IP Library › Granted Patent US 10,012,266
Granted Patent B1
US 10,012,266 · App. 15/404,670 · Granted Jul 3, 2018

Ball bearing with cage having rattle reduction feature and method thereof

Inventor: William Moratz (Gardiner, NY)
Assignee: Schaeffler Technologies AG & Co. KG
F16C33/3806F16C19/163F16C2300/20
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Quick Facts
Patent No.
US 10,012,266
App. No.
15/404,670
Granted
Jul 3, 2018
Kind
B1
Abstract

A bearing, including: an axis of rotation; an outer ring; an inner ring located radially inward of the outer ring; a cage including at least one protrusion extending in a radial direction; a ball disposed in the cage; and at least one recess. The outer ring includes a recess included in the at least one recess and a protrusion included in the at least one protrusion is located in the recess. The inner ring includes a recess included in the at least one recess and a protrusion included in the at least one protrusion is located in the recess.

Claims (111)

1. A bearing, comprising:

an axis of rotation;

an outer ring;

an inner ring located radially inward of the outer ring;

a cage;

a ball disposed in the cage; and,

a clearance between the cage and the ball,

wherein:

the outer ring includes a first recess and the cage includes a first protrusion located in the first recess; and,

the clearance between the cage and the ball is greater than or equal to a clearance between the first protrusion and the first recess; or,

wherein:

the inner ring includes a second recess and the cage includes a second protrusion located in the second recess; and,

the clearance between the cage and the ball is greater than or equal to a clearance between the second protrusion and the second recess.

2. The bearing of claim 1 , wherein:

the outer ring includes the first recess and the cage includes the first protrusion;

the bearing cage includes first and second body portions;

the ball is axially disposed between the first and second body portions; and,

the first protrusion extends radially outward from the first body portion.

3. The bearing of claim 1 , wherein:

the outer ring includes the first recess and the cage includes the first protrusion;

the outer ring includes first and second surfaces facing radially inward; and,

a line parallel to the axis of rotation:

is co-linear with the first and second surfaces; and,

passes through the first protrusion.

4. The bearing of claim 1 , wherein:

the outer ring includes the first recess and the cage includes the first protrusion;

the first recess is formed by:

a first wall slanting in a first axial direction; and,

a second wall slanting in a second axial direction, opposite the first axial direction; and,

the first protrusion is formed by:

a third wall slanting in the first axial direction; and,

a fourth wall slanting in the second axial direction.

5. The bearing of claim 4 , wherein a line parallel to the axis of rotation passes through in sequence:

the first wall for the first recess;

the third wall for the first protrusion;

the fourth wall for the first protrusion; and,

the second wall for the first recess.

6. The bearing of claim 1 , wherein:

the outer ring includes the first recess and the cage includes the first protrusion;

the first recess is bounded by a rounded wall defined by a single smooth curve;

the first protrusion includes a rounded wall defined by a single smooth curve; and,

the rounded wall for the first protrusion is matingly engaged with the rounded wall bounding the first recess.

7. The bearing of claim 1 , wherein:

the outer ring includes the first recess and the cage includes the first protrusion;

the first recess is formed, in part, by first and second walls orthogonal to the axis of rotation;

the first protrusion includes third and fourth walls orthogonal to the axis of rotation; and,

a line parallel to the axis of rotation passes through the first and second walls for the first recess and the third and fourth walls for the first protrusion.

8. The bearing of claim 1 , wherein:

the inner ring includes the second recess and the cage includes the second protrusion;

the cage includes first and second body portions;

the ball is axially disposed between the first and second body portions; and,

the second protrusion extends radially inward from the first body portion.

9. The bearing of claim 1 , wherein:

the outer ring includes the first recess and the cage includes the first protrusion;

the inner ring includes the second recess and the cage includes the second protrusion; and,

the cage includes first and second body portions;

the ball is axially disposed between the first and second body portions;

the first body portion includes the first protrusion located in the first recess; and,

the second body portion includes the second protrusion located in the second recess.

