EP2206605B2 - 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
EP2206605B2
EP2206605B2 EP09003192.3A EP09003192A EP2206605B2 EP 2206605 B2 EP2206605 B2 EP 2206605B2 EP 09003192 A EP09003192 A EP 09003192A EP 2206605 B2 EP2206605 B2 EP 2206605B2
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EP
European Patent Office
Prior art keywords
printing
paper
climate zone
paper feed
climate
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.)
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Application number
EP09003192.3A
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German (de)
English (en)
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EP2206605A3 (fr
EP2206605B1 (fr
EP2206605A2 (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.)
Flooring Industries Ltd SARL
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Flooring Industries Ltd SARL
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Application filed by Flooring Industries Ltd SARL filed Critical Flooring Industries Ltd SARL
Priority to PL09003192T priority Critical patent/PL2206605T5/pl
Priority to PL09801397T priority patent/PL2373489T3/pl
Priority to ES09801397T priority patent/ES2403117T3/es
Priority to PCT/EP2009/008752 priority patent/WO2010078904A2/fr
Priority to EP09801397A priority patent/EP2373489B1/fr
Publication of EP2206605A2 publication Critical patent/EP2206605A2/fr
Publication of EP2206605A3 publication Critical patent/EP2206605A3/fr
Publication of EP2206605B1 publication Critical patent/EP2206605B1/fr
Publication of EP2206605B2 publication Critical patent/EP2206605B2/fr
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Classifications

