IP Library Granted Patent US 10,987,923
Granted Patent B2
US 10,987,923 · App. 16/550,504 · Granted Apr 27, 2021

Liquid circulation device and liquid discharge device

Inventor: Tetsuya Sato (Yokohama Kanagawa, JP)
Assignee: TOSHIBA TEC KABUSHIKI KAISHA
B41J2/04563B41J2/0458B41J2/04581
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Quick Facts
Patent No.
US 10,987,923
App. No.
16/550,504
Granted
Apr 27, 2021
Kind
B2
Abstract

A liquid circulation device includes a first pipe, a first pump, a first portion, a second pipe, a second pump, a second portion, and a heater. A secondary side of the first pipe is connected to a liquid discharge head. The first pump is provided midway through the first l pipe. The first portion is provided midway through the first pipe on a secondary side of the first pump, and includes a flow channel cross-sectional area larger than the area of the first pipe. A primary side of the second pipe is connected to the head. The second pump is provided midway through the second pipe. The second portion is provided midway through the second pipe on a primary side of the second pump, and includes a flow channel cross-sectional area larger than the area of the second pipe. The heater is provided on a primary side of the head.

Claims (78)

1. A liquid circulation device comprising:

a first flow channel pipe having a secondary side connected to a liquid discharge head configured to discharge a liquid;

a first pump provided approximately midway through the first flow channel pipe;

a first diameter expanded portion provided approximately midway through the first flow channel pipe on a secondary side of the first pump, the first diameter expanded portion including a flow channel cross-sectional area larger than a flow channel cross-sectional area of the first flow channel pipe;

a second flow channel pipe having a primary side connected to the liquid discharge head;

a second pump provided approximately midway through the second flow channel pipe;

a second diameter expanded portion provided approximately midway through the second flow channel pipe on a primary side of the second pump, the second diameter expanded portion including a flow channel cross-sectional area larger than a flow channel cross-sectional area of the second flow channel pipe;

a heater provided on a primary side of the liquid discharge head and configured to heat the liquid;

a heater temperature sensor provided to the heater;

a storage unit that stores an upper limit temperature of the heater; and

a control unit that stops the heater from heating the liquid if a first detected value detected by the heater temperature sensor exceeds the upper limit temperature of the heater.

2. The device according to claim 1 , further comprising:

a temperature sensor provided on a secondary side of the liquid discharge head and configured to detect a temperature of the liquid.

3. The device according to claim 2 , further comprising:

the storage unit configured to store a target temperature of the liquid; and

the control unit configured to control the heater based on a second detected value detected by the temperature sensor and the target temperature.

4. The device according to claim 3 , further comprising:

the heater temperature sensor provided to the heater, wherein

the storage unit stores an upper limit temperature of the heater, and

the control unit stops the heater from heating the liquid if the first detected value detected by the heater temperature sensor exceeds the upper limit temperature of the heater.

5. The device according to claim 1 , further comprising:

a first pressure sensor that detects pressure of the ink in the first flow channel pipe; and

a second pressure sensor that detects pressure of the ink in the second flow channel pipe.

6. The device according to claim 1 , wherein

the heater is further provided on the first flow channel pipe.

7. A liquid discharge device comprising:

a liquid discharge head configured to discharge a liquid;

a first flow channel pipe having a secondary side connected to the liquid discharge head;

a first pump provided approximately midway through the first flow channel pipe;

a first diameter expanded portion provided approximately midway through the first flow channel pipe on a secondary side of the first pump, the first diameter expanded portion including a flow channel cross-sectional area larger than a flow channel cross-sectional area of the first flow channel pipe;

a second flow channel pipe having a primary side is connected to the liquid discharge head;

a second pump provided approximately midway through the second flow channel pipe;

a second diameter expanded portion provided approximately midway through the second flow channel pipe on a primary side of the second pump, the second diameter expanded portion including a flow channel cross-sectional area larger than a flow channel cross-sectional area of the second flow channel pipe;

a heater provided on a primary side of the liquid discharge head and configured to heat the liquid;

a heater temperature sensor provided to the heater;

a storage unit that stores an upper limit temperature of the heater; and

a control unit that stops the heater from heating the liquid if a first detected value detected by the heater temperature sensor exceeds the upper limit temperature of the heater.

