INKJET PRINTER AND INKJET PRINTING METHOD USING THE SAME
20230102600 · 2023-03-30
Inventors
Cpc classification
B41J2002/14475
PERFORMING OPERATIONS; TRANSPORTING
B41J11/002
PERFORMING OPERATIONS; TRANSPORTING
B41J15/04
PERFORMING OPERATIONS; TRANSPORTING
B41M5/0011
PERFORMING OPERATIONS; TRANSPORTING
B41J11/0022
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41J11/00
PERFORMING OPERATIONS; TRANSPORTING
B41J15/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An inkjet printer for preventing ink flow, color blurring and color mixing during multicolor printing when image formation is performed with aqueous ink on a web-shaped printing base material, and an inkjet printing method using the inkjet printer. The inkjet printer is configured to perform image formation by discharging aqueous ink to a web-shaped printing base material, and includes: a conveyance mechanism configured to continuously convey the web-shaped printing base material; a single-pass system inkjet head configured to discharge the aqueous ink to a surface of the web-shaped printing base material conveyed by the conveyance mechanism; and a surface pre-heating unit arranged on an upstream side of conveyance from the single-pass system inkjet head and configured to heat at least the surface of the web-shaped printing base material. Image formation is performed on the web-shaped printing base material heated by the surface pre-heating unit.
Claims
1. An inkjet printer for aqueous ink which is configured to perform image formation by discharging aqueous ink to a web-shaped printing base material, the inkjet printer comprising: a conveyance mechanism configured to continuously convey the web-shaped printing base material, the conveyance mechanism comprising a first roller and a second roller, wherein a portion of the web-shaped printing base material extends between the first roller and the second roller, the portion of the web-shaped printing base material extending linearly between the first roller and the second roller; a surface post heating unit; a single-pass system inkjet head configured to discharge, by a single-pass system, the aqueous ink to a surface of the portion of the web-shaped printing base material conveyed by the conveyance mechanism, the surface post heating unit being located adjacent to the single-pass system inkjet head on a downstream side of the single-pass system inkjet head; and a surface pre-heating unit arranged on an upstream side of conveyance from the single-pass system inkjet head and the surface pre-heating unit being configured to heat at least the surface of the portion of the web-shaped printing base material, wherein image formation through use of the single-pass system inkjet head is performed on the web-shaped printing base material heated by the surface pre-heating unit, wherein heating by the surface pre-heating unit is performed via a hot air blowing means for applying hot air to the surface of the portion of the web-shaped printing base material, wherein the hot air blowing means comprises: a nozzle group main body having a plurality of slit-shaped hot air blowing nozzles arranged to form gaps therebetween, each of the plurality of slit-shaped hot air blowing nozzles having a slit-shaped hot air outlet port extending in a width direction of the web-shaped printing base material, at least one of the slit-shaped hot air blowing nozzles being configured to deliver the hot air in a first direction to the surface of the portion of the web-shaped printing base material; and a suction mechanism configured to suck an atmosphere of the gaps formed in the nozzle group main body such that fluid in at least one of the gaps moves in a second direction, the second direction being opposite the first direction.
2. An inkjet printer according to claim 1, further comprising a back surface heating unit configured to heat a back surface of the portion of the web-shaped printing base material, the back surface heating unit being located on one side of the portion of the web-shaped printing base material, the surface pre-heating unit being located on another side of the portion of the web-shaped printing base material, the one side being opposite the another side, the back surface heating unit and the surface pre-heating unit being located between the first roller and the second roller.
3. An inkjet printer according to claim 2, wherein heating by the back surface heating unit is performed via one of a hot air blowing means and a hot plate.
4. An inkjet printer according to claim 1, wherein the web-shaped printing base material is a transparent film.
5. An inkjet printer in according to claim 2, wherein the surface pre-heating unit and the back surface heating unit are perpendicular to the portion of the web-shaped printing base material.
6. An inkjet printer according to claim 3, wherein each of the gaps is defined by at least a portion of one of the nozzles and at least a portion of another one of the nozzles, wherein the suction mechanism is configured to suck the atmosphere of the gaps such that the fluid in each of the gaps moves in the second direction.
