EP0924073B1 - Dispositif doseur d'un liquide de couchage pour supports d'impression dans une machine à imprimer - Google Patents

Dispositif doseur d'un liquide de couchage pour supports d'impression dans une machine à imprimer Download PDF

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Publication number
EP0924073B1
EP0924073B1 EP98123811A EP98123811A EP0924073B1 EP 0924073 B1 EP0924073 B1 EP 0924073B1 EP 98123811 A EP98123811 A EP 98123811A EP 98123811 A EP98123811 A EP 98123811A EP 0924073 B1 EP0924073 B1 EP 0924073B1
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EP
European Patent Office
Prior art keywords
coating liquid
metering
lead
feed
outflow
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
EP98123811A
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German (de)
English (en)
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EP0924073A1 (fr
Inventor
Reinhold Guba
Guido Reschke
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 AG
Original Assignee
MAN Roland Druckmaschinen AG
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Filing date
Publication date
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Publication of EP0924073A1 publication Critical patent/EP0924073A1/fr
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Anticipated expiration legal-status Critical
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F23/00Devices for treating the surfaces of sheets, webs, or other articles in connection with printing
    • B41F23/08Print finishing devices, e.g. for glossing prints

Definitions

  • the invention relates to a device for dosing a coating liquid for substrates in a printing press.
  • Another device is from DE 43 34 803 C1, preferably for Coating units known in the printing press.
  • a Painting unit designed as a processing unit and has a sheet guide cylinder as an impression cylinder, a forme cylinder and an application roller on.
  • two dosing systems are interchangeably assigned to the forme cylinder, such that the optionally two rollers as the applicator roller and metering roller Forme cylinders are assigned or a chambered doctor blade with a locked application roller is assigned to the forme cylinder.
  • US-A 4 526 102 is an ink circulation and washing system for a printing press known. Two different colors are from separate containers separately on the line side through a pouring spout into a nip. The The nip is separated by two parallel ink rollers Squeeze roller principle formed, the ink rollers assigned to a plate cylinder are. Collecting trays are arranged on the front side below the inking rollers, a switching valve with the appropriate container for connect the respective color on the line side. The color returns after the principle of gravity back into the corresponding collecting container. Over a separate supply line is cleaning fluid via several switching valves in the supply lines and return lines can be supplied.
  • From DE-U-84 01 569 is an ink zone-free for inking a printing plate Inking unit with a maximum of two inking rollers known, which for stencil-free coloring a uniform color film of constant thickness on the printing plate.
  • the first roller of the roller is assigned a metering device and that at the end of the single drum roller arranged ink cylinder is after the ink transfer to the Ink application rollers assigned a doctor device. This squeegee device serves to remove the color profile transferred back from the plate cylinder.
  • a coating and cleaning circuit system for a printing press is known.
  • a coating device is functionally connected by means of a supply and return line to various containers for coating liquid or cleaning liquid, the return line additionally being able to be functionally connected to a container for waste (impurities).
  • the feed and return line is coupled to a pump device and to switching valves for selecting the corresponding liquid.
  • the invention has for its object a device of the initially described To create kind that avoids the disadvantages mentioned, the prevents the mixing of different coating liquids and the Noticeably reduced consumption of coating liquid.
  • the device consists of, for example, a rubber blanket or a flexible one High-pressure plate-bearing forme cylinder, which with an arc guide cylinder, e.g. a pressure cylinder, can be brought into contact.
  • the facility also exists from an applicator roller that can be brought into contact with the forme cylinder and one Dosing system that can be brought into contact with the application roller.
  • the dosing system is optionally one with a rastered application roller in functional connection standing chamber doctor blade or one with the applicator roller in functional connection vertical metering roller, the coating liquid over the nip is fed.
