EP2716464B1 - Procédé d'impression sur une surface brillante par une imprimante à jet d'encre UV - Google Patents
Procédé d'impression sur une surface brillante par une imprimante à jet d'encre UV Download PDFInfo
- Publication number
- EP2716464B1 EP2716464B1 EP20120186925 EP12186925A EP2716464B1 EP 2716464 B1 EP2716464 B1 EP 2716464B1 EP 20120186925 EP20120186925 EP 20120186925 EP 12186925 A EP12186925 A EP 12186925A EP 2716464 B1 EP2716464 B1 EP 2716464B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- printing
- printing operation
- inkjet module
- inkjet
- workpiece
- 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
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41M—PRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
- B41M5/00—Duplicating or marking methods; Sheet materials for use therein
- B41M5/0041—Digital printing on surfaces other than ordinary paper
- B41M5/0047—Digital printing on surfaces other than ordinary paper by ink-jet printing
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41M—PRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
- B41M5/00—Duplicating or marking methods; Sheet materials for use therein
- B41M5/0041—Digital printing on surfaces other than ordinary paper
- B41M5/0064—Digital printing on surfaces other than ordinary paper on plastics, horn, rubber, or other organic polymers
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41M—PRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
- B41M7/00—After-treatment of prints, e.g. heating, irradiating, setting of the ink, protection of the printed stock
- B41M7/0081—After-treatment of prints, e.g. heating, irradiating, setting of the ink, protection of the printed stock using electromagnetic radiation or waves, e.g. ultraviolet radiation, electron beams
Definitions
- the present invention relates to a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density, and more particularly to a method in which a printing operation is performed on a reflective film of a workpiece for at least three times, and the reflective film of the workpiece is enabled to retain high shininess, high transparency and high color density in a manner of delaying ink curing after completing the printing.
- a UV inkjet printer can print on multiple workpieces with different materials or thickness, besides providing a fast printing speed and achieving stable and consistent printing quality, the reliable performance of the UV inkjet printer can also save the time of the operation of manufacturing a color-separation screen, for a user to fast complete the printing, so that the UV inkjet printer brings about multiple economical and practical printing solutions and has a competitive advantage.
- an inkjet module capable of being controlled to move back and forth is disposed on a sliding platform of a table, a plurality of ink cartridges is disposed above the inkjet module, and a plurality of inkjet heads corresponding to the ink cartridges is disposed below the inkjet module, in which the ink is jetted onto a workpiece to be printed through a nozzle at the bottom of an inkjet head, and then light of a UV lamp disposed at a side of the inkjet module is projected onto the ink jetted on the workpiece, so that the ink is fast cured and solidified.
- each area to be printed of the workpiece is printed in a unidirectional manner once, or in a bidirectional manner back and forth, so as to shorten the printing time.
- a cutter cuts a required pattern from a colored transparent film, and then the cut colored transparent film is stuck onto the reflective film of the workpiece, so as to form the required pattern on the reflective film of the workpiece.
- this method has complicated steps, and relatively causes problems of high cost and low yield.
- US-A1-2006/0155005 discloses a method for printing on a surface (P) by a UV inkjet printer, wherein an inkjet module (2) of the UV inkjet printer (1) moves back and forth to perform a printing operation, and a UV lamp (4) is separately disposed at each of two sides of the inkjet module (2).
- the ink is cured by turning on a UV lamp.
- JP-A-2010 042 627 is essentially similar.
- a main objective of the present invention is to provide a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density.
- a printing operation is performed on each printing area of a reflective film of a workpiece for at least three times, and a UV lamp at one side of an inkjet module is turned on at the same time when a final printing operation is performed on each printing area, so as to cure the ink jetted from the inkjet module, so that the reflective film of the workpiece still has high shininess, high transparency and high color density after the completion of the printing, thereby dramatically improving printing quality on the workpiece with the reflective film, reducing the cost and improving the working efficiency.
- Another objective of the present invention is to provide a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density.
