IP Library › Granted Patent US 11,231,111
Granted Patent B2
US 11,231,111 · App. 16/411,898 · Granted Jan 25, 2022

Pump valve seat with supplemental retention

Inventors: Justin Lee Hurst (Healdton, OK); James Alan Olis (Duncan, OK); Joseph A. Beisel (Duncan, OK)
Assignee: Halliburton Energy Services, Inc.
F16K3/0272F04B53/1087F16K1/427
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Quick Facts
Patent No.
US 11,231,111
App. No.
16/411,898
Granted
Jan 25, 2022
Kind
B2
Abstract

A valve seat comprising a primary retention component to retain the valve seat in a valve seat housing upon seating of the valve seat in the valve seat housing, and a secondary retention component to at least temporarily retain the valve seat in the valve seat housing during seating of the valve seat in the valve seat housing, whereafter the valve seat is primarily retained in the valve seat housing via the primary retention component.

Claims (47)

1. A valve seat comprising:

a primary retention component to retain the valve seat in a valve seat housing upon seating of the valve seat in the valve seat housing, wherein the primary retention component comprises a locking taper outer diameter (OD), wherein the locking taper OD extends an entire axial length of the valve seat along a central axis thereof and is tapered along the entire axial length; and

a secondary retention component to at least temporarily retain the valve seat in the valve seat housing during seating of the valve seat in the valve seat housing, whereafter the valve seat is primarily retained in the valve seat housing via the primary retention component,

wherein the valve seat housing comprises part of a reciprocating element or part of a pump fluid end body and wherein the secondary retention component comprises a groove about an outer circumference of the locking taper OD.

2. The valve seat of claim 1 , wherein the groove is designed to receive a tab of the valve seat housing, wherein the tab extends inward toward the central axis.

3. The valve seat of claim 2 , wherein a height of the groove along a direction parallel to a central axis of the valve seat is greater than a height of the tab along the direction parallel to the central axis of the valve seat when the valve seat is seated in the valve seat housing, such that the valve seat may move an axial distance adequate to fully seat the valve seat within the valve seat housing during seating of the valve seat in the valve seat housing whereafter the valve seat is primarily retained in the valve seat housing via the primary retention component.

4. The valve seat of claim 1 , wherein the groove is continuous about the outer circumference of the locking taper OD, and wherein the groove is configured for positioning of a snap ring or a staking component in the groove between the valve seat housing and the valve seat.

5. The valve seat of claim 1 , wherein the groove is configured to receive a roll pin passing through the valve seat housing.

6. A pump fluid end comprising:

a valve seat housing; and

a valve seat comprising:

a primary retention component to retain the valve seat in the valve seat housing upon seating of the valve seat in the valve seat housing, wherein the primary retention component comprises a locking taper outer diameter (OD), wherein the locking taper OD extends an entire axial length of the valve seat along a central axis thereof and is tapered along the entire axial length; and

a secondary retention component to at least temporarily retain the valve seat in the valve seat housing during seating of the valve seat in the valve seat housing via the primary retention component,

wherein the valve seat housing comprises part of a reciprocating element or part of a pump fluid end body and wherein the secondary retention component comprises a groove about an outer circumference of the locking taper OD.

7. The pump fluid end of claim 6 , wherein the valve seat housing comprises a tab about an inner circumference thereof, wherein the tab extends inward toward the central axis and is located for positioning of the tab within the groove of the valve seat during seating of the valve seat in the valve seat housing.

8. The pump fluid end of claim 7 , wherein a height of the groove along a direction parallel to a central axis of the valve seat is greater than a height of the tab along the direction parallel to the central axis of the valve seat when the valve seat is seated in the valve seat housing, such that the valve seat may move axially a distance adequate to fully seat the valve seat within the valve seat housing during seating of the valve seat in the valve seat housing whereafter the valve seat is primarily retained in the valve seat housing via the primary retention component.

9. The pump fluid end of claim 6 , wherein the secondary retention component further comprises a snap ring or a staking component in the groove between the valve seat housing and the valve seat, or a roll pin, a screw, a dowel pin, a rivet, a threaded fastener, or a combination thereof passing through a part of the valve seat housing and into the groove.

10. A method of seating a valve seat in a valve seat housing of a pump fluid end, the method comprising:

prior to fully seating the valve seat in the valve seat housing, whereafter the valve seat is retained in the valve seat housing primarily by a primary retention component, temporarily retaining the valve seat in the valve seat housing via a secondary retention component disparate from the primary retention component,

wherein the primary retention component comprises a locking taper outer diameter (OD), wherein the locking taper OD extends an entire axial length of the valve seat along a central axis thereof and is tapered along the entire axial length,

wherein fully seating the valve seat in the valve seat housing comprises contacting the valve seat housing with a surface of the valve seat opposite a valve body contact surface of the valve seat, wherein the valve body contact surface of the valve seat is a surface of the valve seat configured to contact a valve body of a valve assembly comprising the valve seat and the valve body when the valve assembly is closed, and

wherein the valve seat housing comprises part of a reciprocating element or part of a pump fluid end body, wherein the secondary retention component comprises a groove about an outer circumference of the locking taper OD, and wherein temporarily retaining the valve seat in the valve seat housing comprises positioning an insertion component at least partially in the groove between the valve seat housing and the valve seat.

