IP Library Granted Patent US 10,088,032
Granted Patent B2
US 10,088,032 · App. 15/616,367 · Granted Oct 2, 2018

Lead screw nut device

Inventors: Jim Lamson (Milford, NH); Keith Knight (Milford, NH)
Assignee: Haydon Kerk Motion Solutions, Inc.
F16H57/0006F16C27/063F16H25/24
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Quick Facts
Patent No.
US 10,088,032
App. No.
15/616,367
Granted
Oct 2, 2018
Kind
B2
Abstract

A centralizing bushing assembly includes a bushing housing having axial ends and an opening extending therethrough along an axial axis. The opening can have a pocket extending outwardly from the axial axis within the bushing housing and have internal shoulders axially facing each other. A bushing ring can be positioned within the pocket of the bushing housing between the internal shoulders. The bushing ring can have a split for allowing collapsing of the bushing ring radially inward and have an inner diameter for slidably engaging an axially movable shaft extending through the bushing housing along the axial axis and also have an outer shoulder. A resilient biasing member can be positioned against the outer shoulder of the bushing ring for radially biasing the inner diameter of the bushing ring radially inwardly in a centralizing manner about the axial axis for engaging and centralizing the shaft slidably positioned therethrough.

Claims (29)

1. A centralizing bushing assembly comprising:

a bushing housing having axial ends and an opening extending therethrough along an axial axis, the opening including a pocket extending outwardly from the axial axis within the bushing housing and having internal shoulders facing each other;

a bushing ring positioned within the pocket of the bushing housing between the internal shoulders, the bushing ring having a split for allowing collapsing of the bushing ring radially inward, an inner diameter for slidably engaging an axially movable shaft extending through the bushing housing along the axial axis, and an outer shoulder; and

a resilient biasing member positioned against the outer shoulder of the bushing ring radially biasing the inner diameter of the bushing ring radially inwardly in a centralizing manner about the axial axis for engaging and centralizing the shaft slidably positioned therethrough.

2. The assembly of claim 1 in which the opening through the bushing housing includes a smaller diameter hole connected to the pocket which has a larger diameter.

3. The assembly of claim 2 in which the resilient biasing member comprises a resilient O-ring.

4. The assembly of claim 3 in which the pocket within the bushing housing has an angled surface which biases the O-ring both radially inwardly and axially, for biasing the inner diameter of the bushing ring radially inwardly, and for biasing the bushing ring axially against one internal shoulder.

5. The assembly of claim 4 further comprising a lead screw shaft extending through the bushing housing and threadably engaging a threaded nut within the smaller diameter hole, the bushing ring resiliently engaging outer surfaces of the lead screw for centering the lead screw relative to the threaded nut for proper contact therebetween and damping noise.

6. The assembly of claim 5 in which the pocket is located at one axial end of the bushing housing.

7. The assembly of claim 1 in which the bushing ring includes a radial flange extending radially outward from the outer shoulder at one axial end of the bushing ring for engaging against said one internal shoulder of the bushing housing.

8. A centralizing lead screw bushing assembly comprising:

a bushing housing having axial ends and an opening extending therethrough along an axial axis, the opening including a pocket extending outwardly from the axial axis within the bushing housing and having internal shoulders facing each other, and a threaded nut axially adjacent to the pocket;

a bushing ring positioned within the pocket of the bushing housing between the internal shoulders, the bushing ring having a split for allowing collapsing of the bushing ring radially inward, an inner diameter for slidably engaging an axially movable lead screw shaft extending through the bushing housing along the axial axis, and an outer shoulder; and

a resilient biasing member positioned against the outer shoulder of the bushing ring radially biasing the inner diameter of the bushing ring radially inwardly in a centralizing manner about the axial axis for engaging and centralizing the lead screw shaft slidably positioned therethrough for centering the lead screw shaft relative to the threaded nut for proper contact therebetween and damping noise.

9. The assembly of claim 8 in which the resilient biasing member comprises a resilient O-ring.

10. The assembly of claim 9 in which the pocket within the bushing housing has an angled surface which biases the O-ring both radially inwardly and axially, for biasing the inner diameter of the bushing ring radially inwardly, and for biasing the bushing ring axially against one internal shoulder.

11. A method of centralizing an axial movable shaft extending within a centralizing bushing assembly, the bushing assembly comprising a bushing housing having axial ends and an opening extending therethrough along an axial axis, the opening including a pocket extending outwardly from the axial axis within the bushing housing and having internal shoulders facing each other, a bushing ring being positioned within the pocket of the bushing housing between the internal shoulders, the bushing ring having a split for collapsing of the bushing ring radially inwardly, an inner diameter and outer shoulder, the method comprising:

slidably engaging the axially movable shaft extending through the bushing housing along the axial axis with the inner diameter of the bushing ring; and

resiliently biasing the inner diameter of the bushing ring radially inwardly against the shaft in a centralizing manner about the axial axis with a resilient biasing member positioned against the outer shoulder of the bushing ring, thereby centralizing the shaft.

12. The method of claim 11 wherein the opening through the bushing housing includes a smaller diameter hole connected to the pocket which has a larger diameter.

13. The method of claim 12 wherein the resilient biasing member comprises a resilient O-ring.

14. The method of claim 13 wherein the pocket within the bushing housing has an angled internal surface, the method further comprising biasing the O-ring both radially inwardly and axially with the angled surface for biasing the inner diameter of the bushing ring radially inwardly and for biasing the bushing ring axially against one internal shoulder.

15. The method of claim 14 wherein the shaft is a lead screw extending through the bushing housing and threadably engaging a threaded nut within the smaller diameter hole, the method further comprising resiliently engaging outer surfaces of the lead screw with the bushing ring for centering the lead screw relative to the threaded nut for proper contact therebetween and damping noise.

16. The method of claim 15 wherein the pocket is located at one axial end of the bushing housing.

17. The method of claim 11 wherein the bushing ring includes a radial flange extending radially outward from the outer shoulder at one axial end of the bushing ring for engaging against said one internal shoulder of the bushing housing.

18. A centralizing bushing device comprising:

a bushing housing having axial ends and an opening extending therethrough along an axial axis, the opening including a pocket extending outwardly from the axial axis within the bushing housing and having internal shoulders facing each other;

a bushing ring for positioning within the pocket of the bushing housing between the internal shoulders, the bushing ring having a split for allowing collapsing of the bushing ring radially inward, an inner diameter for slidably engaging an axially movable shaft extending through the bushing housing along the axial axis, and an outer shoulder; and

a resilient biasing member for positioning against the outer shoulder of the bushing ring for radially biasing the inner diameter of the bushing ring radially inwardly in a centralizing manner about the axial axis for engaging and centralizing the shaft slidably positioned therethrough.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2017
From: LAMSON, JIM; KNIGHT, KEITH
To: HAYDON KERK MOTION SOLUTIONS, INC.
Reel/Frame 043906/0184 →
Continuity (2)
Provisional Application 62346844 · Jun 7, 2016
Related Publication 20170350493A1 · Dec 7, 2017