IP Library Granted Patent US 8,875,814
Granted Patent B2
US 8,875,814 · App. 13/457,009 · Granted Nov 4, 2014

Element containing thermally stable polycrystalline diamond material and methods and assemblies for formation thereof

Inventors: Brian Atkins (Houston, TX); Seth G. Anderle (Spring, TX); Robert W. Arfele (Magnolia, TX); Ram L. Ladi (Tomball, TX); Brandon Paul Linford (Draper, UT); Jason Keith Wiggins (Draper, UT); Kevin Duy Nguyen (Riverton, UT); Jiang Qian (Cedar Hills, UT); Kenneth Eugene Bertagnolli (Riverton, UT); Shawn Casey Scott (Payson, UT); Debkumar Mukhopadhyay (Sandy, UT); Michael Alexander Vail (Genola, UT)
Assignee: Halliburton Energy Services, Inc.
E21B10/5735
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Quick Facts
Patent No.
US 8,875,814
App. No.
13/457,009
Granted
Nov 4, 2014
Kind
B2
Abstract

The disclosure provides a super abrasive element containing a substantially catalyst-free thermally stable polycrystalline diamond (TSP) body having pores and a contact surface, a base adjacent the contact surface of the TSP body; and an infiltrant material infiltrated in the base and in the pores of the TSP body at the contact surface. The disclosure additionally provides earth-boring drill bits and other devices containing such super abrasive elements. The disclosure further provides methods and mold assemblies for forming such super abrasive elements via infiltration and hot press methods.

Claims (52)

1. A super abrasive element comprising:

a substantially catalyst-free thermally stable polycrystalline diamond (TSP) body having pores and a contact surface;

a base adjacent the contact surface of the TSP body; and

a non-catalyst alloy infiltrant material dispersed within the base as a binder for a matrix powder from which the base is formed and in the pores of the TSP body at the contact surface,

wherein the infiltrant material is infiltrated in the pores of the TSP body to a depth from the contact surface of 100 μm or less.

2. The super abrasive element according to claim 1 , wherein the substantially catalyst-free TSP body comprises polycrystalline diamond (PCD) from which at least 85% of the catalyst has been removed to form the pores.

3. The super abrasive element according to claim 1 , wherein the substantially catalyst-free thermally stable polycrystalline diamond TSP body comprises an acid-leached TSP body.

4. The super abrasive element according to claim 3 , wherein the acid-leached TSP body comprises a FeCl 3 -acid-leached TSP body.

5. The super abrasive element according to claim 1 , wherein the contact surface is a non-planar surface.

6. The super abrasive element according to claim 1 , wherein the base comprises a material selected from the group consisting of carbide, tungsten, tungsten carbide, synthetic diamond, natural diamond, or nickel, chromium, iron, copper, manganese, phosphorus, oxygen, zinc, tin, cadmium, lead, bismuth, tellurium, and any combinations thereof.

7. The super abrasive element according to claim 1 , wherein super abrasive element further comprises a carbide insert disposed in the base.

8. The super abrasive element according to claim 1 , wherein the non-catalyst alloy infiltrant material comprises a Group VIII metal alloy.

9. The super abrasive element according to claim 1 , wherein the super abrasive element is in the form of a cutter for an earth-boring drill bit.

10. A super abrasive element comprising:

a substantially catalyst-free thermally stable polycrystalline diamond (TSP) body having pores, a contact surface, and diamond grains having an average grain size;

a base adjacent the contact surface of the TSP body; and

an infiltrant material dispersed within the base as a binder for a matrix powder from which the base is formed and in the pores of the TSP body at the contact surface to a depth from the contact surface of 100 μm or less.

11. The super abrasive element according to claim 10 , wherein the substantially catalyst-free TSP body comprises polycrystalline diamond (PCD) from which at least 85% of the catalyst has been removed to form the pores.

12. The super abrasive element according to claim 10 , wherein the substantially catalyst-free thermally stable polycrystalline diamond TSP body comprises an acid-leached TSP body.

13. The super abrasive element according to claim 10 , wherein the acid-leached TSP body comprises a FeCl 3 -acid-leached TSP body.

14. The super abrasive element according to claim 10 , wherein the contact surface is a non-planar surface.

15. The super abrasive element according to claim 10 , wherein the base comprises a material selected from the group consisting of carbide, tungsten, tungsten carbide, synthetic diamond, natural diamond, or nickel, chromium, iron, copper, manganese, phosphorus, oxygen, zinc, tin, cadmium, lead, bismuth, tellurium, and any combinations thereof.

16. The super abrasive element according to claim 10 , wherein super abrasive element further comprises a carbide insert disposed in the base.

17. The super abrasive element according to claim 10 , wherein the infiltrant material comprises a Group VIII metal.

18. The super abrasive element according to claim 10 , wherein the super abrasive element is in the form of a cutter for an earth-boring drill bit.

