
EP (1) EP1940624B1 (fr)
WO (1) WO2007045431A1 (fr)

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EP1803564A3 (fr) * 2005-12-27 2010-03-24 manroland AG Dispositif destiné au revêtement en couches minces

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WO2007045431A1 (fr) 2007-04-26
US20090301649A1 (en) 2009-12-10
EP1940624B1 (fr) 2014-05-14

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