IP Library Granted Patent US 9,051,795
Granted Patent B2
US 9,051,795 · App. 14/089,385 · Granted Jun 9, 2015

Downhole drill bit

Inventors: David R. Hall (Provo, UT); John D. Bailey (Spanish Fork, UT); Ronald B. Crockett (Payson, UT)
Assignee: Schlumberger Technology Corporation
E21B10/5735
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,051,795
App. No.
14/089,385
Granted
Jun 9, 2015
Kind
B2
Abstract

A downhole cutting tool may include a tool body; a plurality of blades extending from the tool body; a first blade comprising at least one pointed cutting element thereon, the at least one pointed cutting element comprising a first polycrystalline diamond material on a first carbide substrate, the first polycrystalline diamond material extending away from the first carbide substrate to terminate in a substantially pointed geometry opposite the first carbide substrate; a second blade comprising at least one shear cutting element, the at least one shear cutting element comprising a second polycrystalline diamond material on a second carbide substrate, the second polycrystalline diamond material forming a planar cutting surface opposite the substrate; wherein, when the first blade and the second blade are superimposed on each other, a central axis of the at least one pointed cutting element is offset from a central axis of the at least one shear cutting element.

Claims (49)

1. A downhole cutting tool, comprising:

a tool body;

a plurality of blades extending from the tool body;

a first blade comprising at least one pointed cutting element disposed along a leading edge of the first blade, the at least one pointed cutting element comprising a first polycrystalline diamond material on a first carbide substrate, the first polycrystalline diamond material extending away from the first carbide substrate to terminate in a substantially pointed geometry opposite the first carbide substrate; and

a second blade comprising at least one shear cutting element disposed along a leading edge of the second blade, the at least one shear cutting element comprising a second polycrystalline diamond material on a second carbide substrate, the second polycrystalline diamond material forming a planar cutting surface opposite the substrate;

wherein, when the first blade and the second blade are superimposed on each other, a central axis of the at least one pointed cutting element is offset from a central axis of the at least one shear cutting element.

2. The downhole cutting tool of claim 1 , wherein the first polycrystalline diamond material has a thickness measured from an outer surface of the pointed cutting element to an interface with first carbide substrate, the thickness being greatest at an apex of the pointed cutting element.

3. The downhole cutting element of claim 1 , wherein the first blade is positioned adjacent to the second blade.

4. The downhole cutting element of claim 1 , wherein the central axis of the at least one pointed cutting element is radially offset from a central axis of the at least one shear cutting element.

5. The downhole cutting element of claim 1 , wherein the central axis of the at least one pointed cutting element is angled relative to the central axis of the at least one shear cutting element.

6. The downhole cutting tool of claim 1 , wherein the substantially pointed geometry comprises a side wall that tangentially joins an apex having a radius of curvature.

7. The downhole cutting tool of claim 1 , wherein the pointed cutting element and the shear cutting element comprise different rake angles.

8. The downhole cutting tool of claim 1 , wherein the downhole cutting tool is a fixed cutter drill bit having the plurality of blades extending from a bit body.

9. A downhole cutting tool, comprising:

a tool body;

a plurality of blades extending from the tool body; and

a plurality of cutting elements on the plurality of blades, the plurality of cutting elements including at least one pointed cutting element and at least one shear cutting element,

the at least one pointed cutting element comprising a first polycrystalline diamond material on a first carbide substrate, the first polycrystalline diamond material extending away from the first carbide substrate to terminate in a substantially pointed geometry opposite the first carbide substrate; and

the at least one shear cutting element comprising a second polycrystalline diamond material on a second carbide substrate, the second polycrystalline diamond material forming a planar cutting surface opposite the substrate;

wherein, when the plurality of blades are superimposed on each other, a central axis of at least one pointed cutting element is radially between a central axis of least two shear cutting elements.

10. The downhole cutting tool of claim 9 , wherein the first polycrystalline diamond material has a thickness measured from an outer surface of the pointed cutting element to an interface with first carbide substrate, the thickness being greatest at an apex of the pointed cutting element.

11. The downhole cutting element of claim 9 , wherein the central axis of the at least one pointed cutting element is angled relative to the central axis of the at least one shear cutting element.

12. The downhole cutting tool of claim 9 , wherein the substantially pointed geometry comprises a side wall that tangentially joins an apex having a radius of curvature.

13. The downhole cutting tool of claim 9 , wherein the pointed cutting element and the shear cutting element comprise different rake angles.