  • Each coating device has at least two circulation line systems for at least two coating liquids.
  • each Circulation line system is functionally connected to a dosing system, whereby a feed line with a feed pump upstream of the metering system and at least one return line with a suction pump downstream of the metering system is.
  • the feed lines are confused with the dosing system coupled.
  • a coating liquid for inline processing of substrates dispersion paints on an aqueous basis are particularly suitable, liquid ones Printing inks with or without metal pigments as well as UV varnishes.
  • the Coating liquid and a necessary cleaning process of the circulatory system the excess coating liquid in the feed line from the supply line into a suitable reservoir for receiving the coating liquid sucked back.
  • the invention assumes that the respective Dosing system has at least one outlet, which consists of a collecting system opens out of at least two collecting containers, each collecting container is coupled to a return line to a reservoir and the collection system for the coating liquid essentially horizontally displaceable is, so that the drain always opens into one of the collecting containers, of which the Coating liquid via the return line to an associated reservoir is promoted back.
  • the respective metering system has at least one outlet that only in a collecting container empties.
  • a switching valve is arranged downstream of the collecting container its switch positions, the corresponding return line with reservoir for the Activates the return flow of the corresponding first or second coating liquid.
  • a printing press is provided with a plurality of printing units 1, preferably offset printing units, formed in series, with the arcuate in the conveying direction Substrates a coating device 2 and a second coating device 3 are subordinate to the printing units 1. Between the coating facilities 2, 3, a dryer unit 4 is arranged. The second Coating device 3 is followed by a boom 5, which among other things is formed by revolving chain systems 7, which the sheets on a boom stack 6 put down.
  • a printing unit 1 essentially consists of a plate cylinder 8, a blanket cylinder 9 and a sheet guide cylinder 11, in present example a printing cylinder.
  • the plate cylinder 8 is an inking unit assigned, possibly a dampening unit is adjacent to the plate cylinder 8, which will not be discussed here in more detail. Between the printing units 1 and the coating devices 2, 3 and the dryer device 4 are each a sheet guide cylinder 10 as a transfer cylinder for transportation the printing materials arranged by the printing press.
  • the first coating device 2 is a coating unit, e.g. for processing Dispersion varnish with pigments on an aqueous basis, formed and consists of a sheet guide cylinder 11 (impression cylinder), one with the sheet guide cylinder 11 contactable forme cylinder 12, which is a flexible high pressure plate as a lacquer form, and a first metering system 13.
  • the first metering system 13 is by a gridable with the forme cylinder 12 in contact Applicator roller 18 and a functionally connected to the applicator roller 18 Chamber doctor blade 17 formed.
  • the second coating device 3 is also designed as a coating unit and consists of a sheet guide cylinder 11 (printing cylinder), a forme cylinder 12 which can be brought into contact with the sheet guide cylinder 11 and which carries a rubber blanket, and a second metering system 14.
  • the second metering system 14 is connected to the the blanket-carrying form cylinder 12 contactable applicator roller 18 and a metering roller 22 are formed.
  • Both metering systems 13, 14 have circulation systems for the circulation of the coating liquids.
  • the circulation systems are designed at least for the circulation of two different coating liquids.
  • the coating device 2 has a first feed line 16 for the first coating liquid and a second feed line 16 ′ for the second coating liquid.
  • the coating device 2 has a first return line 15 for the excess first coating liquid and a second return line 15 'for the excess second coating liquid.
  • the first return line 15 and the first feed line 16 are coupled to a reservoir 23 for receiving the first coating liquid and the second return line 15 'and the second feed line 16' are coupled to a reservoir 24 for receiving the second coating liquid.
  • an aqueous-based dispersion lacquer is used as the first coating liquid and a UV lacquer within the coating device 2 as the second coating liquid.
  • the feed lines 16, 16 ' are each coupled to a feed pump which can be switched over and can therefore also operate as a suction pump.
  • the return lines 15, 15 ' are each coupled to a suction pump 27 (for the first coating liquid) or 28 (second coating liquid) for returning the respective coating liquid to the reservoir 23 or the reservoir 24.