    • 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 a method and a printing device for printing on printing paper, with a paper feed for printing paper to be printed, a printing device downstream of the paper feed and a paper discharge for printed printing paper downstream of the printing device.
  • the paper feed, the printing device and the paper discharge interact directly with one another. It is therefore an in-line printing arrangement.
  • the present invention relates to applications for printing printing paper with a decoration for use in flat components, preferably for floor, wall, ceiling or furniture applications, the printing paper being printed using a digital printing process by a digital printing device using printing ink, and to a related digital printing process.
  • the digital printing device is usually provided with a substructure having a paper guide for the printing paper and a printer carriage that can be moved on a carriage guide and has at least one print head.
  • the present invention is not limited to the preferred application in digital printing indicated above, but in principle also relates to other printing methods, in particular also to the gravure printing method.
  • a digital printing method of the type mentioned above and a related digital printing device are also already from EP 1 749 676 A1 known.
  • the known method is used to digitally print printing paper that is used to produce flat components such as covering panels, panels and the like.
  • the aim is to provide an inkjet printing process, in which the print result on the surface of the objects to be printed should meet the highest quality requirements in terms of appearance.
  • a paper web that is absorbent for liquid synthetic resin along its entire thickness is soaked with liquid synthetic resin from one side in such a way that the synthetic resin does not completely penetrate the paper web, so that the other side of the paper web is at least largely free of synthetic resin.
  • the known method is intended to create surfaces which are optimally adapted to the known printing result by the selection of the paper and the colored liquid and, if necessary, a pretreatment of the surface to be printed.
  • the invention now applies to the printing device mentioned at the outset in that at least two separate climate zones with different relative room air humidity contents prevail in the space in which the printing device is arranged.
  • the individual climate zones are realized in different, at least essentially closed rooms.
  • the relative room air humidity in the room in which the paper feed and/or the paper discharge are/is arranged is lower than in the room in which the printing device is arranged.
  • the relative room air humidity which represents the ratio of the actual to the maximum possible water vapor content, depends on the two aforementioned state variables of temperature and pressure. If you heat up 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 variables and the denominator increases, the relative humidity in the room decreases. Conversely, a drop in temperature leads to a higher relative humidity in the room. In the simplest case, the pressure and/or temperature conditions are identical in both climate zones.
  • a first climatic zone prevails, which should have a relative room air humidity of less than 32%. With such a humidity level in the room air, there is no longer any relevant paper growth.
  • the Room air humidity is between 24% and 30%, with any value between the two aforementioned limit values being possible and favorable.
  • the temperature in the first climatic zone should be between 14°C and 35°C, in particular 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.
  • a second climatic zone prevails, in which there is a relative room air humidity of more than 35%, in particular between 40% and 60%.
  • the temperature and/or pressure conditions correspond to those in the first climatic zone, to which reference is made, it being pointed out that different temperature and/or pressure conditions can prevail in the second climatic zone than in the first climatic zone.
  • the paper feeds and/or the paper removal are arranged within a common or in separate, essentially closed climatic chambers, with the first climate zone prevails within the climate chamber(s). Furthermore, it goes without saying that it is fundamentally also possible to arrange the printing device within an essentially closed climatic chamber, the second climatic zone then predominating within this climatic chamber.
  • an alternative embodiment of the invention provides that the printing device is arranged overall in a room in which only a first and only climate zone prevails in which a relative indoor air humidity of less than 32% especially between 24% to 30%.
  • the 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 room air moisture content in the relevant climatic zone can be set in the respective climatic zone.
  • Appropriate equipment such as air conditioners, dehumidifiers and the like are preferably provided for this purpose.
  • at least one measuring device for measuring the room air humidity and/or the temperature and/or the pressure is preferably provided.
  • the printing device according to the invention is a so-called in-line machine in which the paper feed interacts with the printing device and the printing device interacts with the paper discharge.
  • sheets of paper it is possible for sheets of paper to also be printed with the printing device according to the invention.
  • printing paper from the roll is preferably printed.
  • the paper feed preferably has an unwinding device for a roll of printing paper with unprinted printing paper, while the paper discharge has at least one winding device for a roll of printing paper with printed printing paper.
  • the unprinted and/or the printed roll of printing paper is then located in a corresponding climatic chamber of the aforementioned type.
  • the printing paper is packed airtight before being fed to the paper feed, is only unpacked when it is placed in the paper feed and immediately after unpacking in the climate zone of the paper feed is introduced.
  • the "immediate" introduction after unpacking means that this should be done so quickly that a relevant paper growth of the printing paper due to water absorption is prevented.
  • the printing paper should preferably be placed in the climate zone of the paper feeder within one hour after unpacking. It is of particular advantage in this context, moreover, that the printing paper is only unpacked in the first climatic zone with the reduced room air moisture content. In this way, a relevant paper growth is excluded in any case.
  • an unresined printing paper that is free of an ink receiving layer on the printing side is used for printing and that the printing paper is used before, during and/or after printing and/or the printing ink is applied immediately after application to the printing paper is heated.
  • This ink-receptive layer-free printing paper is very inexpensive, but has the disadvantage that it is very hygroscopic and not only absorbs moisture from the air in the room, but also from the printing ink, which also leads to paper growth associated with rippling or wrinkling of the printed paper.
  • the ink on the printing paper dries very quickly, so that, depending on the type of paper and the heating temperature, the aforementioned problems do not occur or occur only slightly.