14. The downhole cutting tool of claim 9 , wherein the downhole cutting tool is a fixed cutter drill bit having the plurality of blades extending from a bit body.

15. A downhole cutting tool, comprising:

a tool body;

a plurality of blades extending from the tool body; and

a plurality of cutting elements on the plurality of blades, the plurality of cutting elements including at least one pointed cutting element and at least one shear cutting element,

the at least one pointed cutting element comprising a first polycrystalline diamond material on a first carbide substrate, the first polycrystalline diamond material extending away from the first carbide substrate to terminate in a substantially pointed geometry opposite the first carbide substrate; and

the at least one shear cutting element comprising a second polycrystalline diamond material on a second carbide substrate, the second polycrystalline diamond material forming a planar cutting surface opposite the substrate;

wherein, when the plurality of blades are superimposed on each other, a central axis of at least one shear cutting element is radially between a central axis of least two pointed cutting elements.

16. The downhole cutting tool of claim 15 , wherein the first polycrystalline diamond material has a thickness measured from an outer surface of the pointed cutting element to an interface with first carbide substrate, the thickness being greatest at an apex of the pointed cutting element.

17. The downhole cutting element of claim 15 , wherein the central axis of the at least one pointed cutting element is angled relative to the central axis of the at least one shear cutting element.

18. The downhole cutting tool of claim 15 , wherein the substantially pointed geometry comprises a side wall that tangentially joins an apex having a radius of curvature.

19. The downhole cutting tool of claim 15 , wherein the pointed cutting element and the shear cutting element comprise different rake angles.

20. The downhole cutting tool of claim 15 , wherein the downhole cutting tool is a fixed cutter drill bit having the plurality of blades extending from a bit body.

21. A downhole cutting tool, comprising:

a tool body;

a plurality of blades extending from the tool body;

a first blade comprising at least one pointed cutting element disposed along a leading edge of the first blade, the at least one pointed cutting element comprising a first polycrystalline diamond material on a first carbide substrate, the first polycrystalline diamond material extending away from the first carbide substrate to terminate in a substantially pointed geometry opposite the first carbide substrate; and

a second blade comprising at least one shear cutting element disposed along a leading edge of the second blade, the at least one shear cutting element comprising a second polycrystalline diamond material on a second carbide substrate, the second polycrystalline diamond material forming a planar cutting surface opposite the substrate;

wherein a central axis of a first pointed cutting element is oriented at a different angle from a central axis of a second pointed cutting element.

22. The downhole cutting tool, of claim 21 , wherein the first pointed cutting element and the second pointed cutting element are on the same blade.

23. The downhole cutting tool of claim 21 , wherein the central axis of the first pointed cutting element is tangent to its intended cutting path, and the central axis of the second pointed cutting element is angled relative to its intended cutting path.

24. The downhole cutting tool of claim 21 , wherein the first polycrystalline diamond material has a thickness measured from an outer surface of the pointed cutting element to an interface with first carbide substrate, the thickness being greatest at an apex of the pointed cutting element.

25. The downhole cutting tool of claim 21 , wherein the substantially pointed geometry comprises a side wall that tangentially joins an apex having a radius of curvature.

26. The downhole cutting tool of claim 21 , wherein the pointed cutting element and the shear cutting element comprise different rake angles.

27. The downhole cutting tool of claim 21 , wherein the downhole cutting tool is a fixed cutter drill bit having the plurality of blades extending from a bit body.

Continuity (17)
Continuation 11861641 · Sep 26, 2007
Continuation In Part 11829577 · Jul 27, 2007
Continuation In Part 11766975 · Jun 22, 2007
Continuation In Part 11774227 · Jul 6, 2007
Continuation In Part 11773271 · Jul 3, 2007
Continuation In Part 11766903 · Jun 22, 2007
Continuation 11766865 · Jun 22, 2007
Continuation In Part 11742304 · Apr 30, 2007
Continuation 11742261 · Apr 30, 2007
Continuation In Part 11464008 · Aug 11, 2006
Continuation In Part 11463998 · Aug 11, 2006
Continuation In Part 11463990 · Aug 11, 2006
Continuation In Part 11463975 · Aug 11, 2006
Continuation In Part 11463962 · Aug 11, 2006
Continuation In Part 11695672 · Apr 3, 2007
Continuation In Part 11686831 · Mar 15, 2007
Related Publication 20140196959A1 · Jul 17, 2014