  • the feed lines 16, 16' are individually included the chambered doctor blade 17 can be coupled in such a way that it cannot be mixed up, that is to say the chambered doctor blade 17 used in the metering system 13 has only one connection from a feed line 16 or 16 ′ and the feed lines 16 and 16 ′ are arranged on the metering system 13 in such a way that they cannot be mixed up.
  • the inactive feed line 16 or 16 ' is blocked on the line side or the associated feed pump is deactivated or the circulation system can be used for cleaning operation.
  • the metering system 13 is formed by an application roller 18 with a grid structure and the chamber doctor blade 17 already mentioned (FIG. 2).
  • the metering system 13, in particular the chambered doctor blade 17, has at least one outlet 19.
  • Two laterally arranged drains 19 are preferably arranged adjacent to the end faces.
  • Each drain 19 is functionally connected to a collecting system for excess coating liquid.
  • a drain system consists of a collecting container 20 coupled to the first return line 15 for the first coating liquid and also a collecting container 20 'coupled to the second return line 15' for the second coating liquid.
  • each outlet 19 opens into one of the collecting containers 20 or 20 '.
  • the collecting system is essentially horizontally displaceable relative to the fixed outlet 19, such that the outlet 19 is always functionally connected to only one collecting container 20 or 20 '.
  • Each outlet 19 on the chambered doctor blade 17 preferably has separate circuit protection for the collecting container 20 for the first coating liquid and for the collecting container 20 'for the second coating liquid. This ensures that when the first coating liquid is fed via the first feed line 16 to the metering system 13, the collecting container 20 with the first return line 15 for returning excess first coating liquid is also assigned to the outlet 19. It is also ensured that when the second coating liquid is fed via the second feed line 16 'to the metering system 13, the collecting container 20' with the second return line 15 'for the return of excess second coating liquid is also assigned to the outlet 19.
  • the circuit protection ensures that there is no confusion that inevitably leads to the mixing of different coating liquids.
  • the metering system 14 is provided by a metering roller 22 and the applicator roller 18 formed ( Figure 3).
  • the metering roller 22 and the applicator roller 18 form a nip in such two-roll mills, in which the first supply line 16 for the first coating liquid or the second supply line 16 'is arranged to feed the second coating liquid.
  • metering 22 and applicator roller 18 have side squeegees arranged on both end faces 21 on the stripping of excess coating liquid from serve the end faces and at the same time used as a seal for the nip are.
  • At least one side doctor blade 21 is coupled to an outlet 19.
  • Each process is 19 again with the almost horizontally movable collection system in functional connection, such that the drain 19 in one of the collecting containers 20th or 20 'opens.
  • the collecting container 20, 20 ' are in turn with the corresponding Return lines 15, 15 'coupled, the outlet 19 to the collecting container 20 for the first coating liquid and to the collecting container 20 'for the second coating liquid in each case a circuit protection in preferably has.
  • FIG. 4 shows a further embodiment with the metering system 14, which is formed by the metering rollers 22 and the applicator roller 18.
  • the metering system 14 which is formed by the metering rollers 22 and the applicator roller 18.
  • each preferably with an outlet 19 are coupled.
  • a collection container 25 is arranged downstream of each outlet 19, with a switching valve 26 is functionally connected to the line.
  • the switching valve 26 is preferably a 3/2 valve (3-way / 2-switch positions), so that the collecting container 25 can be coupled to the first return line 15 having the suction pump 27 which opens into the reservoir 23 for the first coating liquid or the Order container 25 is with the second return line having the suction pump 28 15 'can be coupled, which in turn is in the reservoir 24 for the second coating liquid empties.
  • the dosing system 14 is of course by that Dosing system 13 interchangeable, so that the chamber doctor blade 17 with the outlet 19 Collection container 25 can be assigned.
  • the collecting container 25 is like already described, the switching valve 26 downstream, which the return lines 15 or 15 'depending on the coating liquid used.
  • the outlet 19 is assigned to Switching valve 26 has a separate circuitry for each switching position Hedging in a preferred manner.