  • the printing result is almost as good as when using a printing paper with an ink-receiving layer.
  • the aforementioned heating leads to an immediate drying of the printing ink on the printing paper as soon as the printing ink has been applied to the upper side of the printing paper.
  • the aforesaid measure results in the essential advantage that neither an expensive partial resining before printing nor the application of an ink receiving layer is necessary, so that the printing paper to be used in the invention is very inexpensive. This plays a significant role, particularly in digital printing, which will be discussed below.
  • the printing paper In order to achieve rapid drying, taking into account the special features of the digital printing process, particularly when using water-based inks/printing inks, it is favorable for the printing paper to be heated from the top and/or bottom of the printing paper.
  • the drying/heating should preferably be carried out at a temperature above 35.degree. C., in particular between 40.degree. C. and 60.degree. Very good results, which on the one hand lead to quick drying and on the other hand do not affect the print, have been achieved at temperatures between 49 °C and 54 °C.
  • the achievement of an optimal print result also depends on the droplet size or droplet weight of the printing ink on the one hand and the printing speed on the other.
  • the ink droplet size during printing should be between 4.0 ng and 50 ng, 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 printing paper is heated in a drying room which is located inside a housing which houses the printing device, i. H. surrounds the actual digital printer of the printing device.
  • a housing which houses the printing device, i. H. surrounds the actual digital printer of the printing device.
  • this is a narrow, elongated housing that roughly corresponds to the dimensions of the printer, which ultimately limits the thermal energy applied during heating to the area of the printer and the printing paper located there.
  • the air inside the drying chamber is permanently circulated during the heating. Circulation is also understood to mean that fresh air is supplied and air laden with moisture is discharged.
  • At least one heating device is provided for heating the printing paper before, during and/or after printing and/or for heating the ink after it has been applied to the printing paper.
  • the heating device extends at least essentially over the width of the paper guide, so that the printing paper is heated uniformly over its entire width.
  • the first heating device should preferably be an IR heater, in particular an NIR heater, or it can be a microwave heater that acts directly on the water content of the printing ink.
  • a blower for supplying fresh air. It makes sense to arrange the blower above the heating device, with the blowing direction of the blower pointing downwards, ie directly onto the printing ink that has just been applied.
  • at least one correspondingly aligned guide plate is preferably provided.
  • a thermal protection cover that can be moved with the printer carriage is provided on the printer carriage.
  • the heat protection cover is ultimately adapted to the shape and dimensions of the printer carriage and any components connected thereto, such as ink tank cartridges.
  • a further heating device for preheating the printing paper on the underside in the substructure in the area of the paper guide, at least in the conveying direction of the printing paper in front of the print head.
  • this is a kind of floor heating that heats and preheats the printing paper from below. The pre-heating leads to faster fixation of the ink applied to the printing paper.
  • the use of the above-mentioned housing, which serves to enclose at least some areas of the printing device together with the heating device, has proven to be particularly expedient.
  • the housing is preferably closed at the top and bottom and at the front and rear.
  • the area between the paper guide and the housing forms a drying space in which the heated air is circulated due to the fan effect. This leads not only to a heating of the area of the printing paper which has just been printed, but also to a preheating of the printing paper which has not yet been printed from above.
  • the housing and thus the drying chamber are open at the front, at least in certain areas.
  • the printing device 1 Shown is a printing device 1, which is provided for printing printing paper with a decoration.
  • the printing paper should then be used for 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 feed 3, which is shown only schematically, is followed by a printing device 4, which is a digital printing device in the present case.
  • the printing device 4 is followed by a paper discharge 5, also shown only schematically, for the printed printing paper 2.
  • the paper feed 3, the printing device 4 and the paper discharge 5 work together, ie are controlled by a common control device, so that the speed of the printing paper in the conveying direction F is matched to the printing speed of the printing device 4.
  • the result 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 carriage guide 8 is provided, which is fastened to the substructure 6. The carriage guide 8 extends over the entire width of the substructure 6 and is located above the paper guide 7. A printer carriage 9 can be moved along the carriage guide 8. Connected to the printer carriage 9 is an ink tank 10, which can have a corresponding number of printing colors. What is not shown is 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 feed 8 in roll form, printed in the printing device 4 and rolled up again at the paper discharge 5 .
  • the rolled-up printing paper 2 is removed from the paper outlet 5 and generally coated with resin.
  • the printing paper 2 is then cut to the desired blanks and finally pressed with corresponding panels to form flat components for floor, wall, ceiling and/or furniture applications.
  • two heating devices 11, 12 are provided for heating the printing paper 2 before, during and after printing and for heating and drying the printing ink after it has been applied to the printing paper 2. It goes without saying that it is fundamentally 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 heating devices 11, 12 both extend at least essentially over the entire width of the paper guide 7.
  • the heating devices 11, 12 thus ultimately run transversely to the conveying direction F. Since the paper guide 7 can have a maximum width of more than 3 m, the two heating devices have 11, 12 a corresponding length.
  • the heating device 11 is arranged behind the print head or print heads in the conveying direction F and is primarily used to dry the printing ink after it has been applied to the upper side of the printing paper 2.
  • the heating device 11 is designed as an IR heater, which has a fan 13 assigned to the fresh air supply.
  • the fan 13 itself, the length of which corresponds at least essentially to the length of the heating device 11, is arranged above the heating device 11, with both structural units in turn being arranged above the printer carriage 9.
  • the blowing direction of the blower 13 is directed vertically downward.
  • at least one guide plate 14 is provided, which is directed vertically downwards.
