Claims
- 1. A method of manufacturing a self-aligning bearing including the steps of preforming an outer member with a concave inner spheroidal bearing surface, preforming an inner member with a convex outer spheroidal bearing surface, forming an annular groove on one of said surfaces, inserting said inner member radially within said outer member with the members aligned axially and radially, disposing a resilient member in said groove, the resilient member having an axial dimension less than a corresponding axial dimension of the groove and the resilient member having a radial dimension greater than a corresponding radial dimension of the groove, deforming at least one of said inner and outer members such that said inner concave surface of said outer member is in bearing contact with the convex outer surface of said inner member, and distorting the resilient member by radially compressing said resilient member in said annular groove and thereby concurrently axially expanding the resilient member to fit said groove and resiliently exerting a preloading braking force on said inner and outer members with the resilient member.
- 2. A method of manufacturing a self-aligning bearing in accordance with claim 1 wherein said deforming comprises compressing said outer member about said inner member.
- 3. A method of manufacturing a self-aligning bearing in accordance with claim 1 wherein said deforming comprises expanding said inner member within said outer member.
- 4. A method of manufacturing a self-aligning bearing in accordance with claim 1 wherein said disposing said resilient member within said annular groove comprises disposing an "O" ring member.
- 5. A method of manufacturing a self-aligning bearing in accordance with claim 1 wherein said forming said annular groove comprises forming said groove centrally in one of said surfaces.
- 6. A method of manufacturing a self-aligning bearing in accordance with claim 1 wherein said disposing said resilient member comprises disposing a resilient member having a volume substantially equal to cross-sectional volume of said annular groove.
- 7. A method of manufacturing a self-aligning bearing in accordance with claim 1 wherein said deforming comprises compressing said outer member about said inner member and expanding said inner member within said outer member.
- 8. The method of manufacturing a self-aligning bearing in accordance with claim 1 wherein the forming an annular groove comprises forming an annular groove on the convex outer spheroidal bearing surface of the inner member.
- 9. The method of manufacturing a self-aligning bearing of claim 1 wherein the forming an annular groove comprises forming a relatively shallow concave annular depression of uniform cross-section in one of said surfaces.
- 10. A self-aligning bearing in accordance with claim 1 wherein said compressing said resilient member comprises compressing said member and totally filling said annular groove.
Parent Case Info
This application is a continuation of copending application No. 604,695, filed Aug. 14, 1975, now abandoned, which was a division of application No. 565,799, filed Apr. 7, 1975 and now U.S. Pat. No. 3,989,230.
US Referenced Citations (10)
Foreign Referenced Citations (1)
Number |
Date |
Country |
249646 |
May 1963 |
AUX |
Non-Patent Literature Citations (1)
Entry |
"A Review of Self Aligning Bearings" by Cook, N. L. & Reese, L. D.; The Torrington Co., SAE Earthmoving Industry Conference, Peoria, Ill., Apr. 9-10, 1968, No. 680,260, SAE, 485 Lexington Ave., N.Y. City. |
Divisions (1)
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Number |
Date |
Country |
Parent |
565799 |
Apr 1975 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
604695 |
Aug 1975 |
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