19. An earth-boring drill bit comprising a cutter, the cutter comprising a super abrasive element comprising:

a substantially catalyst-free thermally stable polycrystalline diamond (TSP) body having pores and a contact surface;

a base adjacent the contact surface of the TSP body; and

a non-catalyst alloy infiltrant material dispersed within the base as a binder for a matrix powder from which the base is formed and in the pores of the TSP body at the contact surface,

wherein the infiltrant material is infiltrated in the pores of the TSP body to a depth from the contact surface of 100 μm or less.

20. The earth-boring drill bit according to claim 19 , wherein the substantially catalyst-free TSP body comprises polycrystalline diamond (PCD) from which at least 85% of the catalyst has been removed to form the pores.

21. The earth-boring drill bit according to claim 19 , wherein the substantially catalyst-free thermally stable polycrystalline diamond TSP body comprises an acid-leached TSP body.

22. The earth-boring drill bit according to claim 21 , wherein the acid-leached TSP body comprises a FeCl 3 -acid-leached TSP body.

23. The earth-boring drill bit according to claim 19 , wherein the contact surface is a non-planar surface.

24. The earth-boring drill bit according to claim 19 , wherein the base comprises a material selected from the group consisting of carbide, tungsten, tungsten carbide, synthetic diamond, natural diamond, or nickel, chromium, iron, copper, manganese, phosphorus, oxygen, zinc, tin, cadmium, lead, bismuth, tellurium, and any combinations thereof.

25. The earth-boring drill bit according to claim 19 , wherein super abrasive element further comprises a carbide insert disposed in the base.

26. The earth-boring drill bit according to claim 19 , wherein the non-catalyst alloy infiltrant material comprises a Group VIII metal alloy.

27. The earth-boring drill bit according to claim 19 , wherein the bit is fixed-cutter drill bit.

28. The earth-boring drill bit according to claim 19 , wherein the cutter comprises a rotatable and replaceable cutter.

29. An earth-boring drill bit comprising a cutter, the cutter comprising a super abrasive element comprising:

a substantially catalyst-free thermally stable polycrystalline diamond (TSP) body having pores, a contact surface, and diamond grains having an average grain size;

a base adjacent the contact surface of the TSP body; and

an infiltrant material dispersed within the base as a binder for a matrix powder from which the base is formed and in the pores of the TSP body at the contact surface to a depth from the contact surface of 100 μm or less.

30. The earth-boring drill bit according to claim 29 , wherein the substantially catalyst-free TSP body comprises polycrystalline diamond (PCD) from which at least 85% of the catalyst has been removed to form the pores.

31. The earth-boring drill bit according to claim 29 , wherein the substantially catalyst-free thermally stable polycrystalline diamond TSP body comprises an acid-leached TSP body.

32. The earth-boring drill bit according to claim 29 , wherein the acid-leached TSP body comprises a FeCl 3 -acid-leached TSP body.

33. The earth-boring drill bit according to claim 29 , wherein the contact surface is a non-planar surface.

34. The earth-boring drill bit according to claim 29 , wherein the base comprises a material selected from the group consisting of carbide, tungsten, tungsten carbide, synthetic diamond, natural diamond, or nickel, chromium, iron, copper, manganese, phosphorus, oxygen, zinc, tin, cadmium, lead, bismuth, tellurium, and any combinations thereof.

35. The earth-boring drill bit according to claim 29 , wherein super abrasive element further comprises a carbide insert disposed in the base.

36. The earth-boring drill bit according to claim 29 , wherein the infiltrant material comprises a Group VIII metal.

37. The earth-boring drill bit according to claim 29 , wherein the bit is fixed-cutter drill bit.

38. The earth-boring drill bit according to claim 29 , wherein the cutter comprises a rotatable and replaceable cutter.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2012
From: ATKINS, BRIAN; ANDRELE, SETH G.; ARFELE, ROBERT W.; LADI, RAM L.
To: HALLIBURTON ENERGY SERVICES, INC.
Reel/Frame 028113/0931 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2012
From: LINFORD, BRANDON PAUL; WIGGINS, JASON KEITH; NGUYEN, KEVIN DUY; QIAN, JIANG; BERTAGNOLLI, KENNETH EUGENE; SCOTT, SHAWN CASEY; MUKHOPADHYAY, DEBKUMAR; VAIL, MICHAEL ALEXANDER
To: US SYNTHETIC CORPORATION
Reel/Frame 028114/0249 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2012
From: US SYNTHETIC CORPORATION
To: HALLIBURTON ENERGY SERVICES, INC.
Reel/Frame 028114/0292 →
Continuity (2)
Continuation 13225134 · Sep 2, 2011
Related Publication 20130056284A1 · Mar 7, 2013