  • the switching valve 26 is not on the type of a 3/2 valve. Rather, others are subordinate to the collecting container 25 Switching valves can be used, the activation of the corresponding Ensure return line 15 or 15 '.
  • the processes 19, in particular in the case of arrangement on both sides at the end, using a connecting line can be coupled so that only one return line 15 or 15 'for two processes 19th is required.
  • the mode of operation is as follows: the reservoir 23 becomes the first coating liquid by means of a feed pump via the first feed line 16 to the metering system 13 or 14 promoted. If the metering system 13 with chamber doctor blade 17 is in use, is a slight excess pressure in the housing chamber (the chamber doctor blade 17) achieved, the coating liquid is applied to the screened application roller 18 Transfer and excess coating liquid is through the first return line 15 conveyed back into the reservoir 23 by the suction pump 27. Should instead of first coating liquid, e.g. Water-based dispersion varnish, the second coating liquid, e.g. UV varnish, that's how it will be Chamber doctor blade 17 decoupled from the first feed line 16 and by a second Chamber doctor blade 17 replaced.
  • first coating liquid e.g. Water-based dispersion varnish
  • the second coating liquid e.g. UV varnish
  • the second doctor blade 17 is connected to the second feed line 16 ' coupled for the second coating liquid.
  • the feed lines 16, 16 ' are releasably connected to the doctor blade 17.
  • the fall arrest system is created from the first position in which the drain 19 is coupled to the collecting container 20 in the second position shifted so that now the drain 19 with the collecting container 20 ' is coupled (second position, see Fig. 2).
  • the change is made in reverse order, so that the chambered doctor blade 17 with the first feed line 16 and the outlet 19 with the collecting container 20 is in turn connectable.
  • the changeover processes are circuit-technical, e.g. secured by sensors and a machine control, so that an unwanted mixing and thus an unnecessary consumption of coating liquid is avoidable.
  • the first chamber squeegee which is now from the Coating device 2 was removed outside the printing press are cleaned and replaced by the second doctor blade 17.
  • the mode of operation is analogous.
  • the feed line 16 or 16 'in The nip and the sliding collection system take the first and the second position.
  • the sliding collection system takes over the function of Assignment of the corresponding coating liquid to the respective reservoir 23 or 24.
  • the switching valve 26 takes over the function of assigning the corresponding coating liquids to the corresponding reservoir 23 or 24.
  • the feed line 16 or 16 ' can be coupled to a reservoir for receiving cleaning fluid.
  • the cleaning fluid is preferably fed to the feed line 16 or 16 ', which is currently not in use for the metering operation.
  • a connecting line is additionally used, which bridges the inactive feed line 16 or 16 'on the line side with the inactive collecting container 20 or 20'. If, for example, the second supply line 16 'for the supply of the second coating liquid with the metering system 13 or 14, the outlet 19 and the collecting container 20' (including the second return line 15 ') is activated, the first supply line 16 is connected in parallel to the collecting container by means of a detachably arranged connecting line 20 (including first return line 15) activated.
  • Cleaning fluid is fed into the first feed line 16, which flows via the connecting line into the collecting container 20 and the first return line 15 and ends in the reservoir for cleaning fluid from which the feed line 20 was fed.
  • the reservoir for the cleaning fluid is coupled to the supply line 20 and the first return line 15 via switching valves. If it is necessary to change the second coating liquid used to the first coating liquid, the connecting line is connected to the second feed line 16 ′ and the collecting container 20 and the first return line 15 and this circulation system can be cleaned while the first coating liquid is fed in parallel to the metering system 13 or 14 becomes.
  • the dosing systems 13, 14 are interchangeable in each coating device 2, 3. Thus, a first chamber doctor blade 17 for the first coating liquid can be replaced by a second chamber doctor blade 17 for the second coating liquid.
  • a first or second chamber doctor blade 17 can be replaced by a two-roll mill with application roller 18 and metering roller 22 and vice versa.
  • Another advantage is that the inactive circulatory system is bridged by a connecting line between supply line 16 or 16 'and collecting container 20 or 20' (with return lines 15, 15 ') and one circulatory system is cleaned while the other circulatory system fulfills the dosing function.

