EP2373489B1 - Dispositif d'impression et procédé d'impression de papier d'impression - Google Patents

Dispositif d'impression et procédé d'impression de papier d'impression Download PDF

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Publication number
EP2373489B1
EP2373489B1 EP09801397A EP09801397A EP2373489B1 EP 2373489 B1 EP2373489 B1 EP 2373489B1 EP 09801397 A EP09801397 A EP 09801397A EP 09801397 A EP09801397 A EP 09801397A EP 2373489 B1 EP2373489 B1 EP 2373489B1
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EP
European Patent Office
Prior art keywords
printing
paper
printing paper
climate zone
paper feed
Prior art date
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Application number
EP09801397A
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German (de)
English (en)
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EP2373489A2 (fr
Inventor
Udo Tünte
Frank Petersen
Richard Schwitte
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.)
Huelsta Werke Huels GmbH and Co KG
Flooring Industries Ltd SARL
Original Assignee
Huelsta Werke Huels GmbH and Co KG
Flooring Industries Ltd SARL
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Application filed by Huelsta Werke Huels GmbH and Co KG, Flooring Industries Ltd SARL filed Critical Huelsta Werke Huels GmbH and Co KG
Priority to EP09801397A priority Critical patent/EP2373489B1/fr
Priority to PL09801397T priority patent/PL2373489T3/pl
Publication of EP2373489A2 publication Critical patent/EP2373489A2/fr
Application granted granted Critical
Publication of EP2373489B1 publication Critical patent/EP2373489B1/fr
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J11/00Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form
    • B41J11/0015Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form for treating before, during or after printing or for uniform coating or laminating the copy material before or after printing

