IP Library Granted Patent US 10,807,913
Granted Patent B1
US 10,807,913 · App. 14/178,251 · Granted Oct 20, 2020

Leached superabrasive elements and leaching systems methods and assemblies for processing superabrasive elements

Inventors: Joshua Adam Hawks (Saratoga Springs, UT); Ryan LeRoy Woodland (Eagle Mountain, UT); Jason Keith Wiggins (Draper, UT); David Paul Miess (Highland, UT); Mark Pehrson Chapman (Provo, UT); Trevor Allen Olsen (Pleasant Grove, UT); Trent Neil Butcher (Sandy, UT); Michael James Gleason (Orem, UT); Matthew Sinclair Brown (Provo, UT); Julie Ann Kidd (North Ogden, UT)
Assignee: US Synthetic Corporation
C04B35/52C04B35/622E21B10/567F16C33/043
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Quick Facts
Patent No.
US 10,807,913
App. No.
14/178,251
Granted
Oct 20, 2020
Kind
B1
Abstract

A polycrystalline diamond element includes a polycrystalline diamond table having a body of bonded diamond particles with interstitial regions. A first volume of the body includes an interstitial material and a second volume of the body has a lower concentration of interstitial material within the interstitial regions than the first volume. The polycrystalline diamond element includes an element face and a peripheral surface. The first volume is adjacent to a central portion of the element face and the second volume is adjacent to the peripheral surface. A method of processing a polycrystalline diamond element includes forming a concave region in the polycrystalline diamond element, exposing at least a portion of the concave region to a leaching solution, and removing at least a portion of the polycrystalline diamond material that was exposed to the leaching solution from the polycrystalline diamond element.

Claims (37)

1. A polycrystalline diamond element, comprising: a polycrystalline diamond table comprising:

a rear surface;

an element face disposed away from the rear surface;

a body of bonded diamond particles with interstitial regions;

a first volume of the body comprising an interstitial material within the interstitial regions;

a second volume of the body having a lower concentration of interstitial material within the interstitial regions than the first volume;

a recess at least partially defined by the element face;

a protruding portion comprising an end surface that surrounds an entire periphery of the recess and that is disposed further from the rear surface of the polycrystalline diamond table than the element face;

a peripheral surface extending around an outer periphery of the polycrystalline diamond table and extending from the rear surface of the polycrystalline diamond table to the end surface of the protruding portion.

2. The polycrystalline diamond element of claim 1 , wherein a boundary region between the first volume and the second volume extends from the peripheral surface.

3. The polycrystalline diamond element of claim 1 , wherein the first volume defines a concave region at a boundary region between the first volume and the second volume.

4. The polycrystalline diamond element of claim 1 , wherein:

a central portion of the element face is defined by the first volume;

an outer portion of the element face surrounding the central portion of the element face is defined by the second volume.

5. The polycrystalline diamond element of claim 1 , wherein a majority of the element face is defined by the first volume.

6. The polycrystalline diamond element of claim 1 , further comprising a substrate bonded to the polycrystalline diamond table.

7. The polycrystalline diamond element of claim 1 , wherein the recess does not extend to the peripheral surface.

8. The polycrystalline diamond element of claim 1 , wherein the first volume extends between the recess and a central portion of the element face.

9. The polycrystalline diamond element of claim 1 , wherein the first volume extends between the recess and the peripheral surface.

10. The polycrystalline diamond element of claim 1 , wherein the protruding portion defines an arcuate periphery of the recess.

11. The polycrystalline diamond element of claim 1 , wherein a boundary region between the first volume and the second volume extends away from the element face.

12. The polycrystalline diamond element of claim 1 , wherein the protruding portion surrounding the recess includes at least a portion of the second volume.

13. The polycrystalline diamond element of claim 1 , wherein at least one of the element face and the end surface of the protruding portion is planar.

14. The polycrystalline diamond element of claim 1 , wherein a portion of the peripheral surface peripherally surrounds the protruding portion and the recess.

15. The polycrystalline diamond element of claim 1 , further comprising a chamfer extending between the end surface of the protruding portion and the peripheral surface;

wherein the second volume is adjacent to the chamfer.

16. The polycrystalline diamond element of claim 15 , wherein:

the polycrystalline diamond element is centered about a central axis;

wherein a percentage ratio of a diameter of a central portion of the element face defined by the first volume to a diameter of an intersection of the end surface of the protruding portion and the chamfer, relative to the central axis, is greater than about 10%.

17. The polycrystalline diamond element of claim 15 , wherein the depth, in a direction perpendicular to the chamfer, of the second volume from the chamfer is greater than a depth, in a direction perpendicular to the element face, of the second volume from the element face.

18. The polycrystalline diamond element of claim 15 , wherein a boundary region between the first volume and the second volume extends from about an intersection of the peripheral surface and the chamfer.

19. The polycrystalline diamond element of claim 15 , wherein the end surface of the protruding portion comprises an annular surface extending between the recess and the chamfer.

20. The polycrystalline diamond element of claim 1 , wherein:

the polycrystalline diamond element is centered about a central axis;

wherein a percentage ratio of a diameter of a central portion of the element face defined by the first volume to a diameter of the peripheral surface of the polycrystalline diamond table, relative to the central axis, is greater than about 10%.

21. The polycrystalline diamond element of claim 20 , wherein the percentage ratio of the diameter of the central portion of the element face defined by the first volume to the diameter of the peripheral surface of the polycrystalline diamond table, relative to the central axis, is between about 15% to about 40%.

22. The polycrystalline diamond element of claim 20 , wherein the percentage ratio of the diameter of the central portion of the element face defined by the first volume to the diameter of the peripheral surface of the polycrystalline diamond table, relative to the central axis, is between about 20% to about 35%.

Assignments (3)
SECURITY INTEREST Recorded Jul 18, 2025
From: US SYNTHETIC CORPORATION
To: KEYBANK NATIONAL ASSOCIATION
Reel/Frame 074973/0089 →
SECURITY AGREEMENT Recorded May 9, 2018
From: APERGY (DELAWARE) FORMATION, INC.; APERGY BMCS ACQUISITION CORP.; APERGY ENERGY AUTOMATION, LLC; HARBISON-FISCHER, INC.; NORRISEAL-WELLMARK, INC.; PCS FERGUSON, INC.; QUARTZDYNE, INC.; SPIRIT GLOBAL ENERGY SOLUTIONS, INC.; US SYNTHETIC CORPORATION; WINDROCK, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 046117/0015 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2014
From: HAWKS, JOSHUA ADAM; WOODLAND, RYAN LEROY; WIGGINS, JASON KEITH; MIESS, DAVID PAUL; CHAPMAN, MARK PEHRSON; OLSEN, TREVOR ALLEN; BUTCHER, TRENT NEIL; GLEASON, MICHAEL JAMES; BROWN, MATTHEW SINCLAIR; KIDD, JULIE ANN
To: US SYNTHETIC CORPORATION
Reel/Frame 032199/0190 →
Cited By (4)
US 12,281,541 US 12,326,170 US 12,492,725 US 12,709,947