IP Library Granted Patent US 10,634,194
Granted Patent B2
US 10,634,194 · App. 15/320,918 · Granted Apr 28, 2020

Retainer for inner and outer shafts

Inventors: Samuel J. Oram (Tochigi, JP); Crittenden A. Bittick (Rochester Hills, MI); Tony N. Arden (Davisburg, MI)
Assignee: GKN Driveline North America, Inc.
F16D1/116F16B21/186
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Quick Facts
Patent No.
US 10,634,194
App. No.
15/320,918
Granted
Apr 28, 2020
Kind
B2
Abstract

In at least some implementations, a clip for restricting the axial movement of at least one of an inner shaft or an outer shaft relative to the other shaft includes a first free end, a second free end, an opening defining an open end of the clip between the first free end and the second free end, a closed end opposite the open end, at least three control zones, and a plurality of intermediate zones. Each intermediate zone has a varying width and each is disposed adjacent to at least one of the at least three control zones.

Claims (28)

1. A clip for restricting the axial movement of at least one of an inner shaft or an outer shaft relative to the other shaft, comprising:

a first free end and a second free end;

an opening between the first free end and the second free end, and defining an open end of the clip;

a closed end opposite the open end;

at least three control zones;

a plurality of intermediate zones each having a varying width, and each being disposed adjacent to at least one of the at least three control zones; wherein the at least three control zones include a first control zone located in the closed end of the clip, a second control zone located between the first control zone and the first free end, and a third control zone located between the first control zone and the second free end, and wherein the plurality of intermediate zones includes a first intermediate zone disposed between the first and second control zones, and the width of the first intermediate zone progressively increases and then progressively decreases as the first intermediate zone extends between the first and second control zones, and a second intermediate zone disposed between the first and third control zones, and the width of the second intermediate zone progressively increases and then progressively decreases as the second intermediate zone extends between the first and third control zones, and a third intermediate zone disposed between the second control zone and the first free end, and a fourth intermediate zone disposed between the third control zone and the second free end, and wherein the width of the third intermediate zone decreases as it extends from the second control zone to the first free end, and the width of the fourth intermediate zone decreases as it extends from the third control zone to the second free end.

2. The clip of claim 1 , wherein the widths of the first and second intermediate zones increase from the width of the first control zone and then decrease to the width of the second or third control zone, respectively.

3. The clip of claim 2 , wherein the width of the first control zone is the same as the width of the second control zone, the third control zone, or both.

4. The clip of claim 2 , wherein the width of first control zone is different than the width of the second control zone, the third control zone, or both.

5. The clip of claim 4 , wherein the widths of the second and third control zones are within 5% of the width of the first control zone.

6. The clip of claim 1 , wherein the first control zone is disposed within a first vertical plane that includes a centerline of the clip extending through the closed end and the center of the open end, and at least one of the second or third control zones is disposed within a predetermined angular range of a second plane that is orthogonal to the first vertical plane.

7. The clip of claim 6 , wherein the second plane includes a centerline of the clip that is orthogonal to the centerline extending through the closed end and the center of the open end.

8. The clip of claim 1 , wherein the clip is generally elliptical in shape.

9. The clip of claim 1 , wherein the opening at the open end of the clip has a width that increases as it extends radially inward.

10. The clip of claim 1 , further comprising an inner peripheral surface having portions that define a circle, wherein the opening at the open end of the clip has a width that is 45-65% of the diameter of the circle.

11. The clip of claim 1 , further comprising an inner peripheral surface having portions that define a circle, wherein the width of the control zones is between 4% and 8% of the diameter of the circle.

12. The clip of claim 1 , further comprising an inner peripheral surface having portions that define a circle, wherein a maximum overall width of the clip is approximately 110-140% of the diameter of the circle.

13. The clip of claim 1 , further comprising an inner peripheral surface having portions that define a circle, wherein an offset between a centerline of the clip and the centerline of the circle is approximately 25-45% of the width of the control zones.

14. An assembly, comprising:

an inner shaft defining a longitudinal axis and having a groove formed in an outer surface thereof;

a member having an axially facing surface relative to the longitudinal axis;

an elastically deformable clip including an open end having an opening and a closed end opposite the open end, wherein when the clip is assembled with the inner shaft and the member, respective portions of the clip are seated within the groove of the inner shaft and engage the axially-facing surface of the member, and the clip is operative to restrict axial movement of at least one of the inner shaft or member relative to each other; and

a component having a bore within which the inner shaft, member, and clip are disposed, the component including a raised portion that extends into the bore such that at least a portion of the bore has a non-circular cross-sectional shape, wherein

the clip is configured to be elastically deformed to pass over the raised portion in the bore during the assembly of the clip with the inner shaft and member without yielding and wherein the clip includes at least three control zones; and a plurality of intermediate zones each having a varying width, and each being disposed adjacent to at least one of the at least three control zones, wherein the at least three control zones include a first control zone located in the closed end of the clip, a second control zone located between the first control zone and the first free end, and a third control zone located between the first control zone and the second free end, and wherein the plurality of intermediate zones includes a first intermediate zone disposed between the first and second control zones which has a width that progressively increases and then progressively decreases as the first intermediate zone extends between the first and second control zones, and a second intermediate zone disposed between the first and third control zones which has a width that progressively increases and then progressively decreases as the second intermediate zone extends between the first and third control zones.

15. The system of claim 14 , wherein the widths of the first and second intermediate zone increase from the width of the first control zone and then decrease to the width of the second or third control zone, respectively.

16. The clip of claim 15 , wherein the width of the first control zone is the same as the width of the second control zone, the third control zone, or both.

17. The clip of claim 14 , further comprising an inner peripheral surface having portions that define a circle, wherein the opening at the open end of the clip has a width that is 45-65% of the diameter of the circle.

18. The clip of claim 14 , further comprising an inner peripheral surface having portions that define a circle, wherein an offset between the centerline of the clip and the centerline of the circle is approximately 25-45% of the width of the control zones.

Assignments (3)
SECURITY INTEREST Recorded Apr 2, 2026
From: AMERICAN AXLE & MANUFACTURING, INC.; GKN SINTER METALS, LLC; GKN DRIVELINE NORTH AMERICA, INC.; GKN DRIVELINE NEWTON, LLC; HOEGANAES CORPORATION
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 075331/0836 →
SECURITY INTEREST Recorded Apr 1, 2026
From: AMERICAN AXLE & MANUFACTURING, INC.; GKN SINTER METALS, LLC; GKN DRIVELINE NORTH AMERICA, INC.; GKN DRIVELINE NEWTON, LLC; HOEGANAES CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION,, AS NOTES COLLATERAL AGENT
Reel/Frame 075325/0112 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2016
From: ORAM, SAMUEL J.; BITTICK, CRITTENDEN A.; ARDEN, TONY N.
To: GKN DRIVELINE NORTH AMERICA, INC.
Reel/Frame 041127/0357 →
Continuity (2)
Provisional Application 62016935 · Jun 25, 2014
Related Publication 20170130777A1 · May 11, 2017