7. An inkjet printing method, comprising: providing an inkjet printer comprising: a conveyance mechanism configured to continuously convey a web-shaped printing base material, the conveyance mechanism comprising a first roller and a second roller, wherein a portion of the web-shaped printing base material extends between the first roller and the second roller, the portion of the web-shaped printing base material extending linearly between the first roller and the second roller; a surface post heating unit; a single-pass system inkjet head configured to discharge, by a single-pass system, the aqueous ink to a surface of the portion of the web-shaped printing base material conveyed by the conveyance mechanism, the surface post heating unit being located adjacent to the single-pass system inkjet head on a downstream side of the single-pass system inkjet head; and a surface pre-heating unit arranged on an upstream side of conveyance from the single-pass system inkjet head and the surface pre-heating unit is configured to heat at least the surface of the web-shaped printing base material, wherein heating by the surface pre-heating unit is performed via a hot air blowing means for applying hot air to the surface of the portion of the web-shaped printing base material, wherein the hot air blowing means comprises: a nozzle group main body having a plurality of slit-shaped hot air blowing nozzles arranged to form gaps therebetween, each of the plurality of slit-shaped hot air blowing nozzles having a slit-shaped hot air outlet port extending in a width direction of the web-shaped printing base material, at least one of the nozzles being configured to deliver the hot air in a first direction to the surface of the portion of the web-shaped printing base material; and a suction mechanism configured to suck an atmosphere of the gaps formed in the nozzle group main body such that fluid in one or more of the gaps moves in a second direction, the second direction being opposite the first direction; and performing, via the inkjet printer, single-pass system image formation via the single-pass system inkjet head with aqueous ink on the web-shaped printing base material heated by the surface pre-heating unit of the inkjet printer.
8. An inkjet printing method according to claim 7, further comprising: providing a back surface heating unit configured to heat a back surface of the portion of the web-shaped printing base material, the back surface heating unit being located on one side of the portion of the web-shaped printing base material, the surface pre-heating unit being located on another side of the portion of the web-shaped printing base material, the one side being opposite the another side, the back surface heating unit and the surface pre-heating unit being located between the first roller and the second roller.
9. An inkjet printing method according to claim 8, wherein heating by the back surface heating unit is performed via one of a hot air blowing means and a hot plate.
10. An inkjet printing method according to claim 7, wherein the web-shaped printing base material is a transparent film.
11. An inkjet printing method according to claim 8, wherein the surface pre-heating unit and the back surface heating unit are perpendicular to the portion of the web-shaped printing base material.
12. An inkjet printing method according to claim 7, wherein each of the gaps is defined by at least a portion of one of the nozzles and at least a portion of another one of the nozzles.
13. An inkjet printing method according to claim 7, wherein heating by the surface post heating unit is performed via another hot air blowing means for applying the hot air to the surface of another portion of the web-shaped printing base material, wherein the another hot air blowing means comprises: another nozzle group main body having a plurality of another slit-shaped hot air blowing nozzles arranged to form another gaps therebetween, each of the plurality of another slit-shaped hot air blowing nozzles having another slit-shaped hot air outlet port extending in the width direction of the web-shaped printing base material, at least one of the plurality of another slit-shaped hot air blowing nozzles being configured to deliver hot air in another direction to the surface of the another portion of the web-shaped printing base material; and another suction mechanism configured to suck the atmosphere of at least one of the another gaps formed in the another nozzle group main body in a direction opposite the another direction.
14. An inkjet printer for aqueous ink which is configured to perform image formation by discharging aqueous ink to a web-shaped printing base material, the inkjet printer comprising: a conveyance mechanism configured to continuously convey the web-shaped printing base material, the conveyance mechanism comprising a first roller and a second roller, wherein a portion of the web-shaped printing base material extends between the first roller and the second roller in a conveying web-shaped printing base material; a single-pass system inkjet head configured to discharge, by a single-pass system, the aqueous ink in a direction perpendicular to the conveying web-shaped printing base material to a surface of the portion of the web-shaped printing base material conveyed by the conveyance mechanism; a surface pre-heating unit arranged on an upstream side of conveyance from the single-pass system inkjet head and the surface pre-heating unit being configured to heat at least the surface of the portion of the web-shaped printing base material, wherein image formation through use of the single-pass system inkjet head is performed on the web-shaped printing base material heated by the surface pre-heating unit, wherein heating by the surface pre-heating unit is performed via a hot air blowing means for applying hot air to the surface of the portion of the web-shaped printing base material, wherein the hot air blowing means comprises: a nozzle group main body having a plurality of slit-shaped hot air blowing nozzles arranged to form gaps therebetween, each of the plurality of slit-shaped hot air blowing nozzles having a slit-shaped hot air outlet port extending in a width direction of the web-shaped printing base material, at least one of the plurality of slit-shaped hot air blowing nozzles being configured to deliver hot air in a first direction to the surface of the portion of the web-shaped printing base material; and a suction mechanism configured to suck an atmosphere of at least one of the gaps formed in the nozzle group main body in a second direction, the second direction being opposite the first direction; and a second heating unit arranged adjacent to the single-pass system inkjet head.
