EP2168768B1 - Imprimante offset - Google Patents

Imprimante offset Download PDF

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Publication number
EP2168768B1
EP2168768B1 EP20090169912 EP09169912A EP2168768B1 EP 2168768 B1 EP2168768 B1 EP 2168768B1 EP 20090169912 EP20090169912 EP 20090169912 EP 09169912 A EP09169912 A EP 09169912A EP 2168768 B1 EP2168768 B1 EP 2168768B1
Authority
EP
European Patent Office
Prior art keywords
couple
ink
printing
control device
dampening
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
EP20090169912
Other languages
German (de)
English (en)
Other versions
EP2168768A2 (fr
EP2168768A3 (fr
Inventor
Anton Hamm
Günther Glas
Georg Riescher
Bernd Kuchenbaur
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
Application filed by Manroland Web Systems GmbH filed Critical Manroland Web Systems GmbH
Publication of EP2168768A2 publication Critical patent/EP2168768A2/fr
Publication of EP2168768A3 publication Critical patent/EP2168768A3/fr
Application granted granted Critical
Publication of EP2168768B1 publication Critical patent/EP2168768B1/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
    • B41F31/00Inking arrangements or devices
    • B41F31/02Ducts, containers, supply or metering devices
    • B41F31/04Ducts, containers, supply or metering devices with duct-blades or like metering devices
    • B41F31/045Remote control of the duct keys
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F33/00Indicating, counting, warning, control or safety devices
    • B41F33/0036Devices for scanning or checking the printed matter for quality control
    • B41F33/0045Devices for scanning or checking the printed matter for quality control for automatically regulating the ink supply
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F33/00Indicating, counting, warning, control or safety devices
    • B41F33/0054Devices for controlling dampening
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2233/00Arrangements for the operation of printing presses
    • B41P2233/10Starting-up the machine
    • B41P2233/11Pre-inking
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2233/00Arrangements for the operation of printing presses
    • B41P2233/10Starting-up the machine
    • B41P2233/12Pre-wetting

