IP Library Granted Patent US 9,597,878
Granted Patent B2
US 9,597,878 · App. 14/887,807 · Granted Mar 21, 2017

Inkjet recording apparatus

Inventor: So Takahashi (Osaka, JP)
Assignee: KYOCERA Document Solutions Inc.
B41J2/16538B41J2/16544
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Quick Facts
Patent No.
US 9,597,878
App. No.
14/887,807
Granted
Mar 21, 2017
Kind
B2
Abstract

An inkjet recording apparatus includes a recording head that has an ink discharge surface and that discharges ink onto a recording medium, a wiper blade that cleans the ink discharge surface of the recording head, and a controller. The controller causes the wiper blade to wipe ink off the ink discharge surface by causing the wiper blade to be pushed against the ink discharge surface and move in a predetermined movement direction. The wiper blade includes a protrusion protruding in the predetermined movement direction. The protrusion has an ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade wipes ink off the ink discharge surface.

Claims (85)

1. An inkjet recording apparatus comprising:

a recording head having an ink discharge surface and configured to discharge ink onto a recording medium;

a wiper blade configured to clean the ink discharge surface of the recording head; and

a controller configured to cause the wiper blade to wipe ink off the ink discharge surface by causing the wiper blade to be pushed against the ink discharge surface and move in a predetermined movement direction, wherein

the wiper blade includes a protrusion protruding in the predetermined movement direction,

the protrusion has an ink retaining surface that faces the ink discharge surface while the wiper blade wipes ink off the ink discharge surface,

the ink retaining surface is

located apart from the ink discharge surface at a first predetermined distance during the wiper blade wiping ink on the ink discharge surface, and

in contact with a front surface of the wiper blade at a second predetermined distance from an upper end of the wiper blade while the wiper blade is in contact with the ink discharge surface so as not to be bent,

the front surface of the wiper blade moves the ink on the ink discharge surface while the wiper blade moves in the movement direction, and

the protrusion has a groove extending in a direction perpendicular to a short direction of the ink discharge surface.

2. The inkjet recording apparatus according to claim 1 , wherein

ink on the ink discharge surface includes a first ink that is thickened and a second ink that is not thickened, and

the controller causes the wiper blade to wipe ink off the ink discharge surface after controlling the recording head to release the second ink onto the ink discharge surface.

3. The inkjet recording apparatus according to claim 1 , wherein

during the time when the wiper blade wipes ink off the ink discharge surface, the ink retaining surface is substantially parallel to the ink discharge surface.

4. The inkjet recording apparatus according to claim 1 , wherein

the first predetermined distance is a distance in which ink on a region of the ink discharge surface comes into contact with the ink retaining surface, the region of the ink discharge surface facing the ink retaining surface when the wiper blade wipes ink off the ink discharge surface.

5. The inkjet recording apparatus according to claim 1 , wherein

the wiper blade is elastic, and

the wiper blade is bent while being pushed against the ink discharge surface.

6. The inkjet recording apparatus according to claim 1 , wherein

the predetermined movement direction includes a first movement direction and a second movement direction opposite to the first movement direction,

the wiper blade includes:

a first carrying surface that is perpendicular to the predetermined movement direction and that carries ink on the ink discharge surface when the wiper blade moves in the first movement direction;

a second carrying surface that is perpendicular to the predetermined movement direction and that carries ink on the ink discharge surface when the wiper blade moves in the second movement direction,

a first protrusion disposed on the first carrying surface and protruding in the first movement direction; and

a second protrusion disposed on the second carrying surface and protruding in the second movement direction,

the first protrusion has a first ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade moves in the first movement direction to wipe ink off the ink discharge surface while, and

the second protrusion has a second ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade moves in the second movement direction to wipe ink off the ink discharge surface.

7. An inkjet recording apparatus comprising:

a recording head having an ink discharge surface and configured to discharge ink onto a recording medium;

a wiper blade configured to clean the ink discharge surface of the recording head; and

a controller configured to cause the wiper blade to wipe ink off the ink discharge surface by causing the wiper blade to be pushed against the ink discharge surface and move in a predetermined movement direction, wherein

the wiper blade has a protrusion protruding in the predetermined movement direction and a carrying surface that carries ink on the ink discharge surface,

the protrusion is disposed on the carrying surface, and

the protrusion has an ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade wipes ink off the ink discharge surface and an ink releasing surface that is inclined at a predetermined angle relative to the carrying surface and that is connected to the ink retaining surface and the carrying surface.

8. The inkjet recording apparatus according to claim 7 , wherein

ink on the ink discharge surface includes a first ink that is thickened and a second ink that is not thickened, and

the controller causes the wiper blade to wipe ink off the ink discharge surface after controlling the recording head to release the second ink onto the ink discharge surface.