Definitions

  • the invention relates to an arrangement with a space and a printing device for printing on printing paper, with a paper feeder for printing paper to be printed, a downstream of the paper feeder printing device and a downstream of the printing device paper discharge for printed printing paper.
  • the paper feed, the printing device and the paper removal act directly together. It is therefore an in-line pressure arrangement.
  • the present invention relates to a method for printing on printing paper with a printing device of the aforementioned type.
  • the present invention relates to applications for printing on printing paper with a decor for use in sheet-like components, preferably for floor, wall, ceiling or furniture applications, wherein the printing paper is printed by a digital printing method by a digital printing device by means of ink, and on a related digital printing process.
  • the digital printing apparatus is usually provided with a substructure having a paper guide for the printing paper and a printer carriage which can be moved on a carriage guide with at least one print head.
  • the present invention is not limited to the above-mentioned preferred application in digital printing, but basically also relates to other printing methods, in particular to the gravure printing method.
  • a printing device for printing on printing paper with a paper feed, a printing device and a paper discharge is known.
  • the printing paper is heated in the region of the printing device via a heating plate and a UV irradiation device.
  • a measuring device is provided which measures the temperature and humidity of the paper in this area and, in the case of deviations from certain predefined values, the heating and irradiation devices controls accordingly.
  • a comparable system is from the EP 1 661 722 A 1 and the EP 1 902 849 A 1 known.
  • a digital printing method and a related digital printing device are still from the EP 1 749 676 A1 known.
  • the known method is used to digitally print on printing paper, which is used for the production of sheet-like components, such as tiles, panels and the like.
  • the aim is to provide an ink jet printing method, wherein the print result on the surface of the bedru kenden objects in terms of appearance should meet the highest quality requirements.
  • an absorbent along its entire thickness for liquid resin paper web is soaked from one side with liquid synthetic resin, that the resin does not completely penetrate the paper web, so that the other side of the paper web is at least substantially free of synthetic resin.
  • the printed printing paper has at least partially and sometimes very irregularly wrinkling. This wrinkling affects the print result sometimes so strong that the printed printing paper can no longer be used. Especially in digital printing, this is very problematic because the printing is relatively slow.
  • Object of the present invention is therefore to remedy this situation.
  • the printing device is arranged in total in a room in which prevails only a first and only climatic zone in which a predetermined set relative room humidity of less than 32%, in particular between 24% to 30% is present.
  • the predetermined set temperature is preferably between 14 ° C and 35 ° C, in particular between 16 ° C and 25 ° C and preferably between 17 ° C and 19 ° C.
  • the pressure corresponds to the ambient pressure ⁇ 0.3 bar.
  • the relative humidity of the room air which represents the ratio of the actual to the maximum possible steam content, depends on the two above-mentioned state variables of temperature and pressure. If you heat a certain volume of air without changing the absolute water content, then the air can absorb more water. The maximum possible water content increases, but the actual water content remains the same. Since the relative humidity is the quotient of these two quantities and the denominator increases, the relative humidity in the room is reduced. Conversely, a temperature reduction leads to a higher relative humidity of the room.
  • a first climate zone which should have a relative humidity of less than 32%. With such a room air moisture content, no relevant paper growth takes place. In particular, the room air humidity should be between 24% and 30%, with each value lying between the two aforementioned limits being possible and favorable.
  • the temperature in the first climatic zone should be between 14 ° C and 35 ° C, especially between 16 ° C and 25 ° C, and preferably between 17 ° C and 19 ° C.
  • the pressure in the first climate zone should correspond to the ambient pressure ⁇ 0.3 bar.
  • the printing device according to the invention is a so-called in-line machine, in which the paper feed to the printing device and the printing device interact with the paper discharge.
  • the paper feed to the printing device and the printing device interact with the paper discharge.
  • paper sheets are printed with the printing device according to the invention.
  • printing paper is printed by the roll.
  • the paper feeder preferably has a unwinding device for a printing paper roll with unprinted printing paper, while the paper outfeed has at least one reeling device for a printing paper roll with printed printing paper.
  • a non-doctored and ink-receptive layer-free printing paper for printing and that the printing paper before, during and / or after printing and / or the printing ink immediately after application to the printing paper is heated.
  • This ink receiving layer-free printing paper is very inexpensive, but has the disadvantage that it is very hygroscopic and not only absorbs moisture from the room air, but also from the ink, which also leads to a paper growth associated with a curl or wrinkling of the printed paper.
  • a very rapid drying of the ink takes place on the printing paper, so that, depending on the paper and heating temperature, it does not or only slightly to the above problems.
  • the heating of the printing paper takes place from the top and / or bottom of the printing paper.
  • the drying / heating should preferably be carried out at a temperature of above 35 ° C, in particular between 40 ° C and 60 ° C. Very good results, on the one hand lead to a quick drying and on the other hand, but do not affect the pressure, have been achieved at temperatures between 49 ° C and 54 ° C.
  • the droplet size of the printing ink should be between 4.0 ng and 50 ng during printing, while the printing speed should be greater than 3 m 2 / h.
  • the printing speed is preferably between 4 and 50 m 2 / h and in particular between 6 and 30 m 2 / h.
