IP Library Granted Patent US 7,410,201
Granted Patent B1
US 7,410,201 · App. 10/976,951 · Granted Aug 12, 2008

Actuator structure and method for attaching a gear or pulley to lead screw

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Quick Facts
Patent No.
US 7,410,201
App. No.
10/976,951
Granted
Aug 12, 2008
Kind
B1
Abstract

An improved lead screw actuator for use in applications including power vehicle windows is provided that significantly reduces the amount of machining that must be performed on the lead screw to enable secure attachment of a gear or pulley. The lead screw has a plurality of threads on its outer annular surface and a first and second axially spaced circumferential groove. A gear or pulley disposed about the lead screw has a female thread formed into an inner annular surface that is configured to engage at least one of the plurality of threads of the lead screw between the first and second grooves. A pair of rings are disposed within the first and second grooves in order to restrict axial movement of the gear or pulley on the lead screw.

Claims (46)

1. An actuator, comprising:

a motor having an output shaft extending therefrom;

a lead screw disposed about an axis of rotation, said lead screw having a plurality of threads and said lead screw defining first and second axially spaced circumferential grooves;

a driven member rotatably driven by said motor shaft and disposed about said lead screw, said driven member having a female thread formed into an inner annular surface of said driven member and configured to engage one of said plurality of threads of said lead screw between said first and second grooves; and,

first and second rings disposed within said first and second grooves.

2. The actuator of claim 1 wherein said driven member comprises a gear.

3. The actuator of claim 2 further comprising a pinion gear disposed about said output shaft, said pinion gear having a plurality of teeth formed into an outer annular surface of said pinion gear and configured to engage a corresponding plurality of teeth on an outer surface of said driven member.

4. The actuator of claim 1 wherein said driven member comprises a pulley.

5. The actuator of claim 4 , further comprising:

a pinion gear disposed about said output shaft; and,

a belt disposed about said pinion gear and said pulley

wherein said pinion gear and said pulley each have a plurality of teeth on radially outer surfaces of said pinion gear and pulley, respectively, and said belt includes a plurality of teeth on one side of said belt configured to engage said plurality of teeth on said pinion gear and said plurality of teeth on said pulley.

6. The actuator of claim 5 wherein said plurality of teeth on said pinion gear are disengaged from said plurality of teeth on said pulley.

7. The actuator of claim 4 wherein said pulley comprises:

a annular body having a plurality of teeth disposed on a radially outer surface; and,

first and second discs disposed on opposite axial ends of said body, said first and second discs having a larger outer diameter than said annular body.

8. The actuator of claim 1 wherein said axis of rotation of said lead screw is different than an axis of rotation of said output shaft.

9. The actuator of claim 1 wherein a first axial side of said driven member abuts one axial side of said first ring and a second axial side of said driven member abuts one axial side of said second ring.

10. A method for attaching a driven member to a lead screw, comprising the steps of:

(a) providing said driven member with a female thread formed into an inner annular surface of said driven member;

(b) providing said lead screw with first and second grooves in an outer annular surface of said lead screw;

(c) positioning a first ring in said first groove of said lead screw;

(d) screwing said driven member onto said lead screw so that a first axial side of said driven member faces said first ring; and

(e) positioning a second ring in said second groove of said lead screw wherein said second ring faces a second axial side of said driven member.

11. The method of claim 10 wherein said driven member comprises a gear.

12. The method of claim 10 wherein said driven member comprises a pulley.

13. A vehicle window assembly, comprising:

a frame defining an aperture;

a window pane movable within said frame to close and at least partially open said aperture;

a motor having an output shaft extending therefrom;

a lead screw disposed about an axis of rotation, said lead screw having a plurality of threads and said lead screw defining first and second axially spaced circumferential grooves;

a driven member rotatably driven by said motor shaft and disposed about said lead screw, said driven member having a female thread formed into an inner annular surface of said driven member and configured to engage one of said plurality of threads of said lead screw between said first and second grooves;

first and second rings disposed within said first and second grooves; and,

a nut disposed about said lead screw and attached to said window pane.

14. The actuator of claim 13 wherein said driven member comprises a gear.

15. The actuator of claim 14 further comprising a pinion gear disposed about said output shaft, said pinion gear having a plurality of teeth formed into an outer annular surface of said pinion gear and configured to engage a corresponding plurality of teeth on an outer surface of said driven member.

16. The actuator of claim 13 wherein said driven member comprises a pulley.

17. The actuator of claim 16 , further comprising:

a pinion gear disposed about said output shaft; and,

a belt disposed about said pinion gear and said pulley

wherein said pinion gear and said pulley each have a plurality of teeth on radially outer surfaces of said pinion gear and pulley, respectively, and said belt includes a plurality of teeth on one side of said belt configured to engage said plurality of teeth on said pinion gear and said plurality of teeth on said pulley.

18. The actuator of claim 16 wherein said pulley comprises:

a annular body having a plurality of teeth disposed on a radially outer surface; and,

first and second discs disposed on opposite axial ends of said body, said first and second discs having a larger outer diameter than said annular body.

19. The actuator of claim 13 wherein said axis of rotation of said lead screw is different than an axis of rotation of said output shaft.

20. The actuator of claim 13 wherein a first axial side of said driven member abuts one axial side of said first ring and a second axial side of said driven member abuts one axial side of said second ring.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Jun 29, 2020
From: CITIBANK, N.A.
To: DANA HEAVY VEHICLE SYSTEMS GROUP, LLC; DANA AUTOMOTIVE SYSTEMS GROUP, LLC; DANA LIMITED; FAIRFIELD MANUFACTURING COMPANY, INC.
Reel/Frame 053309/0686 →
SECURITY AGREEMENT (BRIDGE) Recorded Apr 21, 2020
From: DANA HEAVY VEHICLE SYSTEMS GROUP, LLC; DANA LIMITED; DANA AUTOMOTIVE SYSTEMS GROUP, LLC; FAIRFIELD MANUFACTURING COMPANY, INC.
To: CITIBANK, N.A.
Reel/Frame 052459/0001 →
SECURITY AGREEMENT SUPPLEMENT Recorded Apr 21, 2020
From: DANA HEAVY VEHICLE SYSTEMS GROUP, LLC; DANA LIMITED; DANA AUTOMOTIVE SYSTEMS GROUP, LLC; FAIRFIELD MANUFACTURING COMPANY, INC.
To: CITIBANK, N.A.
Reel/Frame 052459/0224 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2008
From: DANA CORPORATION
To: DANA AUTOMOTIVE SYSTEMS GROUP, LLC
Reel/Frame 020540/0476 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2004
From: WILSON, DARYL; STRONG, SCOTT L.
To: DANA CORPORATION
Reel/Frame 015941/0863 →