IP Library Granted Patent US 12,578,021
Granted Patent B2
US 12,578,021 · App. 18/723,382 · Granted Mar 17, 2026

Flow rate control valve, manufacturing method of flow rate control valve, and flow rate control apparatus

Inventors: Kazuya Shakudo (Kyoto, JP); Shigeyuki Hayashi (Kyoto, JP); Masayuki Nagasawa (Kyoto, JP)
Assignee: HORIBA STEC, Co., Ltd.
F16K1/36F16K1/42F16K7/12F16K7/14F16K7/16F16K7/17F16K27/0236F16K37/00
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Quick Facts
Patent No.
US 12,578,021
App. No.
18/723,382
Granted
Mar 17, 2026
Kind
B2
Abstract

A flow rate control valve includes a valve seat portion, a valve member, a driving portion, and a support member supporting the valve member via a diaphragm portion. The valve member has an opposite face opposite from a valve seat face with respect to a seat face and a circumferential face connecting together the seat face and the opposite face. The diaphragm portion is connected to the circumferential face of the valve member at a position closer to the seat face than to the opposite face. The support member has a first face on the same side as the opposite face with respect to a membrane face of the diaphragm portion and a second face closer to the valve seat portion than the first face. When the diaphragm portion is not deformed, the opposite face and the first face are on the same plane.

Claims (105)

1 . A flow rate control valve comprising:

a valve seat portion having a valve seat face;

a valve member having a seat face that makes contact with and separates from the valve seat face;

an actuator that drives the valve member in a contact/separate direction in which the seat face makes contact with and separates from the valve seat face;

a plunger connected to the valve member at an opposite face of the valve member toward the actuator, wherein a diameter of the plunger is smaller than a diameter of the opposite face; and

a support member that supports the valve member via a diaphragm portion,

wherein

the valve member further has

the opposite face that is positioned opposite from the valve seat face with respect to the seat face and

a circumferential face that connects together the seat face and the opposite face,

the diaphragm portion is connected to the circumferential face of the valve member at a position between the opposite face and the seat face,

the diaphragm portion is connected to the circumferential face of the valve member at a position closer to the seat face than to the opposite face,

the support member has

a first face that is positioned on a same side as the opposite face with respect to a position of a membrane face of the diaphragm portion and

a second face that is positioned closer to the valve seat portion than the first face, and

when the diaphragm portion is in an undeformed state, the opposite face and the first face are positioned on a same plane.

2 . The flow rate control valve according to claim 1 , wherein

a height of the valve member, which is defined as a distance between the opposite face and the seat face, is equal to a height of the support member, which is defined as a distance between the first face and the second face.

3 . The flow rate control valve according to claim 1 , wherein

the seat face of the valve member is positioned opposite from the opposite face with respect to the position of the membrane face of the diaphragm portion, and

the second face of the support member is positioned opposite from the first face with respect to the position of the membrane face of the diaphragm portion.

4 . The flow rate control valve according to claim 1 , wherein

when a thickness of the diaphragm portion in the contact/separate direction is T, the diaphragm portion is positioned at least 4T away from the seat face in the contact/separate direction.

5 . The flow rate control valve according to claim 1 , wherein

an outer diameter of the seat face is larger than an inner diameter of the diaphragm portion.

6 . The flow rate control valve according to claim 5 , wherein

the valve seat face has at least one opening that is closed when the seat face seats on the valve seat face,

the at least one opening communicates with an inlet side flow passage for a fluid, and

when, on the valve seat face, a minimum diameter of a circle that covers the at least one opening is defined as a valve seat diameter, the valve seat diameter is smaller than the outer diameter of the seat face but is larger than the inner diameter of the diaphragm portion.

7 . A method of manufacturing the flow rate control valve according to claim 1 , the method comprising a polishing process of polishing the seat face by pressing the seat face of the valve member against a lapping surface plate with a polishing material in between, wherein

in the polishing process, the seat face is polished with the opposite face of the valve member and the first face of the support member simultaneously pressed with a same flat face against the lapping surface plate.

8 . A flow rate control apparatus comprising:

the flow rate control valve according to claim 1 ;

a flow rate sensing mechanism that senses a flow rate of a fluid; and

a driving control portion that drives the actuator of the flow rate control valve based on a sensing result from the flow rate sensing mechanism.

9 . A flow rate control valve comprising:

a valve seat portion having a valve seat face;

a valve member having a seat face that makes contact with and separates from the valve seat face;

an actuator that drives the valve member in a contact/separate direction in which the seat face makes contact with and separates from the valve seat face;

a plunger connected to the valve member at an opposite face of the valve member toward the actuator, wherein a diameter of the plunger is smaller than a diameter of the opposite face; and

a support member that supports the valve member via a diaphragm portion,

wherein

the valve member further has

the opposite face that is positioned opposite from the valve seat face with respect to the seat face and

a circumferential face that connects together the seat face and the opposite face,

the diaphragm portion is connected to the circumferential face of the valve member at a position between the opposite face and the seat face,

the diaphragm portion is connected to the circumferential face of the valve member at a position closer to the seat face than to the opposite face,

the support member has

a first face that is positioned on a same side as the opposite face with respect to a position of a membrane face of the diaphragm portion and

a second face that is positioned closer to the valve seat portion than the first face, and

a height of the valve member, which is defined as a distance between the opposite face and the seat face, is equal to a height of the support member, which is defined as a distance between the first face and the second face.

10 . The flow rate control valve according to claim 9 ,

wherein

the seat face of the valve member is positioned opposite from the opposite face with respect to the position of the membrane face of the diaphragm portion, and

the second face of the support member is positioned opposite from the first face with respect to the position of the membrane face of the diaphragm portion.

