IP Library › Granted Patent US 9,145,920
Granted Patent B2
US 9,145,920 · App. 14/059,956 · Granted Sep 29, 2015

Burr resistant fastener-mounted bearing assembly

Inventors: Scott W. Phillips (Valparaiso, IN); Kim D. Hoffmann (Chesterton, IN)
Assignee: Regal Beloit America, Inc.
F16C33/586F16C35/047
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Quick Facts
Patent No.
US 9,145,920
App. No.
14/059,956
Granted
Sep 29, 2015
Kind
B2
Abstract

A bearing assembly for rotatably supporting a shaft member. The bearing assembly has an inner ring having an inner surface sized to receive the shaft member therein. A first fastener threadedly engages a first fastener aperture formed in the inner ring such that a distal end of the first fastener engages the shaft member to selectively retain the inner ring to the shaft member for rotation therewith. A first groove extends along the inner surface of the inner ring and is aligned with the first fastener aperture formed in the inner ring. The first groove is sized to permit clearance between a burr or other obstruction formed on an exterior surface of the shaft member.

Claims (40)

1. A bearing assembly for rotatably supporting a shaft member, said bearing assembly comprising:

an inner ring having an interior bore having an inner surface, said interior bore sized to receive the shaft member therein, said inner ring further having a raceway groove circumferentially extending about an outer surface of said inner ring, said raceway groove being configured to guide a plurality of bearing rolling elements;

a first fastener threadedly engaging a first fastener aperture formed in said inner ring, a distal end of said first fastener connectable with the shaft member to selectively retain said inner ring to the shaft member for rotation therewith; and

a first groove having an arcuate cross-sectional shape extending linearly and axially along said inner surface of said interior bore of said inner ring, said first groove extending along said inner surface under and transverse to said circumferential raceway groove, said first groove being aligned with said first fastener aperture formed in said inner ring, said first groove being sized to permit clearance between a burr or other obstruction formed on an exterior surface of the shaft member and further being sized to prevent an out-of-round condition along said raceway groove.

2. The bearing assembly according to claim 1 wherein said first groove extends along said inner surface of said inner ring from a first end of said inner ring to an opposing second end of said inner ring.

3. The bearing assembly according to claim 1 wherein said first groove extends along said inner surface of said inner ring from a location adjacent said first fastener aperture and at least one end of said inner ring.

4. The bearing assembly according to claim 1 wherein said first groove is aligned with said first fastener aperture formed in said inner ring such that a central axis of said first groove intersects a central axis of said first fastener aperture.

5. The bearing assembly according to claim 1 wherein said first groove extends from said first fastener aperture to both ends of said inner ring.

6. The bearing assembly according to claim 1 , further comprising:

a bearing housing;

an outer ring positioned in said bearing housing, said inner ring being positioned within said outer ring;

a plurality of bearing rolling elements disposed in said raceway groove extending between said outer ring and said inner ring.

7. The bearing assembly according to claim 6 wherein an axial length of said inner ring is larger than an axial length of said outer ring to define an overhang land, wherein said first fastener aperture extends from an outer surface of said inner ring to said inner surface of said inner ring at said overhang land.

8. The bearing assembly according to claim 1 , further comprising:

a second fastener threadedly engaging a second fastener aperture formed in said inner ring, a distal end of said second fastener connectable with the shaft member to selectively retain said inner ring to the shaft member for rotation therewith; and

a second groove extending along said inner surface of said interior bore of said inner ring, said second groove being aligned with said second fastener aperture formed in said inner ring, said second groove being sized to permit clearance between the burr or other obstruction formed on said exterior surface of the shaft member.

9. A bearing assembly for rotatably supporting a shaft member, said bearing assembly comprising:

a bearing housing;

an outer ring positioned in said bearing housing;

an inner ring having an interior bore having an inner surface, said interior bore sized to receive the shaft member therein, said inner ring being positioned within said outer ring to form a raceway therebetween, said raceway circumferentially extending about an outer surface of said inner ring;

a plurality of bearing rolling elements disposed in said raceway extending between said outer ring and said inner ring;

a first fastener threadedly engaging a first fastener aperture formed in said inner ring, a distal end of said first fastener connectable with the shaft member to selectively retain said inner ring to the shaft member for rotation therewith; and

a first groove having an arcuate cross-sectional shape extending linearly and axially along said inner surface of said interior bore of said inner ring, said first groove extending along said inner surface under and transverse to said circumferential raceway, said first groove being aligned with said first fastener aperture formed in said inner ring, said first groove being sized to permit clearance between a burr or other obstruction formed on an exterior surface of the shaft member and further being sized to prevent an out-of-round condition along said raceway.

10. The bearing assembly according to claim 9 wherein said first groove extends linearly along said inner surface of said inner ring from a first end of said inner ring to an opposing second end of said inner ring.

11. The bearing assembly according to claim 9 wherein said first groove extends linearly along said inner surface of said inner ring from a location adjacent said first fastener aperture and at least one end of said inner ring.

12. The bearing assembly according to claim 9 wherein said first groove is aligned with said first fastener aperture formed in said inner ring such that a central axis of said first groove intersects a central axis of said first fastener aperture.

13. The bearing assembly according to claim 9 wherein an axial length of said inner ring is larger than an axial length of said outer ring to define an overhang land, wherein said first fastener aperture extends from an outer surface of said inner ring to said inner surface of said inner ring at said overhang land.

14. The bearing assembly according to claim 9 , further comprising:

a second fastener threadedly engaging a second fastener aperture formed in said inner ring, a distal end of said second fastener connectable with the shaft member to selectively retain said inner ring to the shaft member for rotation therewith; and

a second groove extending axially along said inner surface of said interior bore of said inner ring, said second groove being aligned with said second fastener aperture formed in said inner ring, said second groove being sized to permit clearance between the burr or other obstruction formed on said exterior surface of the shaft member.

15. A bearing assembly for rotatably supporting a shaft member, said bearing assembly comprising:

an inner ring having an interior bore having an inner surface, said interior bore sized to receive the shaft member therein;

a first fastener threadedly engaging a first fastener aperture formed in said inner ring, a distal end of said first fastener connectable with the shaft member to selectively retain said inner ring to the shaft member for rotation therewith; and

a first groove extending along said inner surface of said interior bore of said inner ring, said first groove being aligned with said first fastener aperture formed in said inner ring, said first groove being sized to permit clearance between a burr or other obstruction formed on an exterior surface of the shaft member,

wherein said first groove extends non-linearly from said first fastener aperture to at least one end of said inner ring.

16. A bearing assembly for rotatably supporting a shaft member, said bearing assembly comprising:

an inner ring having an interior bore having an inner surface, said interior bore sized to receive the shaft member therein;

a first fastener threadedly engaging a first fastener aperture formed in said inner ring, a distal end of said first fastener connectable with the shaft member to selectively retain said inner ring to the shaft member for rotation therewith; and

a first groove extending along said inner surface of said interior bore of said inner ring, said first groove being aligned with said first fastener aperture formed in said inner ring, said first groove being sized to permit clearance between a burr or other obstruction formed on an exterior surface of the shaft member,

wherein said first groove extends sinusoidally from said first fastener aperture to at least one end of said inner ring.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2015
From: EMERSON POWER TRANSMISSION CORPORATION
To: REGAL BELOIT AMERICA, INC.
Reel/Frame 035014/0113 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2013
From: PHILLIPS, SCOTT W.; HOFFMANN, KIM D.
To: EMERSON POWER TRANSMISSION CORP.
Reel/Frame 031619/0440 →
Continuity (1)
Related Publication 20150110435A1 · Apr 23, 2015