8. The device according to claim 7 , further comprising:

a temperature sensor provided on a secondary side of the liquid discharge head and configured to detect a temperature of the liquid.

9. The device according to claim 8 , further comprising:

the storage unit configured to store a target temperature of the liquid; and

the control unit configured to control the heater based on a second detected value detected by the temperature sensor and the target temperature.

10. The device according to claim 9 , further comprising:

the heater temperature sensor provided to the heater, wherein

the storage unit stores an upper limit temperature of the heater, and

the control unit stops the heater from heating the liquid if the first detected value detected by the heater temperature sensor exceeds the upper limit temperature of the heater.

11. The device according to claim 7 , further comprising:

a first pressure sensor that detects pressure of the ink in the first flow channel pipe; and

a second pressure sensor that detects pressure of the ink in the second flow channel pipe.

12. The device according to claim 7 , wherein

the heater is further provided on the first flow channel pipe.

13. An inkjet printer, comprising:

a paper cassette;

a paper conveying mechanism; and

a liquid discharge device comprising:

a liquid discharge head configured to discharge a liquid;

a first flow channel pipe having a secondary side connected to the liquid discharge head;

a first pump provided approximately midway through the first flow channel pipe;

a first diameter expanded portion provided approximately midway through the first flow channel pipe on a secondary side of the first pump, the first diameter expanded portion including a flow channel cross-sectional area larger than a flow channel cross-sectional area of the first flow channel pipe;

a second flow channel pipe having a primary side is connected to the liquid discharge head;

a second pump provided approximately midway through the second flow channel pipe;

a second diameter expanded portion provided approximately midway through the second flow channel pipe on a primary side of the second pump, the second diameter expanded portion including a flow channel cross-sectional area larger than a flow channel cross-sectional area of the second flow channel pipe;

a heater provided on a primary side of the liquid discharge head and configured to heat the liquid;

a heater temperature sensor provided to the heater;

a storage unit that stores an upper limit temperature of the heater; and

a control unit that stops the heater from heating the liquid if a first detected value detected by the heater temperature sensor exceeds the upper limit temperature of the heater.

14. The inkjet printer according to claim 13 , the liquid discharge device further comprising:

a temperature sensor provided on a secondary side of the liquid discharge head and configured to detect a temperature of the liquid.

15. The inkjet printer according to claim 14 , the liquid discharge device further comprising:

the storage unit configured to store a target temperature of the liquid; and

the control unit configured to control the heater based on a second detected value detected by the temperature sensor and the target temperature.

16. The inkjet printer according to claim 15 , the liquid discharge device further comprising:

the heater temperature sensor provided to the heater, wherein

the storage unit stores an upper limit temperature of the heater, and

the control unit stops the heater from heating the liquid if the first detected value detected by the heater temperature sensor exceeds the upper limit temperature of the heater.

17. The inkjet printer according to claim 13 , the liquid discharge device further comprising:

a first pressure sensor that detects pressure of the ink in the first flow channel pipe; and

a second pressure sensor that detects pressure of the ink in the second flow channel pipe.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2024
From: TOSHIBA TEC KABUSHIKI KAISHA
To: RISO TECHNOLOGIES CORPORATION
Reel/Frame 068493/0970 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2019
From: SATO, TETSUYA
To: TOSHIBA TEC KABUSHIKI KAISHA
Reel/Frame 050162/0541 →
Priority Claims (1)
JP JP2018-193691 · Oct 12, 2018 · national
Continuity (1)
Related Publication 20200114644A1 · Apr 16, 2020
Cited By (1)
US 12,545,023