  • the heating device 11 and the blower 13 are only a few centimeters behind the print head of the printer carriage 9 in the conveying direction F in order to be able to dry the applied printing ink immediately after it has been applied to the printing paper 2 .
  • the heating device 11 Since the heating device 11 is located in the vertical direction at least in certain areas above the printer carriage 9, so that the printer carriage 9 is directly exposed to the thermal influence of the heating device 11, there is a heat protection cover 15 above the printer carriage 9 and also above the ink tank 10, which is angled or is stepped and thermally insulates the surfaces of the printer carriage 9 of the ink tank 10 that are directly adjacent to the heating device 11 . It goes without saying that the width of the heat protection cover 15 corresponds at least essentially to the width of the printer carriage 9 . The thermal protection cover 15 is firmly connected to the printer carriage 9 and can be moved with it.
  • the further heating device 12 which is provided for preheating the printing paper 2 on the underside.
  • the further heating device 12 extends in the conveying direction F only to just before the printer carriage 9.
  • the further heating device 12 it is also fundamentally possible for the further heating device 12 to also extend over a larger area of the paper guide 7, i.e. to below the printer carriage 9 , can extend.
  • the printer device 4 is arranged together with the heating device 11 in a housing 16, at least in some areas.
  • the housing 16 extends at least essentially over the entire width of the printing device 4 and thus ultimately runs transversely to the conveying direction F. Except for a slot, not shown in detail, for the passage of the printing paper 2, the housing 16, which is rectangular in cross section, is on the top and bottom and closed at the front and back. This results in a drying space 17 between the paper guide 7 and the inside housing 16.
  • the housing 16 and thus the drying space 17 are open at the front at least in certain areas.
  • an end panel 18 is shown.
  • the blind 18 ends above the printer carriage 9 so that it is accessible if necessary.
  • a corresponding facing is provided on the opposite side.
  • the housing 16 itself has a width of between 40 cm and 50 cm and a height of between 50 cm and 60 cm with a length approximately the length of the printing device 4 corresponds.
  • the length of the printing device 4 is approximately 2.5 m
  • the width of the paper guide 7 is approximately 2.1 m.
  • a temperature of approximately 52° C. is applied during printing via the heating device 11 and a temperature of approximately 50° C. via the additional heating device 12 .
  • the further heating device 12 supports the drying of the printing ink after it has been applied to the upper side of the printing paper 2 by preheating the printing paper 4 on the underside.
  • the printing paper 2 itself is resin-free and ink-receptive layer-free paper on the printing side, on which the printing ink would run without drying and that, due to the high water content of the printing ink, would expand and then wave without drying, which would occur during winding when the paper is discharged 5 would lead to the formation of wrinkles, which ultimately makes further processing impossible.
  • the in 1 illustrated embodiment such that in the area of the printing device, that is within the space 19 in which the printing device 1 is arranged, two at least substantially separate climate zones with different relative room air humidity contents prevail.
  • the paper feed and also the paper removal are each arranged in a room in which a climate zone prevails whose room air humidity is lower than the room air humidity that prevails in the room 19 in which the printing device 4 is arranged. It should be pointed out that it is also fundamentally possible to provide a different climatic zone than in the area of the printing device 4 only in the area of the paper feed 3 or only in the area of the paper feed 5 .
  • the first climatic zone in the area or space of the paper feed 3 and the paper discharge 5 has a relative humidity of less than 32%.
  • Room air humidity contents in the first climatic zone of about 24%, 25%, 26%, 27%, 28%, 29% or 30% are preferred.
  • the temperature in the first climate zone is 18°C. In principle, it can be between 14.degree. C. and 35.degree. C., but values between 16.degree. C. and 25.degree. C. are preferred.
  • the pressure within the first climatic zone is slightly higher than the ambient pressure in space 19, in the present case between 0.05 bar and 0.1 bar. In principle, the pressure in the first climate zone can also be compared to the ambient pressure be more increased or decreased. However, the ambient pressure can also be provided there.
  • the second climate zone is provided in the area or space 19 of the printing device 4 .
  • the second climatic zone does not mean the conditions in the drying room 17, but the room air conditions outside of the drying room 17, which prevail in the room 19 with the exception of the encapsulated area of the first climatic zone.
  • a room air humidity of more than 35% is intended.
  • the humidity in the room is between 40% and 60%, with any value within this interval being possible.
  • the temperature in the closed space 19 in which the second climatic zone is located is about 18° C. in the present case.
  • 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 can also be slightly higher or lower.
  • the paper feed 3 and the paper discharge 5 are each arranged within an at least substantially closed climatic chamber 20, 21, with the first climatic zone prevailing within the climatic chambers 20, 21 in each case.
  • 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 relative to it, so that the paper feed 3 or the paper discharge 5 are accessible and a roll of printing paper can be fed in or removed.
  • the two climatic chambers 21, 22 each have a slot 24 only in the area in which the printing paper 2 runs out or runs in.
  • the slot 24 can, if required, be at least partially sealed with a seal, for example a brush seal.
  • the paper feed 3 has an unwinding device 25 for a printing paper roll with unprinted printing paper 2
  • the paper removal 5 has a winding device 26 for a printing paper roll with printed printing paper 2.
  • an unprinted roll of printing paper is first inserted into the unrolling device 25 of the paper feed 3 .
  • the printing paper 2 of the unprinted printing paper roll is packed in an airtight manner before it is fed to the unwinding device 25 and is only unpacked for introduction into the paper feed 3 .
  • the printing paper is placed in the first climate zone.
  • the hood 23 is opened, the roll of printing paper is inserted and the hood 23 is closed again.
  • the aforementioned ambient conditions of the first climate zone in the climate chamber 20 are then set immediately.
  • the printing paper 2 is then guided through the printing device 4 and the gap 24 of the climatic chamber 21 to the unrolling device 26 of the paper discharge 5 .
  • the printing paper 2 is then fixed there.
  • the climatic chamber 21 is then closed and the environmental conditions of the second climatic zone are set there.
  • the rolling up via the winding device 26 can then begin.
  • printing via the printing device 4 can then begin.