Claims (8)

  1. Dispositif pour doser un liquide de revêtement pour des matières d'impression dans une machine d'impression, comportant au moins une unité de vernissage, formée par un cylindre de contre-pression (11), un cylindre porte-cliché (12), au moins un rouleau d'application (18) avec un système de dosage associé (13) pouvant être approché et éloigné, deux systèmes de circuit pouvant être commandés de façon séparée comportant une pompe d'alimentation montée dans des premier et second conduits d'amenée (16, 16') et une pompe d'aspiration (27, 28) montés dans des premier et second conduits de retour (15, 15'), avec des liquides de revêtement reçus dans des réservoirs (23, 24), étant associés au système de dosage, le système de dosage (13, 14) présentant au moins une sortie (19) et la sortie (19) pouvant être amenée en liaison fonctionnelle avec un système de collecte formé par au moins un premier récipient de collecte (20) et un second récipient de collecte (20'), et le système de collecte (20, 20') pouvant être déplacé vers la sortie (19) du système de dosage (13, 14) de façon généralement horizontale, de sorte que la sortie (19) débouche dans à chaque fois un des récipients de collecte (20, 20'), le premier récipient de collecte (20) étant couplé au premier conduit de retour (15), qui débouche dans le réservoir (23) pour le premier liquide de revêtement, et le second récipient de collecte (20') étant couplé au second conduit de retour (15'), qui débouche dans le réservoir (24) pour le second liquide de revêtement.
  2. Dispositif selon la revendication 1,
    caractérisé en ce que le système de dosage (13) est formé par une racle à chambre (17) et le rouleau d'application (18) à structure tramée, un premier conduit d'amenée (16) pour le premier liquide de revêtement ou un second conduit d'amenée (16') pour le second liquide de revêtement étant agencé sur la racle à chambre (17) en alimentant sans risque de méprise, et en ce que la sortie (19) vers le premier récipient de collecte (20) pour le premier liquide de revêtement et vers le second récipient de collecte (20') pour le second liquide de revêtement présente à chaque fois une protection séparée relative à la technique des circuits.
  3. Dispositif selon la revendication 1,
    caractérisé en ce que le système de dosage (14) est formé par un rouleau de dosage (22) et le rouleau d'application (18), un premier conduit d'amenée (16) pour le premier liquide de revêtement ou un second conduit d'amenée (16') pour le second liquide de revêtement étant agencé dans la fente formée par les rouleaux (22, 18), en ce que frontalement aux rouleaux (22, 18), dans la zone de la fente des rouleaux, il est agencé, à chaque fois, une racle latérale (21) ayant une sortie (19) disposée en aval, et en ce que la sortie (19) vers le premier récipient de collecte (20) pour le premier liquide de revêtement et vers le second récipient de collecte (20') pour le second liquide de revêtement présente à chaque fois une protection séparée relative à la technique des circuits.
  4. Dispositif selon la revendication 1,
    caractérisé en ce que le premier conduit d'amenée non actif (16) peut être couplé avec le premier conduit de retour associé (15) ou le second conduit d'amenée non actif (16') peut être couplé avec le second conduit de retour associé (15'), au choix, dans la zone des systèmes de dosage (13, 14), par un conduit de liaison, et le système de circuit ainsi fermé peut être alimenté par un fluide de nettoyage.
  5. Dispositif selon la revendication 1,
    caractérisé en ce que le conduit d'amenée (16, 16') libre après échange des systèmes de dosage (13, 14) et le récipient de collecte associé (20, 20') peuvent être pontés au moyen d'un conduit de liaison pour amener en circulation un fluide de nettoyage, tandis qu'un système de dosage (13, 14) est activé pour le dosage avec le système de circuit associé.
  6. Dispositif pour doser un liquide de revêtement pour des matières d'impression dans une machine d'impression, comportant au moins une unité de vernissage, formée par un cylindre de contre-pression (11), un cylindre porte-cliché (12), au moins un rouleau d'application (18) avec un système de dosage associé (13) pouvant être approché et éloigné, deux systèmes de circuit pouvant être commandés de façon séparée avec une pompe d'alimentation montée dans des premier et second conduits d'amenée (16, 16') et une pompe d'aspiration (27, 28) montée dans des premier et second conduits de retour (15, 15') et avec des liquides de revêtement reçus dans des réservoirs (23, 24) étant associés au système de dosage (13), le système de dosage (13, 14) présentant au moins une sortie (19) et la sortie (19) étant en liaison fonctionnelle avec un récipient de collecte (25) et ce récipient de collecte (25) avec une valve de commutation (26) disposée en aval, de sorte que la valve de commutation (26) peut être couplée au premier conduit de retour (15), qui débouche dans un réservoir (23) pour le premier liquide de revêtement, ou peut être couplée avec le second conduit de retour (15), qui débouche dans un réservoir (24) pour le second liquide de revêtement.
  7. Dispositif selon la revendication 6,
    caractérisé en ce que le système de dosage (13) est formé par une racle à chambre (17) et le rouleau d'application (18) à structure tramée, un premier conduit d'amenée (16) pour le premier liquide de revêtement ou un second conduit d'amenée (16') pour le second liquide de revêtement étant agencé sur la racle à chambre (17) de façon amovible sans risque de méprise, et en ce que la sortie (19) présente par rapport à la valve de commutation (26), pour chaque position de commutation, une protection séparée relative à la technique des circuits.
  8. Dispositif selon la revendication 6,
    caractérisé en ce que le système de dosage (14) est formé par un rouleau de dosage (22) et le rouleau d'application (18), un premier conduit d'amenée (16) pour le premier liquide de revêtement ou un second conduit d'amenée (16') pour le second liquide de revêtement étant agencé, en alimentant, dans la fente formée par les rouleaux (22, 18), en ce que les rouleaux (22, 18) présentent frontalement dans la zone de la fente des rouleaux, à chaque fois, une racle latérale (21) avec sortie (19) disposée en aval, et en ce que la sortie (19) présente par rapport à la valve de commutation (26), pour chaque position de commutation, une protection séparée relative à la technique des circuits.
EP98123811A 1997-12-20 1998-12-15 Dispositif doseur d'un liquide de couchage pour supports d'impression dans une machine à imprimer Expired - Lifetime EP0924073B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE29722625U DE29722625U1 (de) 1997-12-20 1997-12-20 Einrichtung zum Dosieren einer Beschichtungsflüssigkeit für Bedruckstoffe in einer Druckmaschine
DE29722625U 1997-12-20

