IP Library Granted Patent US 11,493,085
Granted Patent B1
US 11,493,085 · App. 16/883,135 · Granted Nov 8, 2022

Method and system for hybrid bearing design

Inventors: Abhay R. Patil (College Station, TX); Robert B. Hure (San Luis Obispo, CA); Adolfo Delgado Marquez (College Station, TX); Burak C. Ayyildiz (College Station, TX); Wenjie Yin (College Station, TX)
Assignee: The Texas A&M University System
F16C17/246F16C27/02F16C33/043F16C17/02F16C2206/40
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Quick Facts
Patent No.
US 11,493,085
App. No.
16/883,135
Granted
Nov 8, 2022
Kind
B1
Abstract

A hybrid bearing assembly includes a bushing. A sleeve is rotationally disposed within the bushing and a support layer is disposed around an outer perimeter of the bushing. A protective sleeve is disposed abutting the sleeve. A protective bushing is disposed abutting the bushing.

Claims (31)

1. A bearing assembly comprising:

a bushing;

a sleeve rotationally disposed within the bushing;

a support layer disposed around an outer perimeter of the bushing; and

a protective bushing disposed outwardly of the bushing in an axial direction,

wherein the protective bushing radially overlaps the bushing and the support layer, and extends radially inward farther than the bushing.

2. The bearing assembly of claim 1 , wherein:

the bushing is constructed of a carbide material; and

the sleeve is constructed of the carbide material.

3. The bearing assembly of claim 1 , wherein the support layer is constructed of a thermoplastic material.

4. The bearing assembly of claim 1 , comprising:

a protective sleeve abutting the sleeve;

wherein the protective bushing is constructed from a thermoplastic material; and

wherein the protective sleeve is constructed from the thermoplastic material.

5. The bearing assembly of claim 1 , further comprising a vibration-absorbing element disposed in the support layer.

6. The bearing assembly of claim 5 , wherein the vibration-absorbing element comprises a metallic spring.

7. The bearing assembly of claim 5 , wherein the vibration-absorbing element comprises a sinusoidal waveform shape.

8. The bearing assembly of claim 5 , wherein the vibration-absorbing element includes a crenelated shape.

9. The bearing assembly of claim 8 , wherein the vibration-absorbing element comprises parallel side members joined by a top member.

10. The bearing assembly of claim 9 , wherein the side members are angled relative to a radius of a shaft.

11. A bearing assembly comprising:

a bushing disposed in an outer housing;

a sleeve rotationally disposed within the bushing;

a vibration-absorbing element disposed outwardly of the bushing; and

a protective bushing disposed outwardly of the bushing in an axial direction,

wherein the protective bushing radially overlaps the bushing and the vibration-absorbing element, and extends radially inward farther than the bushing.

12. The bearing assembly of claim 11 , wherein the vibration-absorbing element comprises a plurality of spring elements and a plurality of damper elements disposed about a circumference of the vibration-absorbing element.

13. The bearing assembly of claim 11 , comprising:

a protective sleeve abutting the sleeve.

14. The bearing assembly of claim 13 , wherein the vibration-absorbing element is disposed in a support layer.

15. The bearing assembly of claim 11 , wherein the vibration-absorbing element comprises a metallic spring.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jul 19, 2022
From: TEXAS ENGINEERING EXPERIMENT STATION
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 060731/0177 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2021
From: PATIL, ABHAY R.; HURE, ROBERT B.; DELGADO, ADOLFO; AYYILDIZ, BURAK C.; YIN, WENJIE
To: THE TEXAS A&M UNIVERSITY SYSTEM
Reel/Frame 056713/0039 →