Definitions

  • the invention relates to an offset printing machine, and more particularly to a printing unit for an offset printing machine, an offset printing machine equipped with the printing unit, and a method of operating the offset printing machine.
  • Offset printing machines such as newspaper offset printing presses, today's design are largely automated.
  • the offset printing machines usually have a sensor which detects deviations in production parameters and in the printed product and which signals for controlling z.
  • B a cut register, a color register and a color density generated.
  • the settings for ink supply and dampening solution supply which significantly affect the print quality, are usually corrected manually offline or automatically inline or online. The latter can z. B. traversing or fixed cameras that produce a nearly complete color density profile of measurement marks and / or measurements in the subject.
  • the offset printing machine is optimally pre-set (for example with respect to all registers, the ink / dampening agent application and the ink / dampening solution run-up curves).
  • An optimal start of the offset printing machine u. a. also dependent on a standardized preliminary stage (workflow).
  • the invention has for its object to provide a printing unit for an offset printing machine, equipped with such a printing unit offset printing machine and a method for operating the offset printing machine, which ensure a simple and effective way to control the printing quality affecting process parameters.
  • a printing unit for an offset printing press comprises a printing unit with an inking unit for ink supply of the printing unit and a dampening unit for fountain solution supply of the printing unit and a control device which is coupled to the printing unit and its inking unit and dampening unit for controlling this, wherein at least one cylinder of the printing unit temperature measuring means for providing a precise process relevant temperature profile over a bale width of the cylinder of the printing unit away representing temperature signals and first transfer means are integrated for transmitting the temperature signals to the control device, wherein the control device is arranged to control a fountain solution supply of Dampening based on the temperature signals, wherein the printing unit further color measuring means for providing a color application to a substrate representing color signals and secondthbe comprises means for transmitting the color signals to the control device and the control device is arranged to control an ink supply of the inking unit based on the temperature signals and the color signals and the control device is arranged, the dampening solution supply based on stored in the control device, determine predetermined ramp
  • the solution according to the invention is based on the principle of measuring temperatures of a printing cylinder as auxiliary quantities and on the basis of these auxiliary variables deriving setting algorithms for the dampening solution feed which influences the print quality.
  • the measurement of temperatures of a printing cylinder influences the dampening solution supply and consequently the color density as well.
  • At least one forme cylinder for. B. a plate cylinder, the printing unit equipped with the temperature measuring means.
  • one or more other printing cylinder or one or more other printing cylinder such as. B. a transfer cylinder (eg rubber cylinder), equipped with the temperature measuring means.
  • the temperature is recorded continuously and online during the printing process.
  • the integrated in the printing cylinder temperature measuring means preferably have temperature sensors and power supply means that provide a power supply for the sensor operation and the signal transmission.
  • the power supply means may comprise, for example, induction means in the form of a coil.
  • the coil can be z. B. be acted upon from outside the printing cylinder from a changing magnetic field.
  • the inventively realized control system can z. B. acting on a single printing plate on the entire plate cylinder or on all printing cylinders equally.
  • a target / actual comparison of image data and / or a target / actual comparison of the color density can be provided according to the invention.
  • the color measuring agents can, for. B. in the form of a Handdensitometers (for an offline measurement) and / or in the form of one or more color density measurement sensors and / or Farbortmesssensoren (for inline measurement).
  • the color measuring agents are at appropriate locations, such. B. in one direction of the substrate directly after the printing unit (inline measurement), arranged.
  • the temperature measurement in one or more printing couples cylinders provides a temperature profile across the entire width of this / these printing cylinder (s).
  • This temperature profile changes on the one hand on the one hand, but also during machine downtime. Depending on the length of stay, there can be significant temperature increases, but also reductions.
  • These temperature profiles are linked according to the invention with suitable algorithms that influence the dampening solution management and their run-up curve.
  • the control device is adapted zonal to determine the ink supply of the inking based on predetermined zonal ink quantity distribution ratios of a printed image to be printed and stored in the control device, and the specific ink supply on Change the basis of the time-dependent variable dampening solution and the color signals while maintaining the zonal ink volume distribution ratios time-dependent.
  • the dampening solution guide is closely related to the respective ink feed, which is generally zonally different.
  • the color zones approximate the zonal color requirements of the print engine and also follow run-up curves.
  • an offset printing press has a printing unit according to one of the preceding embodiments in every conceivable combination.
  • the offset printing machine further comprises a control panel, which is coupled to the control device and has the controls for manually zonal changing the ink supply and / or the dampening solution supply.
  • control elements between a first position in which the controls are released for actuation, and a second position in which the controls are secured against actuation, displaced.
  • the control panel can z. B. be arranged in a control room of the printing press, and the controls can, for. B. as fold-away color / wet keys or retractable panels are formed.
  • a monitoring device (monitoring) may be provided. In "normal" production, manual readjustment is not required, so that in such a production the controls may be shifted to the second position.
  • a method for operating an offset printing machine having at least one printing unit according to one of the embodiments described above in any conceivable combination, wherein the method in at least one of the cylinders of the printing unit temperatures are measured, a temperature profile over a Ballenbreite of the cylinder of the printing unit across temperature signals are generated, the temperature signals are transmitted to the controller and the controller controls a fountain solution of the dampening based on the temperature signals and a color application is measured on a substrate, wherein the color application representing color Signals are generated, the color signals are transmitted to the control device, and the control device controls an ink supply of the inking unit on the basis of the temperature signals and the color signals, and at S the dampening solution supply is first determined on the basis of stored in the control device, predetermined ramp-up curves for the dampening solution, and from the temperature signals time-dependent temperature profiles of the cylinder of the printing unit are formed, and then changed the dampening solution and their run-up curves based on the temperature profiles time-
