IP Library Granted Patent US 7,963,348
Granted Patent B2
US 7,963,348 · App. 11/870,493 · Granted Jun 21, 2011

Expandable earth boring apparatus using impregnated and matrix materials for enlarging a borehole

Assignee: Smith International, Inc.
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Quick Facts
Patent No.
US 7,963,348
App. No.
11/870,493
Granted
Jun 21, 2011
Kind
B2
Abstract

A tool for enlarging a borehole that includes an elongated tubular body; at least one movable arm affixed to the tubular body, the at least one movable arm comprising an outer surface formed of at least one of a matrix material and an abrasive material; and at least one actuating member for expanding at least one movable arm from the collapsed state to an expanded state is disclosed.

Claims (43)

1. A tool for enlarging a borehole, comprising:

an elongated tubular body;

at least one movable arm affixed to the tubular body, the at least one movable arm comprising:

an outer surface formed of a tungsten carbide matrix material and abrasive particles impregnated in the tungsten carbide matrix material;

a body; and

at least one rib affixed to the body of the movable arm comprising the outer surface of the at least one moveable arm; and

at least one actuating member for expanding at least one movable arm from a collapsed state to an expanded state.

2. The tool of claim 1 , wherein the at least one rib is formed of a diamond impregnated matrix material.

3. The tool of claim 1 , wherein the body of the movable arm is formed of a matrix material.

4. The tool of claim 1 , wherein the body of the movable arm is formed of steel.

5. The tool of claim 1 , wherein the at least one movable arm further comprises:

a plurality of splines affixed to the body of the movable arm connecting the at least one moveable arm to the tubular body.

6. The tool of claim 1 , wherein at least one diamond impregnated insert is affixed to the outer surface of the at least one movable arm.

7. The tool of claim 1 , wherein at least one cutting element selected from a PDC cutter, a TSP cutter, a PCBN cutter, a PDC shearing disc, or a TSP shearing disc is affixed to the outer surface of the at least one movable arm.

8. The tool of claim 1 , wherein the matrix material comprises at least one tungsten carbide and a binder material.

9. The tool of claim 1 , wherein the abrasive particles are selected from the group consisting of synthetic diamond, natural diamond, reclaimed natural or synthetic diamond grit, silicon carbide, aluminum oxide, tool steel, boron carbide, cubic boron nitride (CBN), thermally stable polycrystalline diamond (TSP), and combinations thereof.

10. The tool of claim 1 , wherein the tubular body has at least one axial recess therein.

11. The tool of claim 10 , wherein the at least one movable arm is stored in the axial recess during the collapsed state.

12. The tool of claim 1 , wherein the at least one movable arm expands from the tubular body radially.

13. The tool of claim 1 , wherein the at least one moveable arm expands from the tubular body axially.

14. The tool of claim 1 , wherein the at least one moveable arm expands from the tubular body on a pivot.

15. The tool of claim 1 , wherein the at least one actuating member expands the at least one movable arm by hydraulic actuation.

16. The tool of claim 1 , wherein the at least one actuating member expands the at least one movable arm by mechanical actuation.

17. The tool of claim 1 , wherein the tungsten carbide matrix material comprises tungsten carbide particles and a binder material, wherein the binder material binds adjacent tungsten carbide particles together to form a continuous matrix material.

18. A method of underreaming a wellbore through a formation to form an enlarged borehole, comprising:

using a drill bit to drill the wellbore;

disposing an expandable tool having at least one movable arm configured for reaming above the drill bit, the at least one movable arm comprising an outer surface formed of a tungsten carbide matrix material and abrasive particles impregnated in the tungsten carbide matrix material; a body; and at least one rib affixed to the body of the movable arm comprising the outer surface of the at least one moveable arm;

expanding the at least one movable arm so that the outer surface of the at least one moveable arm interacts with the formation; and

using the at least one movable arm to form the enlarged borehole.

19. The method of claim 18 , wherein the expanding comprises mechanically actuating the at least one movable arm to expand to an expanded state.

20. The method of claim 18 , wherein the expanding comprises hydraulically actuating the at least one movable arm to expand to an expanded state.

21. A tool for enlarging a borehole, comprising:

an elongated tubular body;

at least one movable arm affixed to the tubular body, the at least one movable arm comprising:

an outer surface formed of a tungsten carbide matrix material and abrasive particles impregnated in the tungsten carbide matrix material

a body; and

at least one rib affixed to the body of the movable arm comprising the outer surface of the at least one movable arm;

at least one diamond impregnated insert affixed to the outer surface of the at least one movable arm; and

at least one actuating member for expanding at least one movable arm from a collapsed state to an expanded state.

22. The tool of claim 21 , wherein at least one cutting element selected from the group consisting of a PDC cutter, a TSP cutter, a PCBN cutter, a PDC shearing disc, and a TSP shearing disc is affixed to the outer surface of the at least one movable arm.

23. The tool of claim 21 , wherein the at least one rib is formed of a diamond impregnated matrix material.

24. The tool of claim 21 , wherein the at least one movable arm further comprises:

a plurality of splines affixed to the body connecting the at least one movable arm to the tubular body.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2007
From: LAIRD, TOMMY; MAKKAR, NAVISH
To: SMITH INTERNATIONAL, INC.
Reel/Frame 019946/0906 →
Continuity (1)
Related Publication 20090095532A1 · Apr 16, 2009