- a printing operation is performed on each printing area of a reflective film of a workpiece for at least three times, UV lamps are turned off first when the printing operation on a first printing area is completed, and a UV lamp at one side of an inkjet module is turned on at the same time when a first printing operation is performed on every next printing area, so as to cure the ink jetted from the inkjet module, so that the reflective film of the workpiece still has high shininess, high transparency and high color density after the completion of the printing, thereby dramatically improving printing quality on the workpiece with the reflective film, reducing the cost and improving the working efficiency.
- a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density includes the following steps:
- step (b) a moving direction of a final printing operation on each printing area is contrary to a moving direction of a first printing operation on a next printing area, and the UV lamp turned on is a UV lamp disposed at one side of the inkjet module back on to the printing direction.
- step (b) when the printing operation is performed on each printing area for three times, the first printing operation is performed at the same printing speed with that of the second printing operation, while the final printing operation is performed at a printing speed lower than that of the first printing operation.
- step (b) when the printing operation is performed on each printing area for three times, the first printing operation is performed at the same printing speed with that of the final printing operation, while the second printing operation is performed at a printing speed lower than that of the first printing operation.
- step (c) the UV lamps at two sides of the inkjet module are alternatively turned on, so that in a final printing operation on each printing area and a final printing operation on a next printing area, the UV lamps at different sides are used to cure the ink.
- the inkjet module is disposed with a plurality of cartridges for the ink of each color to be stored in two of the cartridges, and the two cartridges are arranged symmetrically about a center line of the inkjet module.
- a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density includes the following steps:
- a moving direction of a final printing operation on each printing area is contrary to a moving direction of a first printing operation on a next printing area, and the UV lamp turned on is a UV lamp disposed at one side of the inkjet module facing the printing direction.
- step (c') after the final printing operation is completed on a final printing area, the inkjet module spans the workpiece in a direction contrary to a moving direction of the final printing operation in a state of stopping jetting the ink, and the UV lamp disposed at one side of the inkjet module facing the moving direction is turned on to cure the ink.
- step (b') when the printing operation is performed on each printing area for three times, the first printing operation is performed at the same printing speed with that of the second printing operation, while the final printing operation is performed at a printing speed lower than that of the first printing operation.
- step (b') when the printing operation is performed on each printing area for three times, the first printing operation is performed at the same printing speed with that of the final printing operation, while the second printing operation is performed at a printing speed lower than that of the first printing operation.
- step (c') the UV lamps at two sides of the inkjet module are alternatively turned on, and for adjacent printing areas, UV lamps at different sides of the inkjet module are alternatively used to cure the ink.
- step (c') the UV lamps are turned off first when the printing operation on the first printing area is completed, and then a printing operation is performed on a next printing area.
- a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density includes the following steps:
- FIG. 1 a schematic view of operation architecture of a first embodiment of a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density according to the present invention is shown, in which the inkjet module 2 is disposed with a plurality of cartridges (as shown in FIG. 2 ), and the ink of each color is stored in two of those cartridges 21, and the two cartridges 21 with the same color are arranged symmetrically about a center line 22 of the inkjet module 2.
- the color arrangement order of the cartridges in the inkjet module 2 is K (black), C (cyan), M (magenta), Y (yellow), Y, M, C, K.
- a UV lamp 23 is separately disposed at each of two sides of the inkjet module 2. The method moves the inkjet module 2 back and forth to perform the printing operation by the following steps:
- a surface of the workpiece 1 has a transparent reflective film (not shown) provided for the inkjet module to jet the ink thereon.
- the UV inkjet printer divides the workpiece 1 into a plurality of continuous printing areas (11, 12, 13, and 14), and moves horizontally back and forth to perform the printing operation on each printing area of the reflective film of the workpiece 1 for three times, so that a moving direction of a final printing operation on each printing area performed by the inkjet module is contrary to a moving direction of a first printing operation on a next printing area.
- a UV lamp disposed at one side of the inkjet module back on to the printing direction is turned on, so as to cure the ink jetted from the inkjet module.
