IP Library › Granted Patent US 11,156,221
Granted Patent B2
US 11,156,221 · App. 17/098,885 · Granted Oct 26, 2021

Valve seats and valve assemblies for fluid end applications

Inventors: Roger M. Stark (Jefferson Hills, PA); Carrie Bartkowiak (Traverse City, MI); John Brosnahan (North Huntingdon, PA); Michael Kelly (Anaheim, CA)
Assignee: KENNAMETAL INC
F04B53/1087F04B1/0452F04B39/10F16K1/42F16K17/0466F16K25/005C22C19/055C22C29/067C22C29/08F04B15/02F04B37/12F04B53/16
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Quick Facts
Patent No.
US 11,156,221
App. No.
17/098,885
Granted
Oct 26, 2021
Kind
B2
Abstract

In one aspect, valve seats are described herein having structure and design addressing degradative stresses encountered by the seats during installation and operation in fluid ends. In some embodiments, a valve seat for use in a fluid end comprises a first section for insertion into a fluid passageway of the fluid end and a second section extending longitudinally from the first section, the second section comprising a frusto-conical valve mating surface, wherein the second section is encased in a ring imparting a compressive stress condition to the second section.

Claims (20)

1. A valve seat for use in a fluid end comprising:

a body including a first section for insertion into a fluid passageway of the fluid end and a second section extending longitudinally from the first section, the second section comprising a recess in which a sintered cemented carbide inlay is positioned, wherein the sintered cemented carbide inlay comprises a valve mating surface and exhibits a compressive stress condition of at least 0.5 GPa.

2. The valve seat of claim 1 , wherein the valve mating surface of the sintered cemented carbide inlay has surface roughness (R a ) of 1-15 μm.

3. The valve seat of claim 1 , wherein the valve mating surface of the sintered cemented carbide inlay is frusto-conical.

4. The valve seat of claim 1 , wherein the second section imparts the compressive stress condition to the sintered cemented carbide inlay.

5. The valve seat of claim 1 , wherein the body is formed of metal or alloy.

6. The valve seat of claim 1 , wherein outer diameter of the first section is equal to an outer diameter of the second section.

7. The valve seat of claim 1 , wherein outer diameters of the first and second sections are not equal.

8. The valve seat of claim 7 , wherein the outer diameter of the second section is greater than the outer diameter of the first section.

9. The valve seat of claim 1 , wherein the compressive stress condition of the sintered cemented carbide inlay is 1-2.5 GPa.

10. A fluid end comprising:

a suction fluid passageway and a discharge fluid passageway; and

a valve assembly in at least one of the suction and discharge fluid passageways, the valve assembly comprising a valve in reciprocating contact with a valve seat, the valve seat comprising a body including a first section for insertion into the suction or discharge fluid passageway and a second section extending longitudinally from the first section, the second section comprising a recess in which a sintered cemented carbide inlay is positioned, wherein the sintered cemented carbide inlay comprises a valve mating surface and exhibits a compressive stress condition greater than 0.5 GPa.

11. The fluid end of claim 10 , wherein the valve mating surface of the sintered cemented carbide inlay has surface roughness (R a ) of 1-15 μm.

12. The fluid end of claim 10 , wherein the body is formed of metal or alloy.

13. The fluid end of claim 10 , wherein outer diameter of the first section is equal to an outer diameter of the second section.

14. The fluid end of claim 10 , wherein outer diameters of the first and second sections are not equal.

15. The fluid end of claim 14 , wherein the outer diameter of the second section is greater than the outer diameter of the first section.

16. The fluid end of claim 10 , wherein the compressive stress condition of the sintered cemented carbide inlay is at least 1 GPa.

17. The fluid end of claim 10 , wherein the compressive stress condition of the sintered cemented carbide inlay is 1-2.5 GPa.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2021
From: STARK, ROGER M.; BARTKOWIAK, CARRIE; BROSNAHAN, JOHN; KELLY, MICHAEL
To: KENNAMETAL INC.
Reel/Frame 055270/0061 →
Continuity (3)
Continuation 16050909 · Jul 31, 2018
Continuation In Part 15875758 · Jan 19, 2018
Related Publication 20210062805A1 · Mar 4, 2021
Cited By (19)
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