  • the heating of the printing paper takes place in a drying room, which is located within a housing, the printing device, d. H. surrounds the actual digital printer of the printing device. Ultimately, this involves a narrow, elongated housing which corresponds approximately to the dimensions of the printer and ultimately limits the heat energy applied during the heating to the area of the printer and the printing paper located there.
  • the air within the drying space is permanently circulated during the heating. It is also understood by circulation that fresh air is supplied and discharged with moisture laden air.
  • the device is provided in connection with the heated printing device, that at least one heating device for heating the printing paper is provided before, during and / or after the printing and / or to heat the color after application to the printing paper.
  • the heating device extends at least substantially over the width of the paper guide, so that the printing paper undergoes uniform heating over its entire width.
  • the first heating device should preferably be an IR heater, in particular a NIR heater, or else a microwave heater, which acts directly on the water content of the printing ink. To support the heater this is associated with a fan for fresh air supply. It is advisable to arrange the fan above the heater, wherein the blowing direction of the fan down, d. H. directed directly to the just applied ink. For this purpose, at least one appropriately aligned baffle is preferably provided.
  • a heat protective cover movable with the print carriage is provided on the carriage.
  • the heat shield is ultimately adapted to the shape and dimensions of the printer carriage and thus any connected components, such as ink tank cartridges.
  • the first heating device it is advisable to provide a further heating device for underside preheating of the printing paper in the substructure in the area of the paper guide at least in the conveying direction of the printing paper in front of the printhead.
  • This is ultimately a type of floor heating that heats and preheats the printing paper from below. The preheating leads to a faster fixation of the ink applied to the printing paper.
  • the housing is preferably closed at the top and at the bottom as well as at the front and at the back.
  • the area between the paper guide and the housing forms a drying space in which the heated air is circulated due to the fan action. This not only leads to heating of the area of the printing paper that has just been printed, but also to a preheating of the not yet printed printing paper from above.
  • the housing and thus the drying space is at least partially open at the end.
  • the printing device 1 Shown is a printing device 1, which is provided for printing on printing paper with a decor.
  • the printing paper is then to be used in flat components, in particular for floor, wall, ceiling or furniture applications.
  • the printing device 1 has a paper feed 3 for the printing paper 2 to be printed.
  • the paper feeder 3, which is shown only schematically, is followed by a printing device 4, which in the present case is a digital printing device.
  • the printing device 4 is also followed by a paper discharge 5 also shown schematically for the printed printing paper 2.
  • the paper feeder 3, the printing device 4 and the paper discharge 5 cooperate, so are controlled by a common control device, so that the speed of the printing paper in the conveying direction F is tuned to the printing speed of the printing device 4. As a result, it is an in-line printing process.
  • the printing device 4 has a substructure 6 with a paper guide 7 for the printing paper 2. Furthermore, a slide guide 8 is provided which is fixed to the base 6. The carriage guide 8 extends over the entire width of the substructure 6 and is located above the paper guide 7. Along the carriage guide 8, a printer carriage 9 is movable. Connected to the printer carriage 9 is an ink tank 10, which may have a corresponding number of printing inks. It is not shown that the printer carriage 9 has at least one print head for spraying ink / ink onto the printing paper 2 transported by the printing device 4.
  • the printing paper 2 is fed to the paper feeder 8 in roll form, printed in the printing device 4 and rolled up again at the paper removal 5. After completion of the printing, the rolled-up printing paper 2 of the paper removal 5 is removed and usually doctored. Subsequently, the printing paper 2 is cut to desired blanks and finally pressed with appropriate plates to flat components for floor, wall, ceiling and / or furniture applications.
  • two heaters 11, 12 are provided for heating the printing paper 2 before, during and after printing, and for heating and drying the ink after application to the printing paper 2. It is understood that in principle it is also possible to provide further heating devices, for example in the area of the paper feed 3 or between the paper feed and the printing device 4.
  • the heaters 11, 12 both extend at least substantially over the entire width of the paper guide 7. Thus, the heaters 11, 12 ultimately extend transversely to the conveying direction F. Since the paper guide 7 may have a maximum width of greater than 3 m, the two heaters 11, 12 a corresponding length.
  • the heating device 11 is in the conveying direction F behind the printhead or printheads arranged and used initially and essentially for drying the ink after application to the top of the printing paper 2.
  • the heater 11 is formed as an IR heater, which is associated with a fan 13 for fresh air supply.
  • the blower 13 itself, the length of which corresponds at least substantially to the length of the heating device 11, is arranged above the heating device 11, wherein both units are in turn arranged above the printer carriage 9.
  • the discharge direction of the blower 13 is directed vertically downwards.
  • at least one guide plate 14 is provided, which is directed vertically downwards.
  • the heater 11 and the fan 13 is in the conveying direction F only a few inches behind the print head of the printer carriage 9 to dry the applied ink immediately after application to the printing paper 2 can.
  • the printer carriage 9 Since the heater 11 is at least partially above the printer carriage 9 in the vertical direction, the printer carriage 9 is thus directly exposed to the thermal influence of the heater 11, located above the printer carriage 9 and also above the ink tank 10, a heat shield 15, the present angle or is formed step-shaped and the heating means 11 immediately adjacent surfaces of the printer carriage 9 of the ink tank 10 is thermally insulated. It is understood that the width of the heat shield cover 15 at least substantially equal to the width of the printer carriage 9.