- the inkjet module performs the printing operation back and forth from left to right for three times on the printing area 11 with the same image printing information, in which, during the first and the second printing operations, the UV lamp is turned off when the printing is performed sequentially leftwards and rightwards, while during the third printing operation, the printing is performed leftwards, and a UV lamp at a right side of the inkjet module is turned on during the printing, so as to cure the ink jetted onto the printing area 11.
- the UV inkjet printer moves the workpiece 1 forward, so that a printing area 12 of the workpiece 1 is moved to a lower portion of the inkjet module for printing.
- the printing is performed rightwards, and a UV lamp at a left side of the inkjet module is turned on during the printing, so as to cure the ink jetted onto the printing area 12. Therefore, for adjacent printing areas of the workpiece 1, the UV lamps at the left and the right sides of the inkjet module are alternatively turned on, so that in the final printing operations on the adjacent printing areas, the UV lamps at different sides are used to cure the ink.
- the first printing operation on each printing area is performed at the same printing speed a with that of the second printing operation, while the third (final) printing operation is performed at a printing speed b lower than that of the first printing operation.
- the printing speed of the printing operation performed for three times on each printing area may also be set that, the first printing operation is performed at the same printing speed c with that of the third (final) printing operation, while the second printing operation is performed at a printing speed d lower than that of the first printing operation.
- the cartridges 21 storing the same color of ink is arranged symmetrically about the center line 22 of the inkjet module 2, in the case that two different colors of inks (such as colors of yellow and cyan) are set to be jetted on the same position of the workpiece, the yellow and cyan would be sequentially jetted by activating the yellow and cyan cartridges on the left side of the center line when the inkjet module moves in the left to right direction, and the yellow and cyan would also be sequentially jetted by activating the yellow and cyan cartridges on the right side of the center line when the inkjet module moves in the right to left direction. Therefore, the inkjet module could sequentially jet the yellow and cyan inks on the same position of the workpiece in the left/right direction.
- FIG. 3A and 3B a schematic view of operation architecture of a second embodiment of a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density according to the present invention is shown, which is based on the architecture of the first embodiment and includes the following steps:
- a surface of the workpiece 1 has a transparent reflective film (not shown) provided for the inkjet module to jet the ink thereon.
- the UV inkjet printer divides the workpiece 1 into a plurality of continuous printing areas (11, 12, 13, and 14), and performs the printing operation horizontally back and forth on each printing area of the reflective film of the workpiece 1 for three times, so that a moving direction of a final printing operation on each printing area performed by the inkjet module is contrary to a moving direction of a first printing operation on a next printing area.
- the inkjet module of the UV inkjet printer When the inkjet module of the UV inkjet printer performs the printing operation on the printing area 11, the inkjet module first performs the printing operation back and forth from left to right for three times on the printing area 11 with the same image printing information in the state that the UV lamp is turned off. After the printing operations performed for three times on the printing area 11 are completed, the UV inkjet printer moves the workpiece 1 forward, so that a printing area 12 of the workpiece 1 is moved to a lower portion of the inkjet module for printing.
- the inkjet module moves rightwards, and a UV lamp disposed at a right side of the inkjet module is turned on, so as to cure the ink jetted from the inkjet module; afterwards, the inkjet module performs the second and the third printing operations on the printing area 12 sequentially leftwards and rightwards in the state that the UV lamp is turned off.
- the printing operations performed for three times on a next printing area are performed, same as the printing operations on the printing area 12, when the first printing operation is performed on the printing area 12, a UV lamp disposed at a side (a left side) of the inkjet module facing the printing direction is turned on, so as to cure the ink jetted from the inkjet module, and then the second and the third printing operations on the printing area 12 are performed sequentially rightwards and leftwards in the state that the UV lamp is turned off. Therefore, for the printing areas 12, 13 and 14 of the workpiece 1, the UV lamps at the left and the right sides of the inkjet module are alternatively turned on, so that in the first printing operations on the adjacent printing areas, the UV lamps at different sides are used to cure the ink.