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Claims (12)

  1. Procédé pour l'impression de papier d'impression (2) comprenant un dispositif d'impression (1), dans lequel le dispositif d'impression (1) présente une alimentation de papier pour le papier d'impression (2) à imprimer, un mécanisme d'impression (4) monté à l'arrière de l'alimentation de papier (3) et une évacuation de papier (5) pour le papier d'impression imprimé (2), montée à l'arrière du mécanisme d'impression (4), dans lequel le papier d'impression non imprimé (2) est acheminé à une alimentation de papier (3) du dispositif d'impression (1), le papier d'impression (2) est acheminé depuis l'alimentation de papier (3) à un mécanisme d'impression (4) du dispositif d'impression (1) pour y être imprimé et est acheminé, à partir du mécanisme d'impression (4) à une évacuation de papier (5) du dispositif d'impression (1), dans lequel, dans l'espace (19) ménagé dans le dispositif d'impression (1), règnent deux zones climatiques comprenant des teneurs différentes en humidité atmosphérique ambiante relative, et dans lequel l'humidité atmosphérique ambiante relative régnant dans la zone climatique, dans laquelle est/sont agencée(s) l'alimentation de papier (3) et/ou l'évacuation de papier (5), est inférieure à celle régnant dans la zone climatique dans laquelle est disposé le mécanisme d'impression (4).
  2. Procédé selon la revendication 1, caractérisé en ce qu'on mesure l'humidité atmosphérique ambiante, la température et/ou la pression régnant dans la zone climatique et on les règle automatiquement à au moins une valeur prédéfinie.
  3. Procédé selon la revendication 1 ou 2, caractérisé en ce que le papier d'impression (2) est emballé dans un conditionnement étanche à l'air avant son acheminement à la segmentation de papier (3), n'est tiré de son emballage que pour son introduction dans l'alimentation de papier (3) et est introduit directement après son déballage dans la zone climatique de l'alimentation de papier (3) ou bien est déballé dans la zone climatique.
  4. 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.
  5. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que le papier d'impression (2), avant, pendant et/ou après l'impression et/ou l'encre d'impression directement après l'application sur le papier d'impression (2) est/sont chauffé(s), en particulier à une température supérieure à 35 °C, de préférence entre 40 °C et 60 °C, et/ou en ce que, pour l'impression, on utilise du papier d'impression (2) non résineux et exempt de couche absorbant l'encre côté impression.
  6. Dispositif d'impression (1) pour l'impression de papier d'impression (2), comprenant une alimentation de papier (3) pour le papier d'impression (2) à imprimer, un mécanisme d'impression (4) monté à l'arrière de l'alimentation de papier (3) et une évacuation de papier (5) pour le papier d'impression imprimé (2), montée à l'arrière du mécanisme d'impression (4), caractérisé en ce que l'alimentation de papier (3) et/ou l'évacuation de papier (5) est/sont disposée(s) à l'intérieur d'une chambre climatique (20, 21), dans lequel, à l'intérieur de la chambre climatique (20, 21), on prévoit une première zone climatique, et en ce qu'on prévoit un dispositif avec lequel l'humidité atmosphérique ambiante relative de la première zone climatique, dans laquelle est/sont agencée(s) l'alimentation de papier et/ou l'évacuation de papier, peut être réglée, si bien que l'humidité atmosphérique ambiante de la première zone climatique peut être inférieure à l'humidité atmosphérique ambiante relative régnant dans la zone climatique dans laquelle est disposé le mécanisme d'impression (4).
  7. Dispositif d'impression selon la revendication 6, caractérisé en ce que l'alimentation de papier (3) et/ou l'évacuation de papier (5) est/sont prévue(s) dans une première zone climatique dont l'humidité atmosphérique ambiante relative est inférieure à 32 %, en particulier se situe entre 24 % et 30 %, et/ou en ce que, dans la première 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, et/ou en ce que, dans la première zone climatique, règne une pression correspondant à la pression ambiante ± 0,3 bar.
  8. Dispositif d'impression selon la revendication 6 ou 7, caractérisé en ce que le mécanisme d'impression (4) est prévu dans une deuxième zone climatique dont l'humidité atmosphérique ambiante relative est supérieure à 35 %, en particulier se situe entre 40 % et 60 %, et/ou en ce que, dans la deuxième 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, et/ou en ce que, dans la deuxième zone climatique, règne une pression correspondant à la pression ambiante ± 0,3 bar.
  9. Dispositif d'impression selon l'une quelconque des revendications précédentes, caractérisé en ce qu'on peut régler, dans la zone climatique, des teneurs différentes en humidité atmosphérique ambiante, des températures différentes et/ou des pressions différentes.
  10. Dispositif d'impression selon l'une quelconque des revendications précédentes, caractérisé en ce que, pour le réglage de teneurs différentes en humidité atmosphérique ambiante, de températures différentes et/ou de pressions différentes, 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 ambiante, de la température et/ou de la pression.
  11. Dispositif d'impression selon l'une quelconque des revendications précédentes, caractérisé en ce que l'alimentation 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.
  12. Dispositif d'impression 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 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).
EP09003192.3A 2009-01-07 2009-03-05 Dispositif d'impression et procédé d'impression de papier d'impression Active EP2206605B2 (fr)

