IP Library Granted Patent US 9,428,965
Granted Patent B2
US 9,428,965 · App. 14/290,597 · Granted Aug 30, 2016

Subsurface drilling tool

Inventor: Kevin Dewayne Jones (Clinton, OK)
E21B10/52E21B10/08E21B10/10E21B10/16E21B10/18E21B10/22E21B10/633
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Quick Facts
Patent No.
US 9,428,965
App. No.
14/290,597
Granted
Aug 30, 2016
Kind
B2
Abstract

An improved subsurface drilling tool comprises a shank having a cutting end opposite a pin end configured to attach to a drill string. A plurality of ear portions is associated with the proximate end of the shank and configured to form a socket. A ball-shaped cutting tool is configured to fit inside the socket and is rotatably attach to the ear portions via an axle. A locking pin may be installed within one or more of the ear portions and perpendicular to the axle. A plurality of blade inserts is connected to the ball-shaped cutting tool. The blade inserts may be removable and/or configurable to be oriented in varied directions. A series of milling courses may extend longitudinally along an outside length of the shank. A fluid course may extend longitudinally within the shank to deliver drilling fluid to the cutting end.

Claims (54)

1. A drill bit, comprising:

a shank, wherein the shank comprises a cutting end and an opposite pin end configured to be attached to a drill string;

a plurality of ear portions disposed proximate to the cutting end of the shank and configured to form a socket, at least one of the plurality of ear portions having a locking pin hole configured to receive a locking pin;

a ball-shaped cutting tool comprising a plurality of cones partially recessed within the socket;

milling courses separated by ridges extending outwardly from the shank, wherein the ridges have a planar surface substantially aligned with a plane separating the plurality of cones;

wherein the ball-shaped cutting tool is rotatably attached to the plurality of ear portions via an axle;

wherein the locking pin is perpendicular to the axle; and

wherein the plurality of cones rotates in opposite directions around the axle while the drill bit is drilling.

2. The drill bit of claim 1 , wherein a single one of the plurality of ear portions has the locking pin hole configured to receive the locking pin.

3. The drill bit of claim 1 , further comprising a plurality of holes covering an exterior of the ball-shaped cutting tool.

4. The drill bit of claim 3 , further comprising a plurality of blade inserts that fit inside the plurality of holes, wherein each blade insert comprises a cutting face and a trailing face separated by a blade edge, wherein the blade edges are configured to be oriented in varied directions.

5. The drill bit of claim 4 , wherein the plurality of blade inserts are metal-carbide.

6. The drill bit of claim 1 , wherein the ridges are disposed on opposite sides of the shank.

7. A drill bit, comprising:

a shank, wherein the shank comprises a cutting end opposite a pin end configured for attachment to a drill string;

a plurality of ear portions associated with the cutting end of the shank and configured to form a socket;

a ball-shaped cutting tool a plurality of cones partially recessed within the socket;

a plurality of blade inserts removably connected to each of the plurality of cones, wherein each of the plurality of blade inserts comprises a cutting face and a trailing face;

milling courses separated by ridges extending outwardly from the shank, wherein the ridges have a planar surface substantially aligned with a plane separating the plurality of cones;

wherein the ball-shaped cutting tool is rotatably attached to the plurality of ear portions via an axle; and

wherein the blade edges are configured to be selectively oriented in varied directions.

8. The drill bit of claim 7 , further comprising a plurality of holes covering an exterior of the ball-shaped cutting tool.

9. The drill bit of claim 8 , wherein the ridges are disposed on opposite sides of the shank.

10. The drill bit of claim 8 , further comprising a locking pin perpendicular to the axle to lock the plurality of concave cones in a set position.

11. The drill bit of claim 10 , further comprising a fluid course extending longitudinally from the open pin end, through the shank, to the cutting end for drilling fluid to transfer through the shank.

12. The drill hit of claim 7 wherein the plurality of blade inserts are configured to rotate within each of the plurality of concave cones of the ball-shaped cutting tool.

13. The drill bit of claim 12 , wherein the plurality of blade inserts are meta carbide.

14. A method of subsurface drilling, comprising:

providing a drill bit comprising:

a) a shank having a cutting end, a pin end opposite the cutting end and configured to attach to a drill string, and a fluid course extending from the pin end through an interior of the shank;

b) a plurality of ear portions disposed proximate to the cutting end of the shank, and configured to form a socket;

c) a ball-shaped cutting tool comprising a plurality of cones configured to be partially recessed inside the socket, and rotatably attached to the plurality of ear portions via an axle; and

d) milling courses separated by a ridge extending longitudinally along an outside length of opposite surfaces of the shank disposed between the plurality of ear portions, wherein the milling courses and the ridge comprise planar surfaces;

attaching the drill bit to the drill string;

inserting the drill bit into the material to be drilled;

starting to drill; and

removing material from drilling through the milling courses.

15. The method of claim 14 , further comprising the steps of:

inserting a plurality of removable blade inserts into the ball-shaped cutting tool, wherein each of the plurality of removable blade inserts is associated with one of a plurality of holes covering an exterior of the ball-shaped cutting tool; and

orienting the removable blade inserts in a plurality of directions.

16. The method of claim 15 , further comprising the step of:

providing fluid from a fluid source through the fluid course to the plurality of removable blade inserts.

17. The method of claim 16 , further comprising the step of:

inserting a locking pin into one of the plurality of ear portions and the axle to lock the plurality of cones.

18. The method of claim 14 wherein the planar surface of the ridge is substantially aligned with a plane separating the plurality of cones.

19. A drill bit, comprising:

a shank, wherein the shank comprises a cuffing end and an opposite pin end configured to be attached to a drill string;

a plurality of ear portions disposed proximate to the cutting end of the shank and configured to form a socket, at least one of the plurality of ear portions having a locking pin hole configured to receive a locking pin;

a ball-shaped cutting tool comprising a plurality of cones;

a series of milling courses extending longitudinally along the outside length of the shank, wherein the series of milling courses are separated by ridges extending outwardly from opposite sides of the shank, wherein the milling courses and the ridges comprise planar surfaces;

wherein the ball-shaped cutting tool is configured to fit inside the socket and is rotatably attached to the plurality of ear portions via an axle;

wherein the locking pin is perpendicular to the axle; and

wherein the plurality of cones rotates in opposite directions around the axle while the drill bit is drilling.

20. The drill bit of claim 19 , further comprising a fluid course extending longitudinally from the pin end through the shank to deliver drilling fluid to a portion of the plurality of cones proximate to the pin end.

Assignments (1)
SECURITY INTEREST Recorded Jan 14, 2015
From: JONES, KEVIN; TENAX ENERGY SOLUTIONS LLC
To: HARD ROCK SOLUTIONS, LLC; EXTREME TECHNOLOGIES, LLC
Reel/Frame 034705/0161 →
Continuity (2)
Provisional Application 61879131 · Sep 17, 2013
Related Publication 20150075868A1 · Mar 19, 2015