- the UV inkjet printer is enabled to stop moving the workpiece 1
- the inkjet module is enabled to move leftwards and spans the workpiece 1 in a direction contrary to a moving direction (rightwards) of the final printing operation in the state of stopping jetting the ink, and a UV lamp at a left side of the inkjet module facing the moving direction is turned on during the spanning, so as to cure the ink.
- the first printing operation on each printing area is performed at the same printing speed a with that of the second printing operation, while the third (final) printing operation is performed at a printing speed b lower than that of the first printing operation.
- the printing speed of the printing operations performed for three times on each printing area may also be set that, the first printing operation is performed at the same printing speed c with that of the third (final) printing operation, while the second printing operation is performed at a printing speed d lower than that of the first printing operation.
- FIG. 4 a schematic view of operation architecture of a third embodiment of a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density according to the present invention is shown, which is based on the architecture of the first embodiment and includes the following steps:
- the inkjet module of the UV inkjet printer When the inkjet module of the UV inkjet printer performs the printing operation on the printing area 11, the inkjet module first performs the printing operation back and forth from left to right for three times on the printing area 11 with the same image printing information in the state that the UV lamp is turned off. After the printing operation performed for three times on the printing area 11 is completed, the UV inkjet printer enables the inkjet module to span the workpiece rightwards in a direction contrary to a moving direction of the final printing operation in a state of stopping jetting the ink, and a UV lamp disposed at one side (a left side) of the inkjet module back on to the moving direction is turned on, so as to cure the ink jetted from the inkjet module.
- the workpiece 1 is moved forward, so that the printing area 12 of the workpiece 1 is moved to a lower portion of the inkjet module for printing, and the above steps are repeated till the printing on all the printing areas is completed. Therefore, for each of the printing areas 11, 12, 13 and 14 of the workpiece 1, the UV lamp at a left side of the inkjet module is used by the inkjet module to cure the ink jetted on the printing area after all the printing operations on each printing area are completed.
- the transparent reflective film on a surface of the workpiece 1 is enabled to still have high shininess, high transparency and high color density after the UV inkjet printer completes the printing, so as to ensure the printing quality.
- the present invention has the following advantages.
- the present invention can definitely achieve the intended purposes, and provides a method for printing on a shiny surface by a UV inkjet printer with transparency and high color density in which the transparent reflective film on the surface of the workpiece is enabled to still retain a surface with high shininess and high transparency after the printing is completed, and a pattern printed thereon is enabled to have high color density, and the present invention has a utilization value in the industry, so the patent application is filed according to the laws.
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- Physics & Mathematics (AREA)
- Health & Medical Sciences (AREA)
- Electromagnetism (AREA)
- General Health & Medical Sciences (AREA)
- Toxicology (AREA)
- Ink Jet (AREA)
- Coating Apparatus (AREA)
Claims (22)
- Procédé d'impression sur une surface brillante par une imprimante à jet d'encre UV avec une transparence et une haute densité de couleurs, étant précisé qu'un module à jet d'encre (2) de l'imprimante à jet d'encre UV décrit un mouvement de va-et-vient pour réaliser une opération d'impression, et qu'une lampe UV (23) est disposée séparément sur chacun des deux côtés du module à jet d'encre (2), le procédé comprenant les étapes qui consistent :(a) suivant une direction d'acheminement d'une pièce, à diviser ladite pièce avec un film réflecteur en plusieurs zones d'impression continues (11-14),(b) à réaliser au moins trois fois une opération d'impression sur chaque zone d'impression du film réflecteur de la pièce ; et(c) à allumer une lampe UV (23) d'un côté du module à jet d'encre (2) quand une opération d'impression finale est réalisée sur chaque zone d'impression, afin de durcir l'encre projetée à partir du module à jet d'encre.
- Procédé d'impression selon la revendication 1, étant précisé que lors de l'étape (b), une direction de déplacement d'une opération d'impression finale sur chaque zone d'impression est opposée à une direction de déplacement d'une première opération d'impression sur une zone d'impression (11-14) suivante.
