Claims
- 1. A rotator comprising:
a rotating member made of resin; and a bearing attached to a radial inner side of the rotating member, the bearing including an outer ring integrated to the rotating member by an insert molding, an inner ring positioned at a radial inside of the outer ring, and a bearing ball that is disposed to rolling-contact an inner peripheral surface of the outer ring and an outer peripheral surface of the inner ring, wherein:
the outer ring has an axial dimension larger than an axial dimension of the inner ring in an axial direction of the rotating member.
- 2. The rotator according to claim 1, wherein:
the outer ring has an outer peripheral surface contacting the rotating member; and the outer peripheral surface has an uneven portion.
- 3. The rotator according to claim 2, wherein the uneven portion includes a plurality of recesses recessed from the outer peripheral surface to a radial inside.
- 4. The rotator according to claim 1, wherein the outer ring has a wall thickness larger than a wall thickness of the inner ring, in contact portions contacting the bearing ball.
- 5. The rotator according to claim 1, wherein:
the rotating member includes two projections protruding to a radial inside of an outer peripheral surface of the outer ring; and the two projections contact two axial ends of the outer ring to pinch the outer ring from the two axial ends.
- 6. The rotator according to claim 1, wherein:
the outer ring has an outer peripheral surface, an axial end and a chamfer surface connecting the outer peripheral surface and the axial end; and the rotating member contacts the outer peripheral surface and the chamfer surface of the outer ring.
- 7. The rotator according to claim 6, wherein the chamfer surface has one of a flat shape and a curved shape.
- 8. The rotator according to claim 1, wherein:
the outer ring includes a heat radiation portion exposed to atmospheric air, from which heat is radiated to atmospheric air; and the heat radiation portion has a heat-radiation facilitating portion for facilitating heat radiation, the heat-radiation facilitating portion being provided to increase a heat radiation area of the heat radiation portion.
- 9. The rotator according to claim 8, wherein the heat-radiation facilitating portion is a plurality of recesses provided on an inner peripheral surface of the heat radiation portion.
- 10. The rotator according to claim 8, wherein the heat-radiation facilitating portion is a fin press-fitted to an inner peripheral surface of the heat radiation portion.
- 11. The rotator according to claim 8, wherein the heat-radiation facilitating portion is an uneven portion provided on an axial end of the heat radiation portion.
- 12. A method for manufacturing a rotator, comprising:
arranging an outer ring of a bearing in a die at a predetermined position; injecting a resin in the die to form a rotating member integrated to the outer ring, at a radial outside of the outer ring; and attaching a bearing ball to the outer ring so that the bearing ball rolling-contacts an inner peripheral surface of the outer ring; and attaching an inner ring to the bearing ball at a radial inside of the outer ring so that the bearing ball rolling-contacts the inner ring, wherein an axial dimension of the outer ring is made larger than an axial dimension of the inner ring.
- 13. The method according to claim 12, further comprising
forming an uneven portion on an outer peripheral surface of the outer ring before the injecting.
- 14. The method according to claim 12, wherein the outer ring and the inner ring are formed such that a wall thickness of the outer ring is larger than a wall thickness of the inner ring, in contacting portions of the outer ring and the inner ring, contacting the bearing ball.
- 15. A method for manufacturing a rotator, comprising:
arranging at least an outer ring of a bearing in a die at a predetermined position, the outer ring having an outer peripheral surface, two axial ends contacting the die, and two chamfer surfaces connecting the outer peripheral surfaces and the axial ends; injecting a resin in the die to form a rotating member integrated to the outer ring at a radial outside of the outer ring, wherein two projections of the rotating member, contacting the two chamfer surfaces, are formed in the injecting due to the two chamfer surfaces.
- 16. The method according to claim 15, wherein the bearing is formed such that a bearing ball rolling-contacts the outer ring and an inner ring.
- 17. The method according to claim 15, wherein all the bearing is placed in the die in the arranging.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2002-5839 |
Jan 2002 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is related to and claims priority from Japanese Patent Application No. 2002-5839 filed on Jan. 15, 2002, the content of which is hereby incorporated by reference.