IP Library › Granted Patent US 12,578,741
Granted Patent B2
US 12,578,741 · App. 18/748,266 · Granted Mar 17, 2026

Pressure control valve

Inventors: Krzysztof Słomiany (Jerzmanowice, PL); Paweł Świrniak (Prochowice, PL); Piotr Jacek Kroczek (Nieciszów, PL)
Assignee: GOODRICH CORPORATION
G05D16/107G05D16/103
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Quick Facts
Patent No.
US 12,578,741
App. No.
18/748,266
Granted
Mar 17, 2026
Kind
B2
Abstract

A pressure control valve includes: a valve housing extending along an axis (A); a valve seat; a valve piston mounted within the valve housing arranged to move axially within the valve housing relative to the valve seat; a compression spring located between the valve piston and an end of the valve housing to axially bias the valve piston relative to the valve seat; and a check valve located within the valve piston.

Claims (36)

1 . A pressure control valve comprising:

a valve housing extending along an axis (A);

an inlet configured to be connected to a high pressure fluid supply;

an outlet;

a valve seat;

a valve piston mounted within the valve housing arranged to move axially within the valve housing relative to the valve seat;

a compression spring located between the valve piston and an end of the valve housing to axially bias the valve piston relative to the valve seat; and

a check valve located within the valve piston; wherein the check valve comprises:

a check valve ball biased relative to the valve piston by a check valve spring whose stiffness determines a pressure differential controlling operating of the pressure control valve;

wherein the valve piston has a first end proximate the valve seat and a second, opposite end adjacent the compression spring; and

wherein the second end is configured to receive the check valve

wherein the valve piston has a first end proximate the valve seat and a second, opposite end adjacent the compression spring; and

wherein the second end is configured to receive the check valve;

the check valve further comprising:

a flange intermediate the first end and the second end extending radially outwards towards the valve housing;

wherein:

a first fluid chamber is formed in the valve housing between the flange and the second end of the valve piston;

a second fluid chamber is formed between the second end of the valve piston and the end of the valve housing;

a third fluid chamber is formed between the flange and the first end of the valve piston; and

the first fluid chamber is provided to be in fluid communication with a fluid supply for controlling operation of the valve and the third fluid chamber provides fluid to a control valve outlet;

wherein the second end of the valve piston has an outer diameter sized to form a sealing engagement with the valve housing, the flange has a radial dimension that is less than that of the second end of the valve piston but greater than the first end of the valve piston;

wherein the pressure control valve configured such that:

high pressure fluid flows from the inlet into the first fluid chamber, and acts against the force of the check valve spring to open the check valve to permit fluid from the first fluid chamber to flow through the check valve to the second fluid chamber and further into the third fluid chamber; and

as fluid continues to flow from the inlet, the pressure of the fluid in the third fluid chamber increases until it overcomes the compression spring and compresses it to move the piston into the second fluid chamber until the flange abuts the valve housing to close the flow path from the second fluid chamber to the third fluid chamber whereupon the fluid in the third fluid chamber flows out through the outlet such that the pressure acting from the third fluid chamber on the compression spring is reduced and the compression spring expands to move the piston to re-open the flow path from the second fluid chamber to the third fluid chamber.

2 . The pressure control valve of claim 1 , wherein the valve housing has a first inner diameter in the region where fluid enters the valve from the fluid supply and a second, smaller, inner diameter between the location having the first inner diameter and the end of the valve housing.

3 . The pressure control valve of claim 1 , further comprising:

a vent hole through the valve housing behind the valve piston.

4 . The pressure control valve of claim 3 , wherein the vent hole is provided in the housing in a region where the compression spring is located.

5 . The pressure control valve of claim 1 , wherein the end of the valve housing is sealed by a plug.

6 . The pressure control valve of claim 1 , wherein the check valve further comprises:

a check valve nut to secure the check valve spring within the valve piston.

7 . A fluid system comprising:

a fluid supply; and

a pressure control valve as claimed in claim 1 to regulate the pressure of the fluid from the fluid supply.

8 . The fluid system of claim 7 , wherein the supply comprises:

a bottle having a neck opening to which the pressure control valve is fluidly attached.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2024
From: SLOMIANY, KRZYSZTOF; SWIRNIAK, PAWEL; KROCZEK, PIOTR JACEK
To: UTC AEROSPACE SYSTEMS WROCLAW SP. Z. O.O.
Reel/Frame 067811/0536 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2024
From: UTC AEROSPACE SYSTEMS WROCLAW SP. Z. O.O.
To: GOODRICH CORPORATION
Reel/Frame 067811/0543 →
Priority Claims (1)
EP 23461613 · Jun 28, 2023 · regional
Continuity (1)
Related Publication 20250004488A1 · Jan 2, 2025
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