- Procédé d'impression selon la revendication 2, étant précisé que la lampe UV (23) allumée est une lampe UV disposée d'un côté du module à jet d'encre (2) opposé à une direction d'impression.
- Procédé d'impression selon la revendication 3, étant précisé que lors de l'étape (b), une opération d'impression est réalisée trois fois sur chaque zone d'impression (11-14), et qu'une première opération d'impression est réalisée à la même vitesse d'impression que la deuxième opération d'impression.
- Procédé d'impression selon la revendication 4, étant précisé qu'une opération d'impression finale est réalisée à une vitesse d'impression inférieure à celle de la première opération d'impression.
- Procédé d'impression selon la revendication 3, étant précisé que lors de l'étape (b), une opération d'impression est réalisée trois fois sur chaque zone d'impression (11-14), et qu'une première opération d'impression est réalisée à la même vitesse d'impression que l'opération d'impression finale.
- Procédé d'impression selon la revendication 6, étant précisé qu'une deuxième opération d'impression est réalisée à une vitesse d'impression inférieure à celle de la première opération d'impression.
- Procédé d'impression selon la revendication 1, étant précisé que lors de l'étape (c), les lampes UV (23) sur deux côtés du module à jet d'encre sont allumées en alternance, de sorte que lors d'une opération d'impression finale sur chaque zone d'impression et d'une opération d'impression finale sur une zone d'impression suivante, les lampes UV (23) prévues sur des côtés différents sont utilisées pour durcir l'encre.
- Procédé d'impression selon la revendication 1, étant précisé que le module à jet d'encre (2) est pourvu de plusieurs cartouches pour qu'une encre de chaque couleur soit stockée dans deux des cartouches, et que les deux cartouches sont disposées symétriquement par rapport à un axe médian du module à jet d'encre.
- Procédé d'impression sur une surface brillante par une imprimante à jet d'encre UV avec une transparence et une haute densité de couleurs, étant précisé qu'un module à jet d'encre (2) de l'imprimante à jet d'encre UV décrit un mouvement de va-et-vient pour réaliser une opération d'impression, et qu'une lampe UV (23) est disposée séparément sur chacun des deux côtés du module à jet d'encre (2), le procédé comprenant les étapes qui consistent :(a') suivant une direction d'acheminement d'une pièce, à diviser ladite pièce avec un film réflecteur en plusieurs zones d'impression continues (11-14),(b') à réaliser au moins trois fois une opération d'impression sur chaque zone d'impression du film réflecteur de la pièce ; et(c') à allumer une lampe UV (23) d'un côté du module à jet d'encre (2) quand une opération d'impression finale est réalisée sur chaque zone d'impression, afin de durcir l'encre projetée à partir du module à jet d'encre.
- Procédé d'impression selon la revendication 10, étant précisé que lors de l'étape (b'), une direction de déplacement d'une opération d'impression finale sur chaque zone d'impression est opposée à une direction de déplacement d'une première opération d'impression sur une zone d'impression suivante.
- Procédé d'impression selon la revendication 11, étant précisé que la lampe UV (23) allumée est une lampe UV disposée d'un côté du module à jet d'encre (2) dirigé vers une direction d'impression.
- Procédé selon la revendication 10, étant précisé que lors de l'étape (c'), une fois qu'une opération d'impression finale est terminée sur une zone d'impression finale, le module à jet d'encre (2) est apte à couvrir la pièce dans une direction opposée à une direction de déplacement de l'opération d'impression finale dans un état d'arrêt de projection de l'encre, et qu'une lampe UV (23) disposée sur un côté du module à jet d'encre dirigé vers la direction de déplacement est allumée pour durcir l'encre.
- Procédé d'impression selon la revendication 12, étant précisé que lors de l'étape (b'), une opération d'impression est réalisée trois fois sur chaque zone d'impression, et qu'une première opération d'impression est réalisée à la même vitesse d'impression que la deuxième opération d'impression.
- Procédé d'impression selon la revendication 14, étant précisé qu'une opération d'impression finale est réalisée à une vitesse d'impression inférieure à celle des première et deuxième opérations d'impression.
