IP Library › Granted Patent US 8,529,054
Granted Patent B2
US 8,529,054 · App. 13/309,565 · Granted Sep 10, 2013

Ink, inkjet printer, and method for printing

Inventor: Masaru Ohnishi (Tomi, JP)
Assignee: Mimaki Engineering Co., Ltd.
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Quick Facts
Patent No.
US 8,529,054
App. No.
13/309,565
Granted
Sep 10, 2013
Kind
B2
Abstract

An ink includes a volatile organic solvent and a UV curable ink. The ink has a viscosity greater than or equal to 3 mPa·sec and less than or equal to 18 mPa·sec (at 25° C.). The UV curable ink has a viscosity of greater than or equal to 20 mPa·sec (at 25° C.). The UV curable ink comprises a pigment, an ultraviolet curable resin curable by an ultraviolet light, and a photopolymerization initiator.

Claims (39)

1. An inkjet printer comprising:

a supporting body to support a printing medium;

an inkjet head to discharge an ink from a plurality of discharge ports to a surface of the printing medium to deposit ink droplets on the surface of the printing medium, the ink comprising:

a viscosity greater than or equal to 3 mPa·sec and less than or equal to 18 mPa·sec (at 25° C.);

a volatile organic solvent; and

a UV curable ink having a viscosity of greater than or equal to 20 mPa·sec (at 25° C.), the UV curable ink comprising:

a pigment;

an ultraviolet curable resin curable by an ultraviolet light; and

a photopolymerization initiator;

a heater arranged on at least one of a back side and a front side of the printing medium and provided to apply heat to the ink droplets deposited on the surface of the printing medium to remove the volatile organic solvent present in the ink droplets by volatilization; and

a UV irradiation device to irradiate the ink droplets on the surface of the printing medium from which the volatile organic solvent has been removed by volatilization with a UV light to cure the ink droplets, the UV irradiation device being provided to irradiate, after the heater has removed the volatile organic solvent by volatilization from the printing medium to prevent the ink droplets from running on the surface of the printing medium, the ink droplets on the printing medium with the UV light to cure the ink droplets flattened due to removal of the volatile organic solvent by volatilization.

2. The inkjet printer according to claim 1 , wherein a content of the volatile organic solvent is greater than or equal to 30 wt % and less than or equal to 90 wt %.

3. The inkjet printer according to claim 1 , wherein the volatile organic solvent is n-hexane.

4. The inkjet printer according to claim 1 , wherein the ink does not contain water as a solvent.

5. The inkjet printer according to claim 1 , wherein the UV irradiation device is provided on a downstream side with respect to the heater in a direction in which the printing medium is to be conveyed on the supporting body.

6. The inkjet printer according to claim 1 , wherein the heater is arranged below the UV irradiation device.

7. The inkjet printer according to claim 1 ,

wherein the UV irradiation device is provided on a downstream side with respect to the heater in a direction in which the printing medium is to be conveyed on the supporting body, and

wherein the heater is arranged on the back side opposite to the inkjet head with respect to the printing medium and is arranged below the UV irradiation device and the inkjet head.

8. The inkjet printer according to claim 7 , wherein the heater is arranged under the inkjet head.

9. The inkjet printer according to claim 1 , wherein the heater is arranged on the back side opposite to the inkjet head with respect to the printing medium and is arranged below the UV irradiation device and the inkjet head.

10. The inkjet printer according to claim 9 , wherein the heater is arranged under the inkjet head.

11. A method for printing an image comprising an array of a plurality of ink droplets on a surface of a printing medium, the method comprising:

discharging an ink from a plurality of discharge ports of an inkjet head to deposit the ink droplets on the surface of the printing medium, the ink comprising:

a viscosity greater than or equal to 3 mPa·sec and less than or equal to 18 mPa·sec (at 25° C.);

a volatile organic solvent; and

a UV curable ink having a viscosity of greater than or equal to 20 mPa·sec (at 25° C.), the UV curable ink comprising:

a pigment;

an ultraviolet curable resin curable by an ultraviolet light; and

a photopolymerization initiator;

applying heat to the ink droplets deposited on the surface of the printing medium with a heater arranged on at least one of a back side and a front side of the printing medium to remove the volatile organic solvent present in the ink by volatilization; and

irradiating, after the volatile organic solvent has been removed by volatilization with the heater from the printing medium to prevent the ink droplets from running on the surface of the printing medium, the ink droplets with an ultraviolet light using a UV irradiation device to cure and fix the ink droplets flattened due to removal of the volatile organic solvent by volatilization on the surface of the printing medium.

12. The method according to claim 11 , wherein a content of the volatile organic solvent is greater than or equal to 30 wt % and less than or equal to 90 wt %.

13. The method according to claim 11 , wherein the volatile organic solvent is n-hexane.

14. The method according to claim 11 , wherein the ink does not contain water as a solvent.

15. The method according to claim 11 , wherein the applying of heat includes applying heat to the ink droplets deposited on the surface of the printing medium with the heater arranged below the UV irradiation device to remove the volatile organic solvent present in the ink by volatilization.

16. The method according to claim 15 , wherein the heater is arranged under the inkjet head.

17. The method according to claim 11 , wherein the applying of heat includes applying heat, from the back side opposite to the inkjet head with respect to the printing medium, to the ink droplets deposited on the surface of the printing medium with the heater arranged below the UV irradiation device and the inkjet head to remove the volatile organic solvent present in the ink by volatilization.

18. The method according to claim 17 , wherein the heater is arranged under the inkjet head.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2011
From: OHNISHI, MASARU
To: MIMAKI ENGINEERING CO., LTD.
Reel/Frame 027314/0710 →
Priority Claims (1)
JP 2009-135558 · Jun 4, 2009 · national
Continuity (2)
Continuation PCTJP2010002863 · Apr 21, 2010
Related Publication 20120075394A1 · Mar 29, 2012