IP Library › Granted Patent US 10,029,474
Granted Patent B2
US 10,029,474 · App. 14/715,234 · Granted Jul 24, 2018

Liquid storage unit, liquid discharge apparatus using the same, and method of removing bubbles from liquid storage unit

Inventors: Hitoshi Takada (Yokohama, JP); Yasuo Kotaki (Yokohama, JP); Tetsuya Ohashi (Matsudo, JP); Ryoji Inoue (Kawasaki, JP); Takatoshi Kitagawa (Kawasaki, JP); Hironori Murakami (Tokyo, JP); Takeho Miyashita (Yokohama, JP); Hiroki Hayashi (Kawasaki, JP); Hironori Fukuchi (Kawasaki, JP); Norihiro Ikebe (Kawasaki, JP); Takashi Fukushima (Yokohama, JP)
Assignee: CANON KABUSHIKI KAISHA
B41J2/19B01D19/0073B41J2/17509B41J2/17513B41J2/17556
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Quick Facts
Patent No.
US 10,029,474
App. No.
14/715,234
Granted
Jul 24, 2018
Kind
B2
Abstract

A liquid storage unit including a first liquid storage chamber having a constant volume and being capable of holding liquid supplied from a liquid tank; a second liquid storage chamber communicating with the first liquid storage chamber; a pressure control chamber configured to change a pressure of the pressure control chamber through actuation of a pressure control unit; and an elastic member being configured to tightly partition the second liquid storage chamber and the pressure control chamber from each other and being deformable so as to increase and decrease a volume of the second liquid storage chamber in accordance with the pressure of the pressure control chamber. The elastic member is capable of removing bubbles in the first liquid storage chamber by increasing and decreasing the volume of the second liquid storage chamber through the deformation.

Claims (66)

1. A liquid storage unit, comprising:

a first liquid storage chamber having a constant volume and being capable of holding liquid supplied from a liquid tank;

a second liquid storage chamber communicating with the first liquid storage chamber, the second liquid storage chamber storing the liquid therein;

a pressure control chamber configured to change a pressure of the pressure control chamber through actuation of a pressure control unit;

a liquid flow path member configured to hold a liquid discharge head configured to discharge the liquid, the liquid flow path member comprising a flow path connecting the first liquid storage chamber to the liquid discharge head;

a joint member on which the liquid tank is mounted;

a seal member configured to seal a gap between the liquid flow path member and the joint member; and

an elastic member being configured to tightly partition the second liquid storage chamber and the pressure control chamber from each other and being deformable so as to increase and decrease a volume of the second liquid storage chamber in accordance with the pressure of the pressure control chamber,

wherein the liquid flow path member, the joint member, and the seal member form the first liquid storage chamber, the second liquid storage chamber, and the pressure control chamber,

wherein the elastic member is a part of the seal member,

wherein the elastic member is capable of removing bubbles in the first liquid storage chamber by increasing and decreasing the volume of the second liquid storage chamber through the deformation, and

wherein a wall member of the first liquid storage chamber is thicker than the elastic member, and an area of an inner surface of the first liquid storage chamber is larger than a surface area of the elastic member.

2. A liquid storage unit according to claim 1 , further comprising an elastic-member-storing chamber configured to store the elastic member, wherein the elastic-member-storing chamber is partitioned into the second liquid storage chamber and the pressure control chamber by the elastic member.

3. A liquid storage unit according to claim 1 ,

wherein the seal member comprises:

one first seal portion configured to abut against the joint member and extend continuously so as to surround the first liquid storage chamber, the second liquid storage chamber, and the pressure control chamber; and

two second seal portions configured to abut against the liquid flow path member and respectively extend along a periphery of the first liquid storage chamber and along peripheries of the second liquid storage chamber and the pressure control chamber independently of each other,

wherein the joint member comprises a partition wall configured to partition the first liquid storage chamber and the second liquid storage chamber from each other, and

wherein the partition wall has a cutout connecting the first liquid storage chamber and the second liquid storage chamber to each other.

4. A liquid storage unit according to claim 3 , wherein the seal member comprises a projection in a region that is on the side opposite to a region in which one of the one first seal portion and the two second seal portions is arranged and is a region in which the other of the one first seal portion and the two second seal portions is not arranged.

5. A liquid storage unit according to claim 1 ,

wherein the seal member comprises:

two first seal portions configured to abut against the joint member and respectively extend along a periphery of the first liquid storage chamber and along peripheries of the second liquid storage chamber and the pressure control chamber independently of each other; and

two second seal portions configured to abut against the liquid flow path member and respectively extend along the periphery of the first liquid storage chamber and along the peripheries of the second liquid storage chamber and the pressure control chamber independently of each other,

wherein the joint member comprises a partition wall configured to partition the first liquid storage chamber and the second liquid storage chamber from each other, and

wherein the partition wall has a through-hole connecting the first liquid storage chamber and the second liquid storage chamber to each other.

6. A liquid storage unit according to claim 1 , further comprising a liquid supply tube connecting the first liquid storage chamber to the liquid tank, the liquid supply tube being integrated with the first liquid storage chamber.