- Procédé d'impression selon la revendication 12, étant précisé que lors de l'étape (b'), une opération d'impression est réalisée trois fois sur chaque zone d'impression (11-14), et qu'une première opération d'impression est réalisée à la même vitesse d'impression qu'une opération d'impression finale.
- Procédé d'impression selon la revendication 16, étant précisé qu'une deuxième opération d'impression est réalisée à une vitesse d'impression inférieure à celle de la première opération d'impression.
- Procédé d'impression selon la revendication 10, étant précisé que lors de l'étape (c'), les lampes UV (23) sur deux côtés du module à jet d'encre (2) sont allumées en alternance, et que pour des zones d'impression voisines, les lampes UV (23) prévues sur des côtés différents du module à jet d'encre (2) sont utilisées en alternance pour durcir l'encre.
- Procédé selon la revendication 10, étant précisé que lors de l'étape (c'), une opération d'impression sur une première zone d'impression est effectuée tout d'abord en éteignant la lampe UV, et qu'une opération d'impression est ensuite réalisée sur une zone d'impression suivante.
- Procédé selon la revendication 10, étant précisé que le module à jet d'encre (2) est pourvu de plusieurs cartouches pour qu'une encre de chaque couleur soit stockée dans deux des cartouches, et que les deux cartouches sont disposées symétriquement par rapport à un axe médian du module à jet d'encre.
- Procédé d'impression sur une surface brillante par une imprimante à jet d'encre UV avec une transparence et une haute densité de couleurs, étant précisé qu'un module à jet d'encre (2) de l'imprimante à jet d'encre UV décrit un mouvement de va-et-vient pour réaliser une opération d'impression, et qu'une lampe UV (23) est disposée séparément sur chacun des deux côtés du module à jet d'encre (2), le procédé comprenant les étapes qui consistent :(a") suivant une direction d'acheminement d'une pièce, à diviser ladite pièce avec un film réflecteur en plusieurs zones d'impression continues (11-14),(b") à permettre à un module à jet d'encre (2) de réaliser trois fois une opération d'impression sur chaque zone d'impression du film réflecteur de la pièce ; et(c") une fois qu'une opération d'impression finale est terminée sur chaque zone d'impression (11-14), à permettre au module à jet d'encre (2) de couvrir la pièce dans une direction opposée à la direction de déplacement de l'opération d'impression finale dans un état d'arrêt de projection de l'encre, et à allumer une lampe UV (23) disposée sur un côté du module à jet d'encre opposé à la direction de déplacement, de manière à durcir l'encre projetée à partir du module à jet d'encre (2).
- Procédé d'impression selon la revendication 21, étant précisé que le module à jet d'encre (2) est pourvu de plusieurs cartouches pour qu'une encre de chaque couleur soit stockée dans deux des cartouches, et que les deux cartouches sont disposées symétriquement par rapport à un axe médian du module à jet d'encre.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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EP20120186925 EP2716464B1 (fr) | 2012-10-02 | 2012-10-02 | Procédé d'impression sur une surface brillante par une imprimante à jet d'encre UV |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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EP20120186925 EP2716464B1 (fr) | 2012-10-02 | 2012-10-02 | Procédé d'impression sur une surface brillante par une imprimante à jet d'encre UV |
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EP2716464A1 EP2716464A1 (fr) | 2014-04-09 |
EP2716464B1 true EP2716464B1 (fr) | 2014-08-27 |
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CN111098607A (zh) * | 2020-01-09 | 2020-05-05 | 深圳市博微恩科技有限公司 | 一种喷印设备生产工艺及设备 |
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JPWO2006075458A1 (ja) * | 2005-01-11 | 2008-06-12 | コニカミノルタエムジー株式会社 | インクジェット用白インク組成物、それを用いたインクジェット画像形成方法及びインクジェット記録装置 |
JP2010042627A (ja) * | 2008-08-15 | 2010-02-25 | Xingyun Computer Co Ltd | Uvインク固化を遅延させる方法 |
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