9. The inkjet recording apparatus according to claim 7 , wherein

during the time when the wiper blade wipes ink off the ink discharge surface, the ink retaining surface is substantially parallel to the ink discharge surface.

10. The inkjet recording apparatus according to claim 7 , wherein

the predetermined distance is a distance in which ink on a region of the ink discharge surface comes into contact with the ink retaining surface, the region of the ink discharge surface facing the ink retaining surface when the wiper blade wipes ink off the ink discharge surface.

11. The inkjet recording apparatus according to claim 7 , wherein

the wiper blade is elastic, and

the wiper blade is bent while being pushed against the ink discharge surface.

12. The inkjet recording apparatus according to claim 7 , wherein

the predetermined movement direction includes a first movement direction and a second movement direction opposite to the first movement direction,

the wiper blade includes:

a first carrying surface that is perpendicular to the predetermined movement direction and that carries ink on the ink discharge surface when the wiper blade moves in the first movement direction;

a second carrying surface that is perpendicular to the predetermined movement direction and that carries ink on the ink discharge surface when the wiper blade moves in the second movement direction,

a first protrusion disposed on the first carrying surface and protruding in the first movement direction; and

a second protrusion disposed on the second carrying surface and protruding in the second movement direction,

the first protrusion has a first ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade moves in the first movement direction to wipe ink off the ink discharge surface while, and

the second protrusion has a second ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade moves in the second movement direction to wipe ink off the ink discharge surface.

13. The inkjet recording apparatus according to claim 7 , wherein

the protrusion has a groove extending in a direction perpendicular to a short direction of the ink discharge surface.

14. An inkjet recording apparatus comprising:

a recording head having an ink discharge surface and configured to discharge ink onto a recording medium;

a wiper blade configured to clean the ink discharge surface of the recording head; and

a controller configured to cause the wiper blade to wipe ink off the ink discharge surface by causing the wiper blade to be pushed against the ink discharge surface and move in a predetermined movement direction, wherein

the wiper blade includes a protrusion protruding in the predetermined movement direction,

the protrusion has an ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade wipes ink off the ink discharge surface,

the controller causes the wiper blade to be pushed against the ink discharge surface so that the wiper blade is bent, and

in a state in which the wiper blade is in contact with the ink discharge surface so as not to be bent, the ink retaining surface is positioned such that ink on the ink retaining surface separates from ink on the ink discharge surface.

15. The inkjet recording apparatus according to claim 14 , wherein

ink on the ink discharge surface includes a first ink that is thickened and a second ink that is not thickened, and

the controller causes the wiper blade to wipe ink off the ink discharge surface after controlling the recording head to release the second ink onto the ink discharge surface.

16. The inkjet recording apparatus according to claim 14 , wherein

during the time when the wiper blade wipes ink off the ink discharge surface, the ink retaining surface is substantially parallel to the ink discharge surface.

17. The inkjet recording apparatus according to claim 14 , wherein

the predetermined distance is a distance in which ink on a region of the ink discharge surface comes into contact with the ink retaining surface, the region of the ink discharge surface facing the ink retaining surface when the wiper blade wipes ink off the ink discharge surface.

18. The inkjet recording apparatus according to claim 14 , wherein

the wiper blade is elastic, and

the wiper blade is bent while being pushed against the ink discharge surface.

19. The inkjet recording apparatus according to claim 14 , wherein

the predetermined movement direction includes a first movement direction and a second movement direction opposite to the first movement direction,

the wiper blade includes:

a first carrying surface that is perpendicular to the predetermined movement direction and that carries ink on the ink discharge surface when the wiper blade moves in the first movement direction;

a second carrying surface that is perpendicular to the predetermined movement direction and that carries ink on the ink discharge surface when the wiper blade moves in the second movement direction,

a first protrusion disposed on the first carrying surface and protruding in the first movement direction; and

a second protrusion disposed on the second carrying surface and protruding in the second movement direction,

the first protrusion has a first ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade moves in the first movement direction to wipe ink off the ink discharge surface while, and

the second protrusion has a second ink retaining surface that faces the ink discharge surface at a predetermined distance while the wiper blade moves in the second movement direction to wipe ink off the ink discharge surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2015
From: TAKAHASHI, SO
To: KYOCERA DOCUMENT SOLUTIONS INC.
Reel/Frame 036833/0636 →
Priority Claims (2)
JP 2014-218407 · Oct 27, 2014 · national
JP 2015-049366 · Mar 12, 2015 · national
Continuity (1)
Related Publication 20160114586A1 · Apr 28, 2016