7. A liquid storage unit according to claim 1 , further comprising a liquid supply tube connecting the first liquid storage chamber to the liquid tank, the liquid supply tube having an inlet opening that is formed at an end portion on an opposite side of the first liquid storage chamber and reduces sectional area to form a meniscus.

8. A liquid storage unit according to claim 1 , wherein the elastic member comprises:

a flat outer peripheral portion;

a flat inner peripheral portion; and

an intermediate portion connecting the flat outer peripheral portion and the flat inner peripheral portion to each other and being inclined relative to the flat outer peripheral portion and the flat inner peripheral portion.

9. A liquid storage unit according to claim 8 ,

wherein the intermediate portion is inclined relative to the flat outer peripheral portion at an angle of more than 0 degrees and less than 90 degrees, and

wherein the flat outer peripheral portion is thicker than the flat inner peripheral portion.

10. A liquid storage unit according to claim 6 , wherein the elastic member, the second liquid storage chamber, and the pressure control chamber are arranged vertically below the liquid supply tube.

11. A liquid storage unit according to claim 6 , wherein the second liquid storage chamber and the pressure control are positioned below an introduction port where the first liquid storage chamber is connected to the liquid supply tube.

12. A liquid storage unit according to claim 1 , wherein the elastic member comprises:

a flexible sheet configured to tightly partition the second liquid storage chamber and the pressure control chamber from each other; and

a spring being configured to bias the flexible sheet and having one end supported on the flexible sheet and the other end supported on one of the second liquid storage chamber and the pressure control chamber.

13. A liquid storage unit according to claim 1 , further comprising a liquid-holding member arranged in the first liquid storage chamber and configured to form a meniscus between the liquid-holding member and a wall surface of first liquid storage chamber, the liquid-holding member having an opening formed at a position opposing to an introduction port of the first liquid storage chamber for the liquid supplied from the liquid tank.

14. A liquid storage unit according to claim 1 , wherein the first liquid storage chamber has a lower air permeability per unit area than the elastic member.

15. A liquid storage unit according to claim 1 , wherein the liquid tank is removably mountable on the first liquid storage chamber.

16. A liquid discharge apparatus, comprising:

the liquid storage unit according to claim 1 ;

a liquid discharge head; and

the pressure control unit,

wherein the pressure control unit comprises:

a flow path connected to the pressure control chamber;

a pump positioned on the flow path;

a flow path switching portion positioned on the flow path and between the pump and the pressure control chamber; and

an atmosphere release tube branched from the flow path at the flow path switching portion.

17. A method of removing bubbles from a liquid storage unit, the method comprising:

providing a joint member on which a liquid tank is mountable;

allowing the liquid tank to communicate with a first liquid storage chamber having a constant volume and communicating with a second liquid storage chamber, the second liquid storage chamber storing the liquid therein;

providing a liquid flow path member configured to hold a liquid discharge head configured to discharge the liquid, the liquid flow path member comprising a flow path connecting the first liquid storage chamber to the liquid discharge head, wherein a seal member seals a gap between the liquid flow path member and the joint member; and

increasing and decreasing a volume of the second liquid storage chamber to move bubbles present in the first liquid storage chamber to the liquid tank,

wherein the volume of the second liquid storage chamber is increased and decreased by changing a pressure of a pressure control chamber that is tightly partitioned from the second liquid storage chamber by an elastic member to thereby deform the elastic member,

wherein the liquid flow path member, the joint member, and the seal member form the first liquid storage chamber, the second liquid storage chamber, and the pressure control chamber,

wherein the elastic member is a part of the seal member,

wherein the bubbles in the first liquid storage chamber are removed by increasing and decreasing the volume of the second liquid storage chamber through deformation of the elastic member, and

wherein a wall member of the first liquid storage chamber is thicker than the elastic member, and an area of an inner surface of the first liquid storage chamber is larger than a surface area of the elastic member.

18. A liquid storage unit according to claim 1 , wherein the elastic member does not have an opening therethrough.

19. A liquid storage unit according to claim 1 , wherein the elastic member satisfies both air-tightness and water-tightness.

20. A method according to claim 17 , wherein the elastic member does not have an opening therethrough.

21. A method according to claim 17 , wherein the elastic member satisfies both air-tightness and water-tightness.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2015
From: TAKADA, HITOSHI; KOTAKI, YASUO; OHASHI, TETSUYA; INOUE, RYOJI; KITAGAWA, TAKATOSHI; MURAKAMI, HIRONORI; MIYASHITA, TAKEHO; HAYASHI, HIROKI; FUKUCHI, HIRONORI; IKEBE, NORIHIRO; FUKUSHIMA, TAKASHI
To: CANON KABUSHIKI KAISHA
Reel/Frame 036168/0707 →
Priority Claims (1)
JP 2014-112182 · May 30, 2014 · national
Continuity (1)
Related Publication 20150343793A1 · Dec 3, 2015
Cited By (5)
US 12,187,041 US 12,285,953 US 12,434,482 US 12,459,268 US 12,734,813