  • the heat protection cover 15 is fixedly connected to the printer carriage 9 and movable therewith.
  • the further heating device 12 which is provided for underside preheating the printing paper 2.
  • the further heating device 12 extends in the conveying direction F only until shortly before the printer carriage 9.
  • the further heating device 12 over a larger area of the paper guide 7, that is, to below the printer carriage 9 therethrough can extend.
  • the printer device 4 is at least partially disposed in a housing 16 together with the heater 11.
  • the housing 16 extends at least substantially over the entire width of the printing device 4 and thus ultimately extends transversely to the conveying direction F. Except for a slot, not shown in detail for carrying the printing paper 2, the present rectangular in cross-section housing 16 top and bottom sides and closed front and back. This results between the paper guide 7 and the inside of the housing 16, a drying space 17.
  • the front side, the housing 16 and thus the drying chamber 17 at least partially open.
  • an end facing 18 is shown in each case. The facing 18 ends above the printer carriage 9 so that it is accessible as needed.
  • a corresponding veneer is provided on the opposite side.
  • the housing 16 itself has a width between 40 cm and 50 cm and a height between 50 cm and 60 cm at a length which corresponds approximately to the length of the printing device 4.
  • the length of the printing device 4 is about 2.5 m
  • the width of the paper guide 7 is about 2.1 m.
  • a temperature of about 52.degree. C. is applied via the heating device 11 during printing and a temperature of about 50.degree. C. is applied via the further heating device 12.
  • the further heating device 12 supports the drying of the printing ink after application to the upper side of the printing paper 2 by the preheating of the printing paper 4 on the underside.
  • the printing paper 2 itself is a non-resinous and ink-receptive layer-free paper on which the printing ink would proceed without drying and would expand without the drying and then wave due to the high water content of the ink, which is when winding in the paper removal 5 would lead to wrinkles, which ultimately makes the further processing impossible.
  • Fig. 1 illustrated embodiment so that prevail in the region of the printing device, that is, within the space 19 in which the printing device 1 is arranged, two at least substantially separate climatic zones with different relative humidity levels.
  • the paper feed and the paper removal are each arranged in a space in which a climate zone prevails, whose indoor air humidity is lower than the room air humidity prevailing in the space 19 in which the printing device 4 is arranged. It should be pointed out that it is also fundamentally possible to provide a different climate zone than in the area of the printing device 4 only in the area of the paper feed 3 or even in the area of the paper feed 5.
  • the first climate zone in the area or space of the paper feed 3 and the paper removal 5 in the present case has a relative humidity of less than 32%.
  • indoor air moisture contents in the first climate zone of about 24%, 25%, 26%, 27%, 28%, 29% or 30%.
  • the temperature in the first climate zone is present at 18 ° C. It can in principle be between 14 ° C and 35 ° C, but preferred are values between 16 ° C and 25 ° C.
  • the pressure within the first climatic zone is slightly increased compared to the ambient pressure in the space 19, in the present case between 0.05 bar and 0.1 bar. In principle, the pressure in the first climatic zone can also be increased or reduced more than the ambient pressure. It may also be provided there the ambient pressure.
  • the second climate zone is presently provided in the area or space 19 of the printing device 4.
  • the second climate zone does not mean the conditions in the drying room 17, but the room air conditions outside the drying room 17, which prevail in the space 19 with the exception of the encapsulated area of the first climate zone.
  • a room humidity of more than 35% is provided.
  • the room air humidity is between 40% and 60%, whereby each value is possible within this interval.
  • the temperature in the closed space 19, in which the second climate zone is located in the present case about 18 ° C.
  • the temperature of the second climate zone should always be between 14 ° C and 35 ° C. Any value is possible within this interval.
  • the pressure in the second climate zone corresponds to the ambient pressure, but may also be slightly higher or lower.
  • the climatic chambers 20, 21 each have an at least substantially closed housing, which in the present case is in two parts, namely a lower part 22 and a hood 23.
  • the hood 23 can be removed from the lower part 22 or pivoted to the opposite, so that the paper feeder 3 and the paper removal 5 are accessible and a printing paper roll can be supplied or removed.
  • the two climate chambers 21, 22 have only in the region in which the printing paper 2 off or enters, each having a slot 24.
  • the slot 24 may be required, at least partially sealed with a seal, such as a brush seal.
  • the paper feeder 3 has a unwinding device 25 for a printing paper roll with unprinted printing paper 2 while the paper discharge 5 has a retractor 26 for a printing paper roll with printed printing paper 2.
  • an unprinted printing paper roll is first inserted into the unwinding device 25 of the paper feed 3.
  • the printing paper 2 of the unprinted printing paper roll is airtight packed before being fed to the unwinding device 25 and is unpacked for insertion into the paper feeder 3.
  • the printing paper is placed in the first climate zone.
  • the hood 23 is opened, the printing paper roll used and the hood 23 closed again.
  • the aforementioned ambient conditions of the first climate zone in the climatic chamber 20 are set immediately.
  • the printing paper 2 is then guided by the printing device 4 and the gap 24 of the climatic chamber 21 to the unwinding device 26 of the paper removal 5.
  • the printing paper 2 is then fixed there.
  • the climate chamber 21 is closed and the environmental conditions of the second climate zone are set there.
  • the rolling over the retractor 26 can begin. After setting up the printing device 1, the pressure can then begin via the printing device 4.