  • the ink supply of the inking unit is first based on control of the ink feed Predetermined, zonal ink quantity distribution ratios of a printed image to be printed and stored in the control device, predetermined run-up curves for ink supply zonal determined and then the particular ink supply based on the time-varying dampening solution and the color signals while maintaining the zonal ink quantity distribution ratios changed over time ,
  • the third aspect of the invention is based on the same principles as the first and second aspects of the invention and provides the same advantages as these.
  • the first to third aspects of the invention may be measured in accordance with the principles of the invention, according to which auxiliary quantities are measured for controlling parameters affecting the printing process and, in particular, the print quality parameters, e.g. also combined with an automatic printing plate loading / unloading system, with an automatic print width control for printing cylinder or rollers, with an automatic pre-inking system for printing cylinders or rollers for a low-waste quick start and / or automatic web tension control etc. ,
  • FIGS. 1 and 2 show components of a newspaper offset printing machine 1 (hereinafter simply printing press 1).
  • the printing machine 1 has a plurality of printing units 10 (in FIG Fig.1 only two shown), which are arranged according to this embodiment in pairs to a plurality of so-called four-high towers.
  • the printing units 10 each have four printing units 20, each of which has a plate cylinder in the form of a plate cylinder 21 and a transfer cylinder in the form of a blanket cylinder 22, an inking unit 23 with a plurality of rollers or cylinders (not separately) for ink supply of the printing unit 20th and a dampening unit 24 with a plurality of rollers or cylinders (not separately designated) for dampening solution supply of the printing unit 20 has.
  • Each two printing units 20 work together, so that the blanket cylinder 22 of a printing unit 20 forms the printing cylinder or impression cylinder for the other printing unit 20.
  • a plurality of temperature measuring sensors 21 a over a bale width of the plate cylinder 21 away and integrated along a circumference that by means of the temperature measuring sensors 21 a temperature signals can be provided, the temperature profile over the bale width and along the circumference of the plate cylinder 21 representing.
  • each plate cylinder 21 further first transmission means in the form of a radio transmitter (not shown) are integrated for transmitting the temperature signals to a built-in the printing unit 20 radio receiver (not shown).
  • a power supply for the temperature measuring sensors 21 a and the radio transmitter is realized according to the transformer principle via an integrated induction coil in the plate cylinder 21 (not shown).
  • Each inking unit 23 has in the axial direction of the cylinders of the printing unit 20 a zonal subdivision (not shown) and a plurality of actuators (not shown) for separately controlling an ink feed for each inking zone.
  • Each dampening unit 24 has a number of actuators (not shown) for controlling a dampening solution supply.
  • the dampening unit 24 may have a zonal subdivision (not shown) and corresponding actuators (not shown) analogous to the inking unit 23.
  • Each printing unit 20 further comprises color measuring means in the form of one or more color density measuring sensors 25 (only one sensor 25 is shown for each printing unit 20) providing color application to color signals representing a substrate (not shown) and second transfer means in the form of electrical leads (not shown), which are coupled to an input / output interface 11 of the printing unit 10 for transmitting the color signals.
  • color measuring means in the form of one or more color density measuring sensors 25 (only one sensor 25 is shown for each printing unit 20) providing color application to color signals representing a substrate (not shown) and second transfer means in the form of electrical leads (not shown), which are coupled to an input / output interface 11 of the printing unit 10 for transmitting the color signals.
  • radio receiver for the temperature signals of each printing unit 20 and the actuators of each inking unit 23 and each dampening unit 24 via electrical lines, not shown, with the input / output interface 11 of the printing unit 10 are coupled.
  • respective drives for the rotationally driven cylinders of the printing units 20 of each printing unit 10 are coupled to the input / output interface 11 of the printing unit 10 via electrical leads, not shown.
  • the printing machine 1 further has a control device 40, which is coupled via electrical lines 41 and 42 to the input / output interface 11 of each printing unit 10.
  • control device 40 is arranged in a control station (not completely shown and not separately labeled) of the printing machine 1.
  • a control panel 50 is further arranged, which is coupled via electrical lines 51 to the control device 40.
  • the control panel 50 has a support surface 52 for patterning a printed copy D and controls 53 in the form of a plurality of control buttons for manually zonal changing the ink supply and / or the dampening solution supply.
  • the controls 53 are between a first position (see Fig.2 ), in which the control elements 53 are exposed for actuation, and a second position (not shown), in which the control elements 53 are folded away, are displaceable.
  • the control device 40 can be realized in the form of hardware and / or software and has a memory 40a in which empirically determined run-up curves for the fountain solution supply and for the ink supply are stored.
  • the control device 40 further has a computer device for executing control algorithms or programs stored in the memory 40a.
  • the fountain solution supply of the dampening unit 23 is first based on the in the Control device 40 stored, predetermined run-up curves for the dampening agent supply determined.
  • time-dependent temperature profiles of the plate cylinder 21 are formed from the temperature signals provided by the temperature measurement sensors 21 a. Thereafter, the dampening solution supply and its run-up curves are changed over time using empirically determined algorithms stored in the control device 40 on the basis of the temperature profiles.
  • control algorithms stored in the control device 40 for each printing unit 20 in the control device 40 first, the ink supply of the inking unit based on previously entered in the memory 40a, zonal ink quantity distribution ratios of a printed image to be printed and in the control device 40th stored, predetermined ramp-up curves for the color supply zonal determined.
  • the determined ink supply is temporally changed using empirically determined algorithms stored in the controller 40 based on the time-varying fountain solution and the color signals while maintaining the zonal ink amount distribution ratios.
  • dampening solution supply and the ink supply and their respective run-up curves are adjusted or continuously corrected using the time-dependent temperature profiles and only a few reference color density measurements to ensure the desired color density and print quality.

