IP Library › Granted Patent US 12,259,066
Granted Patent B2
US 12,259,066 · App. 17/507,222 · Granted Mar 25, 2025

Inversion inhibitor for fluid control valve and methods of fluid control

Inventor: James O. Williams (Marlborough, MA)
Assignee: Tyco Fire Products LP
F16K7/123F16K7/126F16K7/17F16K27/0236A62C35/68F16J3/02F16K31/126F16K31/1266F16K31/145F16K31/385
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Quick Facts
Patent No.
US 12,259,066
App. No.
17/507,222
Granted
Mar 25, 2025
Kind
B2
Abstract

A fluid control valve includes a cover portion and a body portion. Inner surfaces of the cover and the body portion define a chamber that includes an inlet and an outlet in communication with the chamber. The cover portion includes a central section and an inversion inhibitor circumscribing the central section. The inversion inhibitor projects into the chamber toward a central axis of the chamber. The fluid control valve also includes a diaphragm disposed between the cover portion and the body portion. The diaphragm has a flexible member that is disposed within the chamber for controlling communication between the inlet and the outlet. The inversion inhibitor prevents the flexible member from reaching its natural-inverted position and creates a force within the flexible member that urges the flexible member to a seated position. In the partially inverted position, the upper surface of the flexible member conforms to at least a portion of the inner surface of the cover portion to define a passageway that permits communication between the inlet and the outlet.

Claims (55)

1. A fluid control valve, comprising:

a cover portion including a first inner surface;

a body portion to couple with the cover portion, the body portion including:

a second inner surface, the first inner surface and the second inner surface defining a chamber between an inlet and an outlet, the inlet and the outlet defining an axis;

a seat member aligned along a plane perpendicular to the axis; and

one or more members disposed about the seat member, the one or more members having an arc shape;

a diaphragm disposed in the chamber between the cover portion and the body portion, the diaphragm to move between a first position in which the diaphragm is spaced from the seat member to allow fluid flow between the inlet and the outlet and a second position in which the diaphragm conforms to and seals the seat member, the diaphragm biased to the second position without additional biasing devices to bias the diaphragm from the first position to the second position; and

an inversion inhibitor extending from the cover portion to prevent the diaphragm from fully inverting while the diaphragm conforms to first inner surface of the cover portion.

2. The fluid control valve of claim 1 , comprising:

the diaphragm comprises a rubber matrix and a reinforced fabric in the rubber matrix, a tension force is concentrated in the reinforced fabric when the diaphragm is in the first position to exclusively bias the diaphragm from the first position to the second position.

3. The fluid control valve of claim 1 , comprising:

the diaphragm comprises a flexible member.

4. The fluid control valve of claim 1 , comprising:

an upper surface of the diaphragm facing the cover portion is smooth.

5. The fluid control valve of claim 1 , comprising:

the diaphragm does not include a rib or a ring to urge the diaphragm to the second position.

6. The fluid control valve of claim 1 , comprising:

the seat member is defined by a bridge element extending across the body portion; and

the one or more members extend from the bridge element.

7. The fluid control valve of claim 1 , comprising:

the cover portion includes a dome section and a flange section.

8. The fluid control valve of claim 1 , comprising:

the diaphragm comprises a first layer facing the cover portion and a second layer facing the seat member, the first layer and the second layer each comprising elastomeric material.

9. The fluid control valve of claim 1 , comprising:

the diaphragm comprises a first layer facing the cover portion and a second layer facing the seat member, the first layer and the second layer each having a durometer hardness greater than or equal to 55 and less than or equal to 75 and a minimum tensile strength of 1700 pounds per square inch.

10. The fluid control valve of claim 1 , comprising:

a ratio of a radius of curvature of a lower surface of the flexible member to a radius of curvature of an upper surface of the flexible member is in a range of 1.05 to 1.15.

11. The fluid control valve of claim 1 , comprising:

the diaphragm has a thickness greater than or equal to 0.3 inches and less than or equal to 1 inch.

12. The fluid control valve of claim 1 , comprising:

the one or more members extend parallel with the axis.

13. The fluid control valve of claim 1 , comprising:

the first inner surface has a concave profile.

14. The fluid control valve of claim 1 , comprising:

the seat member has a cross-sectional area that is one of a semicircle, a semi-ellipse and a semi-oval shape.

15. The fluid control valve of claim 1 , comprising:

the seat member defines a curvilinear surface and a groove extending along the curvilinear surface.

16. The fluid control valve of claim 1 , comprising:

an alarm port coupled with the body portion.

17. A fluid control valve:

a cover portion including a first inner surface;

a body portion to couple with the cover portion, the body portion including:

a second inner surface, the first inner surface and the second inner surface defining a chamber between an inlet and an outlet, the inlet and the outlet defining an axis;

a seat member aligned along a plane perpendicular to the axis; and

one or more members disposed about the seat member, the one or more members having an arc shape; and

a diaphragm disposed in the chamber between the cover portion and the body portion, the diaphragm to move between a first position in which the diaphragm is spaced from the seat member to allow fluid flow between the inlet and the outlet and a second position in which the diaphragm conforms to and seals the seat member, the diaphragm biased to the second position without additional biasing devices to bias the diaphragm from the first position to the second position, the diaphragm comprises a first fabric member that is disposed at a 45 degree angle to a second fabric member with respect to a weave pattern of the first fabric member and the second fabric members.

18. A valve, comprising:

a cover portion;

a body portion coupled with the cover portion, the body portion including:

an inlet;

an outlet, the inlet and the outlet defining an axis;

a chamber between the inlet and the outlet;

a seat member along a plane perpendicular to the axis; and

one or more members disposed about the seat member, the one or more members having an arc shape; and

a diaphragm between the cover portion and the body portion, the diaphragm comprising a rubber matrix and a reinforced fabric, the diaphragm to move between a first position in which the diaphragm is spaced from the seat member to allow fluid flow between the inlet and the outlet and a second position in which the diaphragm seals the seat member, the reinforced fabric to concentrate a tension force in the diaphragm is in the first position to exclusively bias the diaphragm without additional biasing devices from the first position to the second position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2021
From: WILLIAMS, JAMES O.
To: TYCO FIRE PRODUCTS LP
Reel/Frame 057866/0923 →
Continuity (6)
Continuation 16468488
Provisional Application 62433541 · Dec 13, 2016
Provisional Application 62433453 · Dec 13, 2016
Provisional Application 62433572 · Dec 13, 2016
Provisional Application 62433488 · Dec 13, 2016
Related Publication 20220112959A1 · Apr 14, 2022
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Cited By (3)
US 1,094,655 US 1,094,908 US 1,107,325