15. An inkjet printer according to claim 14, wherein the portion of the web-shaped printing base material extends linearly between the first roller and the second roller.
16. An inkjet printer according to claim 15, further comprising a back surface heating unit configured to heat a back surface of the portion of the web-shaped printing base material, the back surface heating unit being located on one side of the portion of the web-shaped printing base material, the surface pre-heating unit being located on another side of the portion of the web-shaped printing base material, the one side being opposite the another side, the back surface heating unit and the surface pre-heating unit being located between the first roller and the second roller.
17. An inkjet printer according to claim 16, wherein heating by the back surface heating unit is performed via one of a hot air blowing means and a hot plate.
18. An inkjet printer according to claim 16, wherein the surface pre-heating unit and the back surface heating unit are perpendicular to the portion of the web-shaped printing base material.
19. An inkjet printer according to claim 14, wherein each of the gaps is defined by at least a portion of one of the nozzles and at least a portion of another one of the nozzles.
20. An inkjet printing according to claim 14, wherein heating by the second heating unit is performed via another hot air blowing means for applying hot air to the surface of another portion of the web-shaped printing base material, wherein the another hot air blowing means comprises: another nozzle group main body having a plurality of another slit-shaped hot air blowing nozzles arranged to form another gaps therebetween, each of the plurality of another slit-shaped hot air blowing nozzles having another slit-shaped hot air outlet port extending in the width direction of the web-shaped printing base material, at least one of the another slit-shaped hot air blowing nozzles being configured to deliver the hot air in another direction to the surface of the another portion of the web-shaped printing base material; and another suction mechanism configured to suck the atmosphere of at least another one of the another gaps formed in the another nozzle group main body in a direction opposite the another direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In the drawings:
[0019]
[0020]
[0021]
[0022]
[0023]
DESCRIPTION OF PREFERRED EMBODIMENTS
[0024] Referring to the drawings,
[0025] In
[0026] The surface pre-heating units 18b to 18e also act as surface post-heating units and also serve as the surface post-heating units 18b to 18e.
[0027] As the inkjet heads 16a to 16e, various known single-pass system inkjet discharge devices can be used.
[0028] As the conveyance mechanism 14, any known mechanism can also be used as long as the mechanism can convey the web-shaped printing base material 12. As illustrated in
[0029] Further, the original roller 22 around which the web-shaped printing base material 12 is wound is accommodated in a heating box 36, and is heated in advance (pre-heated) to a temperature of from 60° C. to 70° C. As a method of heating in the heating box 36, heating may be performed with hot air or by various known heaters. In the illustrated example, there is illustrated a configuration in which the inside of the heating box 36 is heated with hot air.
[0030] At least the surface of the web-shaped printing base material 12 heated in advance as described above is heated by the surface pre-heating unit 18a arranged on the upstream side of conveyance from the inkjet heads 16a to 16e. As the surface pre-heating unit 18a, an example is given of hot air blowing means. In the hot air blowing means, hot air at a temperature of from about 40° C. to about 80° C., for example, a temperature of 70° C. is applied to the surface of the web-shaped printing base material 12. A time period for applying hot air is from about 2 seconds to about 3 seconds in the case of a printing speed of 15 m/min, but is appropriately changed also depending on the temperature of the hot air.
[0031] An embodiment of the hot air blowing means to be used as the surface pre-heating units 18a to 18e is illustrated in
[0032] Further, in the example illustrated in
[0033] Further, in the embodiment illustrated in
[0034] Further, as the back surface heating unit 38, the hot air blowing means similar to the surface pre-heating unit 18a can also be used. Further, when the hot air blowing means is used as the back surface heating unit 38, it is suitable that, for example, hot air at a temperature of from 40° C. to 80° C. be applied to the back surface of the web-shaped printing base material 12.
[0035] In
[0036] Next, still another embodiment of an inkjet printer according to the present invention is illustrated in
[0037] In
[0038] With the inkjet printers 10A and 10B constructed as described above, when ink discharge by the inkjet heads 16a to 16e is performed with aqueous ink to the web-shaped printing base material 12 heated by the surface pre-heating unit 18a of the inkjet printers 10A and 10B, printing can be suitably performed with respect to a transparent PET film as the web-shaped printing base material without ink flow and color blurring, color mixing during multicolor printing, and the like even at a printing speed of 15 m/min. Further, as illustrated in the inkjet printers 10A and 10B, when the surface post-heating units and the back surface heating unit are combined, ink flow and ink blurring, color mixing during multicolor printing, and the like are further eliminated, and printing can be suitably performed.
[0039] While specific embodiments of the invention have been shown and described in detail to illustrate the application of the principles of the invention, it will be understood that the invention may be embodied otherwise without departing from such principles.