10. The bearing of claim 1 , wherein:

the outer ring includes the first recess and the cage includes the first protrusion;

the cage includes first and second body portions;

the first protrusion extends radially outward from the first body portion;

the ball is axially disposed between the first and second body portions;

a first line, parallel to the axis of rotation, bisects the second body portion in a radially outward direction;

a second line, parallel to the axis of rotation, is co-linear with, or passes through, a surface of the second body portion facing radially inward; and,

a third line, parallel to the axis of rotation, passes through a center point of the ball and is closer, in the radially outward direction, to the first line than to the second line; or,

a third line, parallel to the axis of rotation, passes through a center point of the ball and is closer, in the radially outward direction, to the second line than to the first line.

11. The bearing of claim 1 , wherein the outer ring includes the first recess and the cage includes the first protrusion, the bearing further comprising:

a space between the first recess and the first protrusion; and,

first lubricant located in the space.

12. A ball bearing, comprising:

an axis of rotation;

an outer ring including a recess;

an inner ring located radially inward of the outer ring;

a ball bearing cage radially disposed between the inner and outer rings and including:

a first body portion including a protrusion extending radially outward into the recess; and,

a second body portion;

a ball axially disposed between the first and second body portions;

a clearance between the cage and the ball; and,

a clearance between the protrusion and the recess, wherein the clearance between the cage and the ball is greater than or equal to the clearance between the protrusion and the recess.

13. The ball bearing of claim 12 , wherein:

the recess is formed by:

a first wall slanting in a first axial direction; and,

a second wall slanting in a second axial direction, opposite the first axial direction; and,

the protrusion is formed by:

a third wall slanting in the first axial direction; and,

a fourth wall slanting in the second axial direction.

14. The ball bearing of claim 12 , wherein:

the recess is bounded by a rounded wall formed by a single smooth curve;

the protrusion includes a rounded wall formed by a single smooth curve; and,

the rounded wall for the protrusion is matingly engaged with the rounded wall bounding the recess.

15. The ball bearing of claim 12 , wherein:

the recess is formed, in part, by first and second walls orthogonal to the axis of rotation;

the protrusion is formed, in part, by third and fourth walls orthogonal to the axis of rotation; and,

a line parallel to the axis of rotation passes through the first and second walls for the recess and the third and fourth walls for the protrusion.

16. The ball bearing of claim 12 , wherein:

a first line, parallel to the axis of rotation, bisects the second body portion in a radially outward direction;

a second line, parallel to the axis of rotation, is co-linear with, or passes through, a radially innermost surface of the second body; and,

a third line, parallel to the axis of rotation, passes through a center point of the ball and is closer, in the radially outward direction, to the first line than to the second line; or,

a third line, parallel to the axis of rotation, passes through a center point of the ball and is closer, in the radially outward direction, to the second line than to the first line.

17. A method of reducing rattle in a bearing including an outer ring, an inner ring located radially inward of the outer ring, a cage located radially between the inner and outer rings, and a ball axially located within the cage, comprising:

rotating one of the inner or outer races with respect to the other or the inner or outer races;

engaging a wall of a protrusion, extending radially from the cage, with a wall forming a recess in the inner or outer ring; and,

blocking, through the engagement of the wall of the protrusion with the wall forming the recess:

displacement of the cage with respect to the inner or outer ring; and,

contact of the cage with the ball.

18. The method of claim 17 , further comprising:

blocking, through the engagement of the wall of the protrusion with the wall forming the recess, rocking of the cage with respect to a center point of the ball.

19. The method of claim 17 , further comprising:

damping, with lubricant located in a space between the protrusion and the recess, movement of the protrusion within the recess.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2017
From: MORATZ, WILLIAM
To: SCHAEFFLER TECHNOLOGIES AG & CO. KG
Reel/Frame 040960/0948 →
Cited By (1)
US 12,605,826