IP Library Granted Patent US 10,406,814
Granted Patent B2
US 10,406,814 · App. 15/877,787 · Granted Sep 10, 2019

Liquid discharge head and liquid discharge device

Inventor: Isao Suzuki (Mishima Shizuoka, JP)
Assignee: TOSHIBA TEC KABUSHIKI KAISHA
B41J2/155B41J2/14209B41J2/14274B41J2002/14475B41J2202/11B41J2202/12
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Quick Facts
Patent No.
US 10,406,814
App. No.
15/877,787
Granted
Sep 10, 2019
Kind
B2
Abstract

According to one embodiment, a liquid discharge head includes a pressure chamber, and a nozzle plate having a plurality of nozzle holes formed therein and a discharge face with an upstream side and a downstream side, the plurality of nozzle holes being in fluid communication with the pressure chamber and including a first nozzle hole on the upstream side of the discharge face, and a second nozzle hole on the downstream side of the discharge face. A liquid discharge speed from the first nozzle hole is higher than a liquid discharge speed from the second nozzle hole.

Claims (60)

1. A liquid discharge head, comprising:

a pressure chamber; and

a nozzle plate having a plurality of nozzle holes formed therein and a discharge face with an upstream side and a downstream side, the plurality of nozzle holes being in fluid communication with the pressure chamber and including:

a first nozzle hole on the upstream side of the discharge face, and

a second nozzle hole on the downstream side of the discharge face, wherein

a liquid discharge speed from the first nozzle hole is higher than a liquid discharge speed from the second nozzle hole, wherein

a relationship 0.5× DI 2> Pt−V×G ( v 2− v 1)/ v 1× v 2≥0 holds

when a distance between the first and the second nozzles is Pt, the feed speed of the paper is V, a distance between the discharge face of the first and the second nozzles and the paper is G, liquid discharge speeds of the first and second nozzle holes are v 1 and v 2 , and dot diameters of liquid droplets discharged from the first and the second nozzle holes at a time of hitting the paper are DI 1 and DI 2 .

2. The liquid discharge head according to claim 1 , wherein the plurality of nozzle holes is aligned in two lines along a direction perpendicular to a direction from the upstream side to the downstream side of the discharge face.

3. The liquid discharge head according to claim 1 , wherein

a flow channel diameter at the discharge face of the first nozzle hole is smaller than a flow channel diameter at the discharge face of the second nozzle hole.

4. The liquid discharge head according to claim 1 , wherein

a flow channel of the first nozzle hole is tapered at a first angle, and

a flow channel of the second nozzle hole is tapered at a second angle that is smaller than the first angle.

5. The liquid discharge head according to claim 1 , wherein

a minimum flow channel diameter of the first nozzle hole within the nozzle plate is smaller than a minimum flow channel diameter of the second nozzle hole within the nozzle plate.

6. The liquid discharge head according to claim 1 , wherein a relationship:

2× Pt>V×G ( v 2− v 1)/ v 1× v 2>0

holds.

7. A liquid discharge device comprising:

a conveying device configured to convey a discharge target in a first direction;

a pressure chamber; and

a nozzle plate having a plurality of nozzle holes formed therein and a discharge face with an upstream side and a downstream side along the first direction, the plurality of nozzle holes being in fluid communication with the pressure chamber and including:

a first nozzle hole on the upstream side of the discharge face, and

a second nozzle hole on the downstream side of the discharge face, wherein

a liquid discharge speed from the first nozzle hole is higher than a liquid discharge speed from the second nozzle hole, wherein

a relationship 0.5× DI 2> Pt×V×G ( v 2− v 1)/ v 1× v 2≥0 holds

when a distance between the first and the second nozzles is Pt, the feed speed of the paper is V, a distance between the discharge face of the first and the second nozzles and the paper is G, liquid discharge speeds of the first and second nozzle holes are v 1 and v 2 , and dot diameters of liquid droplets discharged from the first and the second nozzle holes at a time of hitting the paper are DI 1 and DI 2 .

8. The liquid discharge device according to claim 7 , wherein the plurality of nozzle holes is aligned in two lines along a direction perpendicular to a direction from the upstream side to the downstream side of the discharge face.

9. The liquid discharge device according to claim 7 , wherein

a flow channel diameter at the discharge face of the first nozzle hole is smaller than a flow channel diameter at the discharge face of the second nozzle hole.

10. The liquid discharge device according to claim 7 , wherein

a flow channel of the first nozzle hole is tapered at a first angle, and

a flow channel of the second nozzle hole is tapered at a second angle that is smaller than the first angle.

11. The liquid discharge device according to claim 7 , wherein

a minimum flow channel diameter of the first nozzle hole within the nozzle plate is smaller than a minimum flow channel diameter of the second nozzle hole within the nozzle plate.

12. The liquid discharge device according to claim 7 , wherein a relationship:

2× Pt>V×G ( v 2− v 1)/ v 1× v 2>0

holds.

13. A liquid discharge device, comprising:

a nozzle plate having a first nozzle set and a second nozzle set spaced from each other in a first direction, each nozzle set including a plurality of first nozzle holes disposed in a line along a second direction crossing the first direction and a plurality of second nozzle holes disposed in another line along the second direction;

a frame bonded to the nozzle plate;

a base plate having a plurality of piezoelectric element corresponding to nozzle holes of the nozzle plate, the base plate bonded to the frame, the frame being between the base plate and the nozzle plate; and

a plurality of pressure chambers formed between the base plate and the nozzle plate and a piezoelectric element being between adjacent pressure chambers in the second direction, each pressure chamber being fluidly connected to one first nozzle hole and one second nozzle hole of the same nozzle set and aligned with each other in the first direction, wherein

each first nozzle hole has a first liquid discharge speed, and each second nozzle hole has a second liquid discharge speed,

the first liquid discharge speed is higher than the liquid discharge speed, and

a relationship 0.5× DI 2> Pt×V×G ( v 2− v 1)/ v 1× v 2≥0 holds

when a distance between the first and the second nozzles is Pt, the feed speed of the paper is V, a distance between the discharge face of the first and the second nozzles and the paper is G, liquid discharge speeds of the first and second nozzle holes are v 1 and v 2 , and dot diameters of liquid droplets discharged from the first and the second nozzle holes at a time of hitting the paper are DI 1 and DI 2 .

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

a conveying device configured to convey a discharge target in the first direction.

15. The liquid discharge device according to claim 13 , wherein

a flow channel diameter at the discharge face of the first nozzle hole is smaller than a flow channel diameter at the discharge face of the second nozzle hole.

16. The liquid discharge device according to claim 13 , wherein

a flow channel of the first nozzle hole is tapered at a first angle, and

a flow channel of the second nozzle hole is tapered at a second angle that is smaller than the first angle.

17. The liquid discharge device according to claim 13 , wherein

a minimum flow channel diameter of the first nozzle hole within the nozzle plate is smaller than a minimum flow channel diameter of the second nozzle hole within the nozzle plate.

18. The liquid discharge device according to claim 13 , wherein a relationship:

2× Pt>V×G ( v 2− v 1)/ v 1× v 2>0

holds.

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 Jan 23, 2018
From: SUZUKI, ISAO
To: TOSHIBA TEC KABUSHIKI KAISHA
Reel/Frame 044701/0899 →
Continuity (1)
Related Publication 20180257377A1 · Sep 13, 2018