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

Claims (7)

  1. Unité d'impression (10) pour machine d'impression offset (1), présentant : une imprimante (20) dotée d'une unité d'encrage (23) pour alimenter l'imprimante (20) en encre et une unité de mouillage (24) pour alimenter l'imprimante en humidificateur (20) et une unité de commande (40) qui est couplée à l'imprimante (20) et à son unité d'encrage (23) et unité d'humidification (24) pour les commander, étant intégrés dans au moins un des cylindres (21) de l'imprimante (20) des moyens de mesure de température (21a) pour délivrer des signaux de température représentant une évolution de température sur une largeur de balle du cylindre (21) de l'imprimante (20) et des premiers moyens de transmission de signaux de température au dispositif de commande (40) et le dispositif de commande (40) étant conçu pour commander un apport d'humidificateur de l'unité de mouillage (24) à partir des signaux de température, caractérisée en ce
    - a- qu'il est prévu des moyens de mesure d'encrage (25) pour délivrer des signaux d'encrage représentant une application d'encre sur un support d'impression et de seconds moyens de transmission pour la transmission des signaux d'encrage au dispositif de commande (40) et
    - b- que le dispositif de commande (40) est conçu pour commander un apport d'encre de l'unité d'encrage (23) à partir des signaux de température et des signaux d'encrage et
    - c- que le dispositif de commande (40) est conçu pour définir l'apport d'humidificateur à partir de courbes de montée en puissance prédéfinies enregistrées dans le dispositif de commande (40) pour l'apport d'humidificateur et,
    - d- pour, à partir des signaux de température, créer des profils de température chronologiquement dépendants du cylindre (21) de l'imprimante (20) et modifier l'apport d'humidificateur et ses courbes de montée en puissance à partir des profils de température selon la chronologie.
  2. Unité d'impression (10) selon la revendication 1, dans laquelle le dispositif de commande (40) est conçu pour définir localement l'apport d'encre de l'imprimante (24) à partir de proportions de répartition locales prédéfinies de quantités d'encre d'une image d'impression à imprimer et de courbes de montée en puissance prédéfinies enregistrées dans le dispositif de commande (40) pour l'apport d'encre et modifier suivant la chronologie l'apport d'encre défini à partir de l'apport d'humidificateur variable suivant la chronologie et des signaux d'encrage en conservant les proportions locales de répartition des quantités d'encre.
  3. Machine d'impression offset (1) comportant une unité d'impression (10) selon une des revendications 1 à 2.
  4. Machine d'impression offset (1) selon la revendication 3, comprenant en outre un pupitre de commande (50) qui est couplé au dispositif de commande (40) et qui présente des éléments de commande (53) pour modifier manuellement et localement l'apport d'encre et/ou l'apport d'humidificateur.
  5. Machine d'impression offset (1) selon la revendication 4, dans laquelle les éléments de commande (53) peuvent être passés d'une première position dans laquelle l'actionnement des éléments de commande (53) peut être débloqué et une seconde position dans laquelle l'actionnement des éléments de commande est bloqué.
  6. Procédé d'utilisation d'une machine d'impression offset (1) comportant au moins une unité d'impression (10) dotée d'une unité d'encrage (23) pour alimenter l'imprimante (20) en encre et une unité de mouillage (24) pour alimenter l'imprimante (20) en humidificateur (20) et une unité de commande (40) qui est couplée à l'imprimante (20) et à son unité d'encrage (23) et unité d'humidification (24) pour les commander, des températures étant mesurées dans au moins un cylindre (21) de l'imprimante, des signaux de température représentant une évolution de température sur une largeur de balle du cylindre (21) de l'imprimante (20) étant générés, les signaux de température étant transmis au dispositif de commande (40) et le dispositif de commande (40) commandant un apport d'humidificateur de l'unité de mouillage (24) à partir des signaux de température, caractérisé en ce que
    - a- on mesure une application d'encre sur un support d'impression, les signaux d'encrage représentant l'application d'encre étant générés, les signaux d'encrage étant transmis au dispositif de commande (40) et
    - b- le dispositif de commande (40) commandant un apport d'encre de l'unité d'encrage (23) à partir des signaux de température et des signaux d'encrage et,
    - c- lors de la commande de l'apport d'humidificateur, l'apport d'humidificateur étant d'abord défini à partir de courbes de montée en puissance prédéfinies enregistrées dans le dispositif de commande (40) pour l'apport d'humidificateur et
    - d- à partir des signaux de température, des profils de température chronologiquement dépendants du cylindre (21) de l'imprimante (20) étant créés puis l'apport d'humidificateur et ses courbes de montée en puissance étant modifiés suivant la chronologie à partir des profils de température.
  7. Procédé selon la revendication 6, dans lequel, lors de la commande, l'apport d'encre de l'unité d'encrage (24) est d'abord défini localement à partir de proportions de répartition locales prédéfinies de quantités d'encre et de courbes de montée en puissance prédéfinies enregistrées dans le dispositif de commande (40) pour l'apport d'encre et l'apport d'encre défini est ensuite modifié selon la chronologie à partir de l'apport d'humidificateur variable suivant la chronologie et des signaux d'encrage en conservant les proportions locales de répartition de quantités d'encre.
EP20090169912 2008-09-29 2009-09-10 Imprimante offset Not-in-force EP2168768B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE200810049355 DE102008049355A1 (de) 2008-09-29 2008-09-29 Offsetdruckmaschine