Priority Applications (5)

Application Number Priority Date Filing Date Title
PL09003192T PL2206605T5 (pl) 2009-01-07 2009-03-05 Urządzenie drukujące i sposób zadrukowywania papieru drukowego
EP09801397A EP2373489B1 (fr) 2009-01-07 2009-12-08 Dispositif d'impression et procédé d'impression de papier d'impression
ES09801397T ES2403117T3 (es) 2009-01-07 2009-12-08 Dispositivo de impresión y procedimiento para la impresión de papel de imprenta
PCT/EP2009/008752 WO2010078904A2 (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 (1)

Application Number Priority Date Filing Date Title
EP09000083 2009-01-07

Publications (4)

Publication Number Publication Date
EP2206605A2 EP2206605A2 (fr) 2010-07-14
EP2206605A3 EP2206605A3 (fr) 2010-08-25
EP2206605B1 EP2206605B1 (fr) 2012-10-24
EP2206605B2 true EP2206605B2 (fr) 2022-01-19

Family

ID=42102874

Family Applications (2)

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 After (1)

Application Number Title Priority Date Filing Date
EP09801397A Active EP2373489B1 (fr) 2009-01-07 2009-12-08 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)

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

Family Cites Families (5)

* Cited by examiner, † Cited by third party
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

Also Published As

Publication number Publication date
PL2373489T3 (pl) 2013-06-28
WO2010078904A2 (fr) 2010-07-15
ES2394985T5 (es) 2022-04-21
EP2373489B1 (fr) 2013-03-06
EP2206605A3 (fr) 2010-08-25
PL2206605T3 (pl) 2013-03-29
EP2373489A2 (fr) 2011-10-12
PL2206605T5 (pl) 2022-04-04
ES2403117T3 (es) 2013-05-14
WO2010078904A3 (fr) 2010-10-14
EP2206605B1 (fr) 2012-10-24
EP2206605A2 (fr) 2010-07-14
ES2394985T3 (es) 2013-02-07

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