IP Library › Granted Patent US 9,074,351
Granted Patent B2
US 9,074,351 · App. 13/839,574 · Granted Jul 7, 2015

Retainer systems for ground engaging tools

Inventor: Carl Wade Ballinger (Dunlap, IL)
Assignee: Caterpillar Inc.
E02F9/2841E02F9/2891
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Quick Facts
Patent No.
US 9,074,351
App. No.
13/839,574
Granted
Jul 7, 2015
Kind
B2
Abstract

Disclosed are various exemplary embodiments of a lock for a ground engaging tool. The lock may include a head portion and a C-shaped portion extending from the head portion. The C-shaped portion may define a lock slot for receiving a portion of a support member to be locked with the ground engaging tool. The C-shaped portion may also include an outer surface configured to be rotatably received in an inner surface of a retainer bushing. At least a portion of the head portion and the C-shaped portion may include a surface coated with a friction-reducing material.

Claims (34)

1. A lock for a ground engaging tool, comprising:

a head portion; and

a C-shaped portion extending from the head portion, the C-shaped portion defining a lock slot for receiving a portion of a support member to be locked with the ground engaging tool, the C-shaped portion including an outer surface configured to be rotatably received in an inner surface of a retainer bushing,

wherein at least a portion of the head portion and the C-shaped portion comprises a surface coated with a friction-reducing material; and

wherein the outer surface includes:

a first recessed portion at an end of the C-shaped portion remote from the head portion; and

a second recessed portion that is separate from the first recessed portion and configured to create a gap between a base surface of the second recessed portion and the inner surface of the retainer bushing when the outer surface of the C-shaped portion is rotatably received in the inner surface of the retainer bushing.

2. The lock of claim 1 , wherein portions of the outer surface that do not include the recessed portions are configured to contact the inner surface of the retainer bushing.

3. The lock of claim 1 , wherein the second recessed portion has a recess depth of approximately 0.12 to 0.2 times a thickness of the C-shaped portion.

4. The lock of claim 1 , wherein the outer surface of the C-shaped portion is substantially concentric with and extends circumferentially around a lock rotation axis.

5. The lock of claim 1 , wherein the head portion includes a wall having a first surface and a second surface opposite the first surface, the head portion further including a tool interface extending from the first surface of the wall, and wherein the wall including a through-hole having a first end opening out to the tool interface and a second end opening out to the lock slot defined by the C-shaped portion.

6. The lock of claim 1 , wherein the surface coated with the friction-reducing material comprises a zinc plated surface.

7. The lock of claim 1 , wherein the surface coated with the friction-reducing material comprises a surface coated with graphite powder.

8. The lock of claim 1 , further comprising a detent formed on the outer surface of the C-shaped portion and configured to engage a detent of the retainer bushing.

9. The lock of claim 8 , wherein the detent of the C-shaped portion includes a first detent recess and a second detent recess spaced apart from one another by approximately 180 degrees.

10. A retainer system for a ground engaging tool, comprising:

a retainer bushing including:

an outer surface configured to mate with a lock cavity of the ground engaging tool; and

an inner surface opposite the outer surface; and

a lock including:

a head portion; and

a C-shaped portion extending from the head portion, the C-shaped portion defining a lock slot for receiving a portion of a support member to be locked with the ground engaging tool, the C-shaped portion including an outer surface configured to be rotatably received in the inner surface of the retainer bushing,

wherein at least a portion of the head portion and the C-shaped portion comprises a surface coated with a friction-reducing material; and

wherein the outer surface of the C-shaped portion includes:

a first recessed portion at an end of the C-shaped portion remote from the head portion; and

a second recessed portion that is separate from the first recessed portion and creates a gap between a base surface of the second recessed portion and the inner surface of the retainer bushing when the outer surface of the C-shaped portion is rotatably received in the inner surface of the retainer bushing.

11. The retainer system of claim 10 , wherein portions of the outer surface that do not include the recessed portions are configured to contact the inner surface of the retainer bushing.

12. The retainer system of claim 10 , wherein the second recessed portion has a recess depth of approximately 0.12 to 0.2 times a thickness of the C-shaped portion.

13. The retainer system of claim 10 , wherein the outer surface of the C-shaped portion is substantially concentric with and extends circumferentially around a lock rotation axis.

14. The retainer system of claim 10 , wherein the head portion includes a wall having a first surface and a second surface opposite the first surface, the head portion further including a tool interface extending from the first surface of the wall, and wherein the wall including a through-hole having a first end opening out to the tool interface and a second end opening out to the lock slot defined by the C-shaped portion.

15. The retainer system of claim 10 , wherein the surface coated with the friction-reducing material comprises a zinc plated surface.

16. The retainer system of claim 10 , wherein the surface coated with the friction-reducing material comprises a surface coated with graphite powder.

17. The retainer system of claim 10 , further comprising a detent formed on the outer surface of the C-shaped portion and configured to engage a detent of the retainer bushing.

18. The retainer system of claim 17 , wherein the detent of the C-shaped portion includes a first detent recess and a second detent recess spaced apart from one another by approximately 180 degrees.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2013
From: BALLINGER, CARL WADE
To: CATERPILLAR INC.
Reel/Frame 030129/0394 →
Continuity (1)
Related Publication 20140259811A1 · Sep 18, 2014