11. The method of claim 10 , wherein the insertion component comprises a tab or a staking component of the valve seat housing that extends inward toward the central axis.

12. The method of claim 11 , wherein the tab is continuous or discontinuous about the outer circumference of the locking taper OD when the tab is positioned in the groove between the valve seat housing and the valve seat.

13. The method of claim 11 , wherein a height of the groove along a direction parallel to a central axis of the valve seat is greater than a height of the tab along the direction parallel to the central axis of the valve seat when the valve seat is seated in the valve seat housing, such that the valve seat may move axially a distance adequate to fully seat the valve seat within the valve seat housing during seating of the valve seat in the valve seat housing whereafter the valve seat is primarily retained in the valve seat housing via the primary retention component.

14. The method of claim 10 , wherein the insertion component comprises a snap ring or a staking component positioned in the groove between the valve seat housing and the valve seat, or a roll pin, a screw, a dowel pin, a rivet, a threaded fastener, or a combination thereof passing through a part of the valve seat housing and into the groove.

15. A valve seat comprising:

a primary retention component to retain the valve seat in a valve seat housing upon seating of the valve seat in the valve seat housing, wherein the primary retention component comprises a locking taper outer diameter (OD), wherein the locking taper OD extends an entire axial length of the valve seat along a central axis thereof and is tapered along the entire axial length; and

a secondary retention component to at least temporarily retain the valve seat in the valve seat housing during seating of the valve seat in the valve seat housing, whereafter the valve seat is primarily retained in the valve seat housing via the primary retention component,

wherein the valve seat housing comprises part of a reciprocating element or part of a pump fluid end body,

wherein seating of the valve seat in the valve seat housing indicates that a valve seat housing contact surface of the valve seat distal a valve body contact surface of the valve seat contacts a valve seat contact surface of the valve seat housing, and

wherein the valve seat housing contact surface of the valve seat distal the valve body contact surface of the valve seat and the valve seat contact surface of the valve seat housing that contacts the valve seat housing contact surface of the valve seat distal the valve body contact surface of the valve seat upon seating are each perpendicular to the central axis.

16. A pump fluid end comprising:

a valve seat housing; and

a valve seat comprising:

a primary retention component to retain the valve seat in the valve seat housing upon seating of the valve seat in the valve seat housing, wherein the primary retention component comprises a locking taper outer diameter (OD), wherein the locking taper OD extends an entire axial length of the valve seat along a central axis thereof and is tapered along the entire axial length; and

a secondary retention component to at least temporarily retain the valve seat in the valve seat housing during seating of the valve seat in the valve seat housing via the primary retention component,

wherein the valve seat housing comprises part of a reciprocating element or part of a pump fluid end body,

wherein seating of the valve seat in the valve seat housing indicates that a valve seat housing contact surface of the valve seat distal a valve body contact surface of the valve seat contacts a valve seat contact surface of the valve seat housing, and

wherein the valve seat housing contact surface of the valve seat distal the valve body contact surface of the valve seat and the valve seat contact surface of the valve seat housing that contacts the valve seat housing contact surface of the valve seat distal the valve body contact surface of the valve seat upon seating are each perpendicular to the central axis.

17. A method of seating a valve seat in a valve seat housing of a pump fluid end, the method comprising:

prior to fully seating the valve seat in the valve seat housing, whereafter the valve seat is retained in the valve seat housing primarily by a primary retention component, temporarily retaining the valve seat in the valve seat housing via a secondary retention component disparate from the primary retention component,

wherein the primary retention component comprises a locking taper outer diameter (OD), wherein the locking taper OD extends an entire axial length of the valve seat along a central axis thereof and is tapered along the entire axial length,

wherein fully seating the valve seat in the valve seat housing comprises contacting the valve seat housing with a surface of the valve seat opposite a valve body contact surface of the valve seat,

wherein the valve body contact surface of the valve seat is a surface of the valve seat configured to contact a valve body of a valve assembly comprising the valve seat and the valve body when the valve assembly is closed,

wherein the valve seat housing comprises part of a reciprocating element or part of a pump fluid end body, and

wherein the valve seat housing contact surface of the valve seat distal the valve body contact surface of the valve seat and the valve seat contact surface of the valve seat housing that contacts the valve seat housing contact surface of the valve seat distal the valve body contact surface of the valve seat upon seating are each perpendicular to the central axis.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2019
From: HURST, JUSTIN LEE; OLIS, JAMES ALAN; BEISEL, JOSEPH A.
To: HALLIBURTON ENERGY SERVICES, INC.
Reel/Frame 049186/0094 →
Continuity (1)
Related Publication 20200362970A1 · Nov 19, 2020
Cited By (20)
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