Publications (3)

Publication Number Publication Date
EP2168768A2 EP2168768A2 (fr) 2010-03-31
EP2168768A3 EP2168768A3 (fr) 2010-12-01
EP2168768B1 true EP2168768B1 (fr) 2014-04-02

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP20090169912 Not-in-force EP2168768B1 (fr) 2008-09-29 2009-09-10 Imprimante offset

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EP (1) EP2168768B1 (fr)
DE (1) DE102008049355A1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102015104469A1 (de) * 2015-03-25 2016-09-29 Manroland Web Systems Gmbh Verfahren zum Betreiben einer Druckmaschine

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT1211266B (it) * 1987-08-17 1989-10-12 Grapho Eng Srl Sistema di bagnatura continua a regolazione automatica per macchine da stampa offset
FR2666765B1 (fr) * 1990-09-14 1994-04-15 Man Roland Druckmaschinen Ag Procede pour commander l'alimentation en agent mouillant sur la plaque d'impression d'une machine imprimante offset.
WO1999048693A1 (fr) * 1998-03-23 1999-09-30 Goss Graphic Systems, Inc. Procede et dispositif de regulation du mouilleur d'une presse lithographique
DE19958252A1 (de) * 1999-12-03 2001-06-07 Heidelberger Druckmasch Ag Feuchtegesteuerte Druckmaschine
JP2001199052A (ja) * 2000-01-17 2001-07-24 Toshiba Mach Co Ltd 印刷機のインキ壺内のインキおよび水舟内の湿し水の温度制御装置
JP3556927B2 (ja) * 2001-07-04 2004-08-25 三菱重工業株式会社 印刷機の運転支援装置及び印刷機の運転支援システム並びに印刷機の運転支援方法
DE10325185B4 (de) * 2002-07-01 2017-04-13 Heidelberger Druckmaschinen Ag Verfahren zum Betrieb eines Druckwerks einer Druckmaschine in Abhängigkeit von der Farbtemperatur sowie nach dem Verfahren arbeitende Druckmaschinensteuerung
SE0401184L (sv) * 2004-05-07 2005-08-23 Baldwin Jimek Ab Ett kontrollsystem och en metod för en tryckpress

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Publication number Publication date
EP2168768A2 (fr) 2010-03-31
DE102008049355A1 (de) 2010-04-01
EP2168768A3 (fr) 2010-12-01

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