IP Library Granted Patent US 12,410,869
Granted Patent B2
US 12,410,869 · App. 18/456,553 · Granted Sep 9, 2025

Two-pin clapper check valve

Inventors: Nadiya V. Fuller (Plano, TX); Brian C. Witkowski (Weatherford, TX)
Assignee: SPM Oil & Gas Inc.
F16K15/03
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Quick Facts
Patent No.
US 12,410,869
App. No.
18/456,553
Granted
Sep 9, 2025
Kind
B2
Abstract

In some implementations, a clapper valve assembly includes a valve body defining a longitudinal flow bore, a hanger disposed in the valve body, a link piece coupled to the hanger, a first pin coupled between the hanger and the link piece, wherein the link piece is configured to rotate, relative to the hanger, about the first pin, a clapper coupled to the link piece, and a second pin coupled between the link piece and the clapper, wherein the clapper is configured to rotate, relative to the link piece, about the second pin.

Claims (79)

1. A clapper valve assembly, comprising:

a valve body defining a longitudinal flow bore;

a hanger disposed in the valve body and including a slot;

a link piece, including:

a link body; and

first and second pin holes defined in the link body;

a first pin disposed in both the slot of the hanger and the first pin hole of the link body,

wherein the first pin defines a first rotation axis, and

wherein the link piece is configured to rotate about the first rotation axis;

a clapper, including:

a clapper body;

a third pin hole defined in the clapper body; and

a seal;

a second pin disposed in both the second pin hole of the link body and the third pin hole of the clapper body,

wherein the second pin defines a second rotation axis,

wherein the clapper is configured to rotate about the second rotation axis, and

wherein a fit between the first pin and the slot of the hanger has greater clearance than a fit between the second pin and the third pin hole of the clapper body; and

a valve seat disposed in the valve body.

2. The clapper valve assembly of claim 1 , wherein the link piece and the clapper are configured to rotate independently of each other.

3. The clapper valve assembly of claim 2 , wherein the independent rotation of the link piece and the clapper causes linear movement of the clapper.

4. The clapper valve assembly of claim 3 , wherein the linear movement of the clapper is normal to the valve seat.

5. The clapper valve assembly of claim 3 , wherein the linear movement is configured to occur from initial contact between the seal and the valve seat to final contact between a face of the clapper body and the valve seat.

6. The clapper valve assembly of claim 1 , wherein the first and second pins are disposed parallel to each other, and wherein the second pin is nearer a centerline of the longitudinal flow bore, compared to the first pin, when the clapper is in a closed position.

7. The clapper valve assembly of claim 1 , wherein the first and second rotation axes are perpendicular to the longitudinal flow bore.

8. The clapper valve assembly of claim 1 , wherein the link body includes:

a first end defining a rounded edge corresponding to the first pin hole,

wherein the link body has a first width and a first depth at the first end; and

a second end corresponding to the second pin hole,

wherein the link body has a second width and a second depth at the second end,

wherein the second width is less than the first width, and

wherein the second depth is less than the first depth.

9. The clapper valve assembly of claim 8 , wherein the link body further includes:

a forward-facing surface connecting the first and second ends,

wherein the forward-facing surface is configured to face towards an outlet of the longitudinal flow bore when the clapper is in a closed position; and

a backward-facing surface connecting the first and second ends,

wherein the backward-facing surface is configured to face towards an inlet of the longitudinal flow bore when the clapper is in the closed position, and

wherein a length of the backward-facing surface defined between the rounded edge and the second end is less than a length of the forward-facing surface.

10. A link assembly for coupling a clapper to a hanger of a clapper valve, comprising:

a link piece, including:

a link body; and

first and second pin holes defined in the link body, wherein the link body includes:

a first end corresponding to the first pin hole,

wherein the link body has a first width and a first depth at the first end; and

a second end corresponding to the second pin hole,

wherein the link body has a second width and a second depth at the second end,

wherein the second width is less than the first width, and

wherein the second depth is less than the first depth;

a first pin disposed in the first pin hole of the link body,

wherein the first pin defines a first rotation axis, and

wherein the link piece is configured to rotate, relative to the hanger, about the first rotation axis; and

a second pin disposed in the second pin hole of the link body,

wherein the second pin defines a second rotation axis, and

wherein the clapper is configured to rotate, independently of the link piece, about the second rotation axis.

11. The link assembly of claim 10 , wherein the link piece and the clapper are configured to rotate independently of each other.

12. The link assembly of claim 11 , wherein the independent rotation of the link piece and the clapper causes linear movement of the clapper.

13. The link assembly of claim 10 , wherein the link body further includes:

a forward-facing surface connecting the first and second ends,

wherein the forward-facing surface is configured to face towards an outlet of the clapper valve when the clapper is in a closed position; and

a backward-facing surface connecting the first and second ends,

wherein the backward-facing surface is configured to face towards an inlet of the clapper valve when the clapper is in the closed position, and

wherein a length of the backward-facing surface defined between a rounded edge, defined at the first end and corresponding to the first pin hole, and the second end is less than a length of the forward-facing surface.

14. A clapper valve assembly, comprising:

a valve body defining a longitudinal flow bore;

a hanger disposed in the valve body and including a slot;

a link piece coupled to the hanger;

a first pin coupled between the hanger and the link piece,

wherein the link piece is configured to rotate, relative to the hanger, about the first pin;

a clapper coupled to the link piece; and

a second pin coupled between the link piece and the clapper,

wherein the clapper is configured to rotate, relative to the link piece, about the second pin, and

wherein a fit between the first pin and the slot of the hanger has greater clearance than a fit between the second pin and a pin hole of the clapper.

15. The clapper valve assembly of claim 14 , wherein the link piece and the clapper are configured to rotate independently of each other.

16. The clapper valve assembly of claim 15 , wherein the independent rotation of the link piece and the clapper causes linear movement of the clapper.

17. The clapper valve assembly of claim 14 , wherein the first and second pins are disposed parallel to each other, and wherein the second pin is nearer a centerline of the longitudinal flow bore, compared to the first pin, when the clapper is in a closed position.

18. The clapper valve assembly of claim 14 , wherein the clapper includes:

a clapper body,

wherein the pin hole is defined in the clapper body, and

wherein the pin hole is configured to receive the second pin; and

a seal coupled to the clapper body.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2023
From: FULLER, NADIYA V.; WITKOWSKI, BRIAN C.
To: SPM OIL & GAS INC.
Reel/Frame 064716/0859 →
Continuity (2)
Provisional Application 63378544 · Oct 6, 2022
Related Publication 20240117889A1 · Apr 11, 2024
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