11 . The flow rate control valve according to claim 9 , wherein

when a thickness of the diaphragm portion in the contact/separate direction is T, the diaphragm portion is positioned at least 4T away from the seat face in the contact/separate direction.

12 . The flow rate control valve according to claim 9 , wherein

an outer diameter of the seat face is larger than an inner diameter of the diaphragm portion.

13 . The flow rate control valve according to claim 12 , wherein

the valve seat face has at least one opening that is closed when the seat face seats on the valve seat face,

the at least one opening communicates with an inlet side flow passage for a fluid, and

when, on the valve seat face, a minimum diameter of a circle that covers the at least one opening is defined as a valve seat diameter, the valve seat diameter is smaller than the outer diameter of the seat face but is larger than the inner diameter of the diaphragm portion.

14 . A method of manufacturing the flow rate control valve according to claim 9 , the method comprising a polishing process of polishing the seat face by pressing the seat face of the valve member against a lapping surface plate with a polishing material in between, wherein

in the polishing process, the seat face is polished with the opposite face of the valve member and the first face of the support member simultaneously pressed with a same flat face against the lapping surface plate.

15 . A flow rate control valve comprising:

a valve seat portion having a valve seat face;

a valve member having a seat face that makes contact with and separates from the valve seat face, wherein the valve member comprises a substantially truncated cone-shape;

an actuator that drives the valve member in a contact/separate direction in which the seat face makes contact with and separates from the valve seat face; and

a support member that supports the valve member via a diaphragm portion,

wherein

the valve member further has

an opposite face that is positioned opposite from the valve seat face with respect to the seat face and

a circumferential face that connects together the seat face and the opposite face,

the diaphragm portion is connected to the circumferential face of the valve member at a position between the opposite face and the seat face,

the support member has

a first face that is positioned on a same side as the opposite face with respect to a position of a membrane face of the diaphragm portion and

a second face that is positioned opposite from the first face with respect to the position of the membrane face of the diaphragm portion, and

when a thickness of the diaphragm portion in the contact/separate direction is T, the diaphragm portion is positioned at least 4T away from the seat face in the contact/separate direction.

16 . The flow rate control valve according to claim 15 , wherein

an outer diameter of the seat face is larger than an inner diameter of the diaphragm portion.

17 . The flow rate control valve according to claim 15 , wherein

the valve seat face has at least one opening that is closed when the seat face seats on the valve seat face,

the at least one opening communicates with an inlet side flow passage for a fluid, and

when, on the valve seat face, a minimum diameter of a circle that covers the at least one opening is defined as a valve seat diameter, the valve seat diameter is smaller than the outer diameter of the seat face but is larger than the inner diameter of the diaphragm portion.

18 . A flow rate control valve comprising:

a valve seat portion having a valve seat face;

a valve member having a seat face that makes contact with and separates from the valve seat face, wherein the seat face closes a plurality of first openings defined by the valve seat portion when the seat face seats on the valve seat face;

an actuator that drives the valve member in a contact/separate direction in which the seat face makes contact with and separates from the valve seat face; and

a support member that supports the valve member via a diaphragm portion,

wherein

the valve member further has

an opposite face that is positioned opposite from the valve seat face with respect to the seat face and

a circumferential face that connects together the seat face and the opposite face,

the diaphragm portion is connected to the circumferential face of the valve member at a position between the opposite face and the seat face,

the support member has

a first face that is positioned on a same side as the opposite face with respect to a position of a membrane face of the diaphragm portion and

a second face that is positioned opposite from the first face with respect to the position of the membrane face of the diaphragm portion, and

an outer diameter of the seat face is larger than an inner diameter of the diaphragm portion.

19 . The flow rate control valve according to claim 18 , wherein

the valve seat face has at least one opening that is closed when the seat face seats on the valve seat face,

the at least one opening communicates with an inlet side flow passage for a fluid, and

when, on the valve seat face, a minimum diameter of a circle that covers the at least one opening is defined as a valve seat diameter, the valve seat diameter is smaller than the outer diameter of the seat face but is larger than the inner diameter of the diaphragm portion.

20 . The flow rate control valve according to claim 18 , wherein the valve seat portion further defines a second opening that remains open when the seat face seats the valve seat face.

21 . The flow rate control valve according to claim 20 , wherein the second opening is disposed radially outward of the plurality of first openings, and wherein the outer diameter of the seat face of the valve member is located between the plurality of first openings and the second opening.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2024
From: SHAKUDO, KAZUYA; HAYASHI, SHIGEYUKI; NAGASAWA, MASAYUKI
To: HORIBA STEC, CO., LTD.
Reel/Frame 067806/0161 →
Priority Claims (1)
JP 2021-210178 · Dec 24, 2021 · national
Continuity (1)
Related Publication 20250067347A1 · Feb 27, 2025
References Cited (14)
US 5145147A · Nakazawa · 1992 [cited by examiner]
US 10941867B2 · Vu · 2021 [cited by examiner]
US 20100243076A1 · Hayashi · 2010 [cited by applicant]
US 20160369915A1 · Vu · 2016 [cited by examiner]
US 20180003312A1 · Schupp · 2018 [cited by examiner]
US 20210381606A1 · Fischer · 2021 [cited by examiner]
CN 203282329U · 2013 [cited by applicant]
EP 0973080A2 · 2000 [cited by applicant]
EP 0973080B1 · 2004 [cited by applicant]
JP H067240Y2 · 1994 [cited by applicant]
JP 2000035821A · 2000 [cited by applicant]
JP 2010230159A · 2010 [cited by applicant]
JP 2011214713A · 2011 [cited by applicant]
ISA Japan Patent Office, International Search Report Issued in Application No. PCT/JP2022/039109, Jan. 17, 2023, WIPO, 4 pages. [cited by applicant]