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  • Ink Jet (AREA)
  • Paper (AREA)

Claims (14)

  1. Agencement comportant un espace (19) et un dispositif d'impression (1) pour l'impression de papier d'impression (2), comprenant une amenée de papier (3) pour du papier d'impression (2) à imprimer, un mécanisme d'impression (4) monté à la suite de l'amenée de papier (3) et une évacuation de papier (5) montée à la suite du mécanisme d'impression (4) pour du papier d'impression imprimé (2), caractérisé en ce que l'amenée de papier (3), le mécanisme d'impression (4) et l'évacuation de papier (5) du dispositif d'impression (1) sont disposés de manière conjointe dans l'espace (19) dans lequel règne une zone climatique possédant une humidité atmosphérique relative prédéfinie réglée à une valeur inférieure à 32 % et en ce que, dans la zone climatique, règne une température prédéfinie réglée à une valeur entre 14 °C et 35 °C.
  2. Agencement selon la revendication 1, caractérisé en ce qu'on prévoit, dans la zone climatique, une humidité atmosphérique relative entre 24 % et 30 %.
  3. Agencement selon la revendication 1 ou 2, caractérisé en ce que, dans la zone climatique, règne une température entre 16 °C et 25 °C et de préférence entre 17°C et 19 °C.
  4. Agencement selon l'une quelconque des revendications précédentes, caractérisé en ce que, dans la zone climatique, règne une pression correspondant à la pression ambiante ± 0,3 bar.
  5. Agencement selon l'une quelconque des revendications précédentes, caractérisé en ce que, dans la zone climatique, on peut régler différentes teneurs en humidité atmosphérique, différentes températures et/ou différentes pressions.
  6. Agencement selon l'une quelconque des revendications précédentes, caractérisé en ce que, pour le réglage de différentes teneurs en humidité atmosphérique, de différentes températures et/ou de différentes pressions, on prévoit au moins un climatiseur et/ou un déshumidificateur, et en ce que, de préférence, on prévoit au moins un mécanisme de mesure pour la mesure de l'humidité atmosphérique, de la température et/ou de la pression.
  7. Agencement selon l'une quelconque des revendications précédentes, caractérisé en ce que l'amenée de papier (3) présente au moins un mécanisme de déroulement (25) pour un rouleau de papier d'impression comprenant du papier d'impression non imprimé et/ou en ce que l'évacuation de papier (5) présente au moins un mécanisme d'enroulement (26) pour un rouleau de papier d'impression comprenant du papier d'impression imprimé.
  8. Agencement selon l'une quelconque des revendications précédentes, caractérisé en ce qu'on prévoit au moins un mécanisme de chauffage (11, 12) pour le chauffage du papier d'impression (2) par rapport à la température ambiante avant, pendant et/ou après l'impression et/ou pour le chauffage de l'encre d'impression après l'application sur le papier d'impression (2).
  9. Procédé pour l'impression de papier d'impression (2) avec un agencement selon l'une quelconque des revendications précédentes, dans lequel on amène le papier d'impression (2) non imprimé à une amenée de papier (3) du dispositif d'impression (1), on amène le papier d'impression (2) à partir de l'amenée de papier (3) à un mécanisme d'impression (4) du dispositif d'impression (1) et on l'y imprime, et on l'achemine du mécanisme d'impression (4) à une évacuation de papier (5) du dispositif d'impression (1), dans lequel l'amenée de papier (3), le mécanisme d'impression (4) et l'évacuation de papier (5) du dispositif d'impression (1) sont disposés de manière conjointe dans un espace (19) dans lequel règne une zone climatique possédant une humidité atmosphérique relative inférieure à 32 %, en particulier entre 24 % et 30 %, et, dans lequel, dans la zone climatique, règne une température entre 14 °C et 35 °C, en particulier entre 16 °C et 25 °C et de préférence entre 17 °C et 19 °C.
  10. Procédé selon la revendication 9, caractérisé dans la zone climatique, règne une pression correspondant à la pression ambiante ± 0,3 bar.
  11. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce qu'on mesure l'humidité atmosphérique, la température et/ou la pression dans la zone climatique et on les règle de manière automatique à au moins une valeur prédéfinie.
  12. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que le papier d'impression (2) avant son acheminement à l'amenée de papier (3) est conditionné dans un emballage étanche à l'air, n'est déballé que pour son introduction dans l'amenée de papier (3) et est introduit directement après son déballage dans la zone climatique de l'amenée de papier (3) ou bien est déballé dans la zone climatique.
  13. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que le papier d'impression (2) est imprimé dans un procédé d'impression numérique.
  14. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que le papier d'impression (2) est chauffé avant, pendant et/ou après l'impression et/ou l'encre d'impression est chauffée directement après son application sur le papier d'impression (2) en particulier à une température supérieure à 35 °C, de préférence entre 40 °C et 60 °C et/ou en ce qu'on utilise pour l'impression, un papier d'impression (2) non imprégné et exempt, du côté impression, d'une couche de réception d'encre.
EP09801397A 2009-01-07 2009-12-08 Dispositif d'impression et procédé d'impression de papier d'impression Active EP2373489B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP09801397A EP2373489B1 (fr) 2009-01-07 2009-12-08 Dispositif d'impression et procédé d'impression de papier d'impression
PL09801397T PL2373489T3 (pl) 2009-01-07 2009-12-08 Maszyna drukująca i sposób zadrukowywania papieru drukowego