Publications (2)

Publication Number Publication Date
EP0924073A1 EP0924073A1 (fr) 1999-06-23
EP0924073B1 true EP0924073B1 (fr) 2002-06-12

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP98123811A Expired - Lifetime EP0924073B1 (fr) 1997-12-20 1998-12-15 Dispositif doseur d'un liquide de couchage pour supports d'impression dans une machine à imprimer

Country Status (4)

Country Link
EP (1) EP0924073B1 (fr)
JP (1) JP3421263B2 (fr)
AT (1) ATE218977T1 (fr)
DE (2) DE29722625U1 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19807505A1 (de) * 1998-02-21 1999-08-26 Roland Man Druckmasch Bogenrotationsdruckmaschine mit Druckeinheiten für den Mehrfarbendruck und wenigstens einer Beschichtungseinheit
DE29912328U1 (de) 1999-07-14 1999-09-16 Roland Man Druckmasch Trocknersystem für bogenförmige Bedruckstoffe in einer Rotationsdruckmaschine
JP2006007495A (ja) * 2004-06-23 2006-01-12 Miyakoshi Printing Machinery Co Ltd フレキソユニット
US20150352832A1 (en) * 2013-01-31 2015-12-10 Komori Corporation Liquid transfer device
CN108773178A (zh) * 2018-05-25 2018-11-09 江西双林彩印包装有限公司 一种方便成品印刷制品进行上光的印刷用上光装置

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB565686A (en) * 1942-05-21 1944-11-22 Goss Printing Press Co Ltd Inking mechanism for rotary printing presses
US2967480A (en) * 1958-02-17 1961-01-10 George A Gerard Ink applying system
DE8401569U1 (fr) * 1984-01-20 1988-07-07 Heidelberger Druckmaschinen Ag, 6900 Heidelberg, De
JPH072200Y2 (ja) * 1988-04-18 1995-01-25 三菱重工業株式会社 印刷装置
US5367982A (en) * 1993-02-25 1994-11-29 Howard W. DeMoore Automatic coating circulation and wash-up system for printing presses
DE29616686U1 (de) * 1996-09-25 1996-11-14 Roland Man Druckmasch Einrichtung zum Beschichten von Bedruckstoffen mit einer Flüssigkeit
DE19643984B4 (de) * 1996-10-31 2005-01-05 Man Roland Druckmaschinen Ag Funktionssteuerung für eine Dosiereinrichtung

Also Published As

Publication number Publication date
EP0924073A1 (fr) 1999-06-23
DE59804407D1 (de) 2002-07-18
JP3421263B2 (ja) 2003-06-30
DE29722625U1 (de) 1998-02-19
ATE218977T1 (de) 2002-06-15
JPH11240136A (ja) 1999-09-07

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