IP Library Granted Patent US 12679094
Granted Patent B2
US 12679094 · App. 18/604,536 · Granted Jul 14, 2026

Liquid discharge head, liquid discharge apparatus, and method for manufacturing liquid discharge head

Inventors: Jun Zhang (Kanagawa, JP); Sho Kawakami (Kanagawa, JP); Yasunori Sugimoto (Kanagawa, JP); Toshihiro Kanematsu (Kanagawa, JP); Kiyoshi Amari (Kanagawa, JP)
Assignee: RICOH COMPANY, LTD.
B41J2/1433B41J2/04581B41J2/162B41J2/1623B41J2/17596
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Quick Facts
Patent No.
US 12679094
App. No.
18/604,536
Granted
Jul 14, 2026
Kind
B2
Abstract

A liquid discharge head includes: a nozzle plate having multiple nozzle holes from which a liquid is dischargeable, the multiple nozzle holes arrayed in a nozzle array direction; a housing bonded to the nozzle plate by a diffusion bonding to support the nozzle plate; multiple connecting portions: disposed on one of the nozzle plate or the housing; contacting the nozzle plate and the housing to bond the nozzle plate and the housing; arrayed in the nozzle array direction; and having a channel in each of the multiple connecting portions, the channel communicating with the nozzle holes; and a gap formed between one of the multiple connecting portions and another of the multiple connecting portions adjacent to the one of the multiple connecting portions.

Claims (76)

1 . A liquid discharge head comprising:

a nozzle plate having multiple nozzle holes from which a liquid is dischargeable, the multiple nozzle holes arrayed in a nozzle array direction;

a housing bonded to the nozzle plate by a diffusion bonding to support the nozzle plate;

a wall portion formed on one of:

an outer peripheral portion of the nozzle plate; or

an outer peripheral portion of the housing;

multiple connecting portions connected to a part of the wall portion, the multiple connecting portions:

disposed on one of the nozzle plate or the housing;

contacting the nozzle plate and the housing to bond the nozzle plate and the housing;

arrayed in the nozzle array direction; and

having a channel in each of the multiple connecting portions, the channel communicating with the nozzle holes; and

a gap formed between one of the multiple connecting portions and another of the multiple connecting portions adjacent to the one of the multiple connecting portions, wherein

the wall portion contacts the nozzle plate and the housing to bond the nozzle plate and the housing, and

each of the connecting portions is contacting the wall portion.

2 . The liquid discharge head according to claim 1 ,

wherein the multiple connecting portions are formed on the housing.

3 . The liquid discharge head according to claim 1 ,

wherein the multiple connecting portions are formed on the nozzle plate.

4 . The liquid discharge head according to claim 1 ,

wherein each of the multiple connecting portions has a height that is a distance from the housing to the nozzle plate,

the wall portion having a height same as the height of the multiple connecting portions,

the wall portion bonded to the nozzle plate and the housing to support the nozzle plate with the housing, and

the wall portion has a hole portion communicating with an outside of the housing.

5 . The liquid discharge head according to claim 1 ,

wherein the multiple connecting portions include a bonding portion surrounding the channel, and

the bonding portion has a width equal to or larger than a minimum plate thickness withstand a pressure applied to the nozzle plate.

6 . The liquid discharge head according to claim 1 ,

wherein the nozzle plate and the housing are formed of any of:

an austenitic stainless alloy;

a ferritic stainless alloy; or

a martensitic stainless alloy.

7 . The liquid discharge head according to claim 6 ,

wherein the nozzle plate and the housing are formed of a same material.

8 . The liquid discharge head according to claim 1 ,

wherein each of the multiple connecting portions has a same height that is a distance from the housing to the nozzle plate.

9 . The liquid discharge head according to claim 1 , further comprising:

a valve body movable between

a separated position separated from the nozzle plate to open one of the multiple nozzle holes; and

a contact position at which the valve body contacts the nozzle plate to close one of the multiple nozzle holes; and

a mover to move the valve body.

10 . The liquid discharge head according to claim 9 ,

wherein the valve body has an elastic body on a leading end of the valve body.

11 . A liquid discharge apparatus comprising the liquid discharge head according to claim 10 .

12 . The liquid discharge head according to claim 1 , wherein:

the multiple connecting portions are connected to the part of the wall portion at each end of the multiple connecting portions in an X direction.

13 . The liquid discharge head according to claim 12 , wherein:

the X direction is orthogonal to a Y direction, the Y direction being parallel to the nozzle array direction.

14 . The liquid discharge head according to claim 1 , wherein:

the multiple connecting portions are rectangular connecting portions.

15 . The liquid discharge head according to claim 14 , wherein:

the rectangular connecting portions are connected to the part of the wall portion at an end portion thereof in a longitudinal direction.

16 . A liquid discharge head comprising:

a nozzle plate having multiple nozzle holes from each of which a liquid is dischargeable;

a housing supporting the nozzle plate;

a diffusion bonding member between the nozzle plate and the housing and bonded to each of the nozzle plate and the housing by a diffusion bonding,

the diffusion bonding member including:

multiple connecting portions arrayed in an array direction of the multiple nozzle holes, the multiple connecting portions contacting the nozzle plate and the housing to bond the nozzle plate and the housing;

multiple channels in the multiple connecting portions and communicating with the multiple nozzle holes of the nozzle plate, respectively;

a gap formed between one of the multiple connecting portions and another of the multiple connecting portions adjacent to the one of the multiple connecting portions; and

a wall portion along an outer periphery portion of the nozzle plate, the wall portion contacting the nozzle plate and the housing to bond the nozzle plate and the housing, wherein

the multiple connecting portions are connected to a part of the wall portion, and

each of the connecting portions is contacting the wall portion.

17 . The liquid discharge head according to claim 16 , wherein:

the multiple connecting portions are connected to the part of the wall portion at each end of the multiple connecting portions in an X direction.

18 . The liquid discharge head according to claim 17 , wherein:

the X direction is orthogonal to a Y direction, the Y direction being parallel to the array direction.

19 . The liquid discharge head according to claim 16 , wherein:

the multiple connecting portions are rectangular connecting portions, and

the rectangular connecting portions are connected to the part of the wall portion at an end portion thereof in a longitudinal direction.

20 . A manufacturing method comprising:

forming a wall portion on an outer peripheral portion of a nozzle plate or on an outer peripheral portion of a housing;

forming multiple connecting portions on one of the nozzle plate having multiple nozzle holes or the housing, the multiple connecting portions arrayed in an array direction of the multiple nozzle holes, wherein the multiple connecting portions are connected to a part of the wall portion and each of the connecting portions is contacting the wall portion;

forming a gap between one of the multiple connecting portions and another of the multiple connecting portions adjacent to one of the multiple connecting portions;

forming multiple channels, communicating with the multiple nozzle holes of the nozzle plate, in the multiple connecting portions, respectively;

bringing the multiple connecting portions into contact with the one of the nozzle plate or the housing to bond the nozzle plate and the housing; and

performing a diffusion bonding between the nozzle plate and the housing via the multiple connecting portions.