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
EP09000083 2009-01-07
EP09003192.3A EP2206605B2 (fr) 2009-01-07 2009-03-05 Dispositif d'impression et procédé d'impression de papier d'impression
EP09801397A EP2373489B1 (fr) 2009-01-07 2009-12-08 Dispositif d'impression et procédé d'impression de papier d'impression
PCT/EP2009/008752 WO2010078904A2 (fr) 2009-01-07 2009-12-08 Dispositif d'impression et procédé d'impression de papier d'impression

Publications (2)

Publication Number Publication Date
EP2373489A2 EP2373489A2 (fr) 2011-10-12
EP2373489B1 true EP2373489B1 (fr) 2013-03-06

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Application Number Title Priority Date Filing Date
EP09003192.3A Active EP2206605B2 (fr) 2009-01-07 2009-03-05 Dispositif d'impression et procédé d'impression de papier d'impression
EP09801397A Active EP2373489B1 (fr) 2009-01-07 2009-12-08 Dispositif d'impression et procédé d'impression de papier d'impression

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP09003192.3A Active EP2206605B2 (fr) 2009-01-07 2009-03-05 Dispositif d'impression et procédé d'impression de papier d'impression

Country Status (4)

Country Link
EP (2) EP2206605B2 (fr)
ES (2) ES2394985T5 (fr)
PL (2) PL2206605T5 (fr)
WO (1) WO2010078904A2 (fr)

Cited By (1)

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EP4086081A1 (fr) 2021-05-07 2022-11-09 Swiss Krono TEC AG Procédé d'impression numérique

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102012223402A1 (de) 2012-12-17 2014-06-18 Krones Ag Direktdruckmaschine mit Verkleidung
EP4488066B1 (fr) 2023-07-07 2026-01-28 SWISS KRONO Tec AG Procédé et dispositif d'impression d'une pièce en forme de plaque

Family Cites Families (5)

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Publication number Priority date Publication date Assignee Title
US7210775B2 (en) * 2002-08-29 2007-05-01 Konica Corporation Ink jet recording apparatus
EP1661722B1 (fr) * 2004-11-25 2014-08-27 Océ-Technologies B.V. Imprimante avec système de traitement de papier
DE102005036541B9 (de) 2005-08-03 2010-02-11 Bauer, Jörg R. Verfahren zum Herstellen einer insbesondere mittels eines Tintenstrahldruckverfahrens bedruckbaren Papieroberfläche, Papierbahn sowie damit beschichteter Gegenstand
JP4903618B2 (ja) * 2006-09-25 2012-03-28 富士フイルム株式会社 インクジェット記録方法及びインクジェット記録装置
JP2008246794A (ja) * 2007-03-29 2008-10-16 Fujifilm Corp 活性エネルギー線硬化型インクジェット記録装置

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4086081A1 (fr) 2021-05-07 2022-11-09 Swiss Krono TEC AG Procédé d'impression numérique

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EP2373489A2 (fr) 2011-10-12
ES2394985T3 (es) 2013-02-07
WO2010078904A3 (fr) 2010-10-14
PL2373489T3 (pl) 2013-06-28
EP2206605A3 (fr) 2010-08-25
EP2206605B1 (fr) 2012-10-24
WO2010078904A2 (fr) 2010-07-15
PL2206605T5 (pl) 2022-04-04
ES2394985T5 (es) 2022-04-21
EP2206605B2 (fr) 2022-01-19
EP2206605A2 (fr) 2010-07-14
ES2403117T3 (es) 2013-05-14
PL2206605T3 (pl) 2013-03-29

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