IP Library Granted Patent US 11,892,036
Granted Patent B1
US 11,892,036 · App. 17/871,385 · Granted Feb 6, 2024

Bearing track cage for mitigating rolling element excursion

Inventors: Dennis Roffe (Fort Mill, SC); Michael Heaton (Rock Hill, SC); Guihui Zhong (Charlotte, NC)
Assignee: Schaeffler Technologies AG & Co. KG
F16C33/3881F16C19/16F16C33/3831
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Quick Facts
Patent No.
US 11,892,036
App. No.
17/871,385
Granted
Feb 6, 2024
Kind
B1
Abstract

A bearing track cage includes a plurality of retention elements, wherein each retention element includes at least a first axial side and a second axial side, and wherein each adjacent pair of retention elements of the plurality of retention elements defines a rolling element pocket configured to retain a rolling element. A first support is slidably coupled to each of the plurality of retention elements on the first axial side thereof and a second support is slidably coupled to each of the plurality of retention elements on the second axial side thereof.

Claims (24)

1. A bearing track cage comprising:

a plurality of retention elements, wherein each retention element of the plurality of retention elements includes at least a first axial side and a second axial side, and wherein each adjacent pair of retention elements of the plurality of retention elements defines a rolling element pocket configured to retain a rolling element;

a first support slidably coupled to each of the plurality of retention elements on the first axial side thereof; and

a second support slidably coupled to each of the plurality of retention elements on the second axial side thereof;

wherein the first support and the second support are configured to contact each of the rolling elements.

2. The bearing track cage of claim 1 , wherein the first axial side and the second axial side of each retention element of the plurality of retention elements includes a slot configured to retain a corresponding one of the first support or the second support.

3. The bearing track cage of claim 2 , wherein each slot is larger at an axially inner portion than at an opening defined at an axially outer portion.

4. The bearing track cage of claim 2 , wherein each slot includes a curved profile elongated from a first circumferential side of the retention element to a second circumferential side of the retention element.

5. The bearing track cage of claim 1 , wherein the plurality of retention elements contact at least 50% of an outer perimeter of the first support and contact at least 50% of an outer perimeter of the second support.

6. The bearing track cage of claim 1 , wherein the plurality of retention elements contact less than 80% of an outer perimeter of the first support and contact less than 80% of an outer perimeter of the second support.

7. The bearing track cage of claim 1 , wherein a first circumferential side of each of the plurality of retention elements includes a first indentation partially defining an adjacent rolling element pocket.

8. The bearing track cage of claim 7 , wherein a second circumferential side of each of the plurality of retention elements includes a second indentation partially defining the adjacent rolling element pocket.

9. The bearing track cage of claim 8 , wherein the first indentation and the second indentation contact a radially outer side of each retention element.

10. The bearing track cage of claim 9 , wherein the first indentation and the second indentation contact a radially inner side of each retention element.

11. The bearing track cage of claim 8 , wherein the first indentation and the second indentation are each defined by a spheroidal curve.

12. The bearing track cage of claim 1 , wherein at least one of a radially outer side or a radially inner side of each of the plurality of retention elements includes a cavity.

13. The bearing track cage of claim 12 , wherein the radially outer side includes a first cavity and the radially inner side includes a second cavity.

14. The bearing track cage of claim 1 , wherein the first support and the second support are each formed from a metal and each retention element of the plurality of retention elements are formed from a plastic material.

15. A bearing assembly comprising:

a plurality of rolling elements; and

a plurality of retention elements, wherein each of the plurality of retention elements is located between adjacent rolling elements of the plurality of rolling elements, wherein the plurality of retention elements are configured to be slidably coupled to at least a first support such that each of the plurality of retention elements are configured to shift in a circumferential direction along the first support; wherein each of the plurality of retention elements are configured to be slidably coupled to at least a second support, and wherein the first support and the second support are configured to contact each of the rolling elements.

16. The bearing assembly of claim 15 , wherein the plurality of rolling elements are free to shift circumferentially within the bearing assembly.

17. The bearing assembly of claim 15 , wherein each of the retention elements are configured to cover the first support and the second support.

18. The bearing assembly of claim 17 , wherein each of the retention elements are configured to at least partially expose the first support and the second support.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2022
From: ROFFE, DENNIS; HEATON, MICHAEL; ZHONG, GUIHUI
To: SCHAEFFLER TECHNOLOGIES AG & CO. KG
Reel/Frame 060658/0272 →