IP Library Granted Patent US 8,904,895
Granted Patent B2
US 8,904,895 · App. 11/081,015 · Granted Dec 9, 2014

Drive for an adjustment device with a worm wheel having a globoid toothing with a cylindrical section

Inventors: Michael Woehrle (Niedereschbach, DE); Andreas Voeckt (Geisingen, DE)
Assignee: IMS Gear GmbH
F16H1/16
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Quick Facts
Patent No.
US 8,904,895
App. No.
11/081,015
Granted
Dec 9, 2014
Kind
B2
Abstract

A worm wheel including first toothing regions transitioning into and on either side of a second toothing region and a complete annular surface on both ends of the worm wheel. The first toothing regions may have a constant outer diameter and the second toothing region may be depressed relative to the first toothing region. The first toothing regions may be globoid toothing regions and the second toothing region may be a cylindrical toothing region.

Claims (27)

1. A drive assembly, comprising:

a drive worm; and

a worm wheel configured to engage the drive worm, the worm wheel having first toothing regions axially transitioning into and on either side of a second toothing region and an annular surface on opposing ends of the worm wheel, where each first toothing region has globoid toothing and first tooth crowns, where the second toothing region has cylindrical toothing and second tooth crowns, and where the globoid toothing and the cylindrical toothing define toothing grooves, where the toothing grooves are obliquely orientated by a predetermined angle α to a longitudinal axis of the worm wheel, and where the angle α is between 5° and 20°.

2. The drive assembly of claim 1 , where the second tooth crowns are depressed relative to the first tooth crowns.

3. The drive assembly of claim 2 , further comprising:

a spindle;

a motor; and

a gear mechanism configured to move longitudinally about the spindle, where the gear mechanism comprises the drive worm and the worm wheel, and where the drive worm is propelled by the motor.

4. The drive assembly in claim 3 , where the second toothing region is centered relative to a longitudinal axis of the worm wheel.

5. The drive assembly in claim 3 , where the annular surfaces extend to the outer diameter of the first toothing regions.

6. The drive assembly in claim 3 , where the annular surfaces extend to an intermediate diameter between tooth roots and the tooth crowns of the first toothing regions.

7. The drive assembly in claim 3 , where the annular surfaces are at least approximately as large as bearing bushings of a housing accommodating the gear mechanism.

8. The drive assembly in claim 3 , where the second toothing region is configured to axially extend a distance that compensates for an axial play, two times an axial misalignment and two times an expected wear between the worm gear and the drive worm.

9. The drive assembly in claim 3 , where a circular arc section extends on both sides from a central straight section defined by a tooth bottom land.

10. The drive assembly in claim 3 , where the worm wheel has an internal thread configured to engage the spindle.

11. The drive assembly in claim 3 , where the spindle is fixed and the worm wheel is located rotatably on the spindle.

12. The drive assembly of claim 3 , where the worm wheel is a milled metal part.

13. The drive assembly in claim 3 , further comprising annular projections formed as integrated components on both ends of the worm wheel.

14. The drive assembly in claim 3 , further comprising a vehicle seat fixedly configured to the drive.

15. A drive assembly, comprising:

a drive worm; and

a worm wheel configured to engage the drive worm, the worm wheel having first toothing regions axially transitioning into and on either side of a second toothing region and an annular surface on opposing ends of the worm wheel, where each first toothing region has globoid toothing and first tooth crowns, where the second toothing region has cylindrical toothing and second tooth crowns, and where the globoid toothing and the cylindrical toothing define toothing grooves, where the toothing grooves are obliquely orientated by a predetermined angle α to a longitudinal axis of the worm wheel, and where the angle α is between 5° and 20°,

where the worm wheel has an internal thread configured to engage a spindle, and a vehicle seat is fixedly configured to the drive.

16. A drive assembly, comprising:

a drive worm; and

a worm wheel configured to engage the drive worm, the worm wheel having first toothing regions axially transitioning into and on either side of a second toothing region and an annular surface on opposing ends of the worm wheel, where each first toothing region has globoid toothing and first tooth crowns, where the second toothing region has cylindrical toothing and second tooth crowns, and where the globoid toothing and the cylindrical toothing define toothing grooves, where the toothing grooves are obliquely orientated by a predetermined angle α to a longitudinal axis of the worm wheel, and where the angle α is between 5° and 20°,

where the worm wheel has an internal thread configured to engage a spindle, and the second toothing region is substantially centered relative to a longitudinal axis of the worm wheel.

Assignments (4)
CHANGE OF NAME Recorded Dec 30, 2016
From: IMS GEAR GMBH
To: IMS GEAR SE & CO. KGAA
Reel/Frame 041227/0895 →
CHANGE OF NAME Recorded Nov 28, 2016
From: IMS GEAR GMBH
To: IMS GEAR SE & CO. KGAA
Reel/Frame 040689/0578 →
RE-RECORD TO CORRECT CONVEYING NAME PREVIOUSLY RECORDED AT REEL 016174 FRAME 0407 Recorded May 4, 2006
From: WOEHRLE, MICHAEL; VOECKT, ANDREAS
To: IMS GEAR GMBH
Reel/Frame 017600/0659 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2005
From: WOEHLRE, MICHAEL; VOECKT, ANDREAS
To: IMS GEAR GMBH
Reel/Frame 016174/0407 →
Priority Claims (1)
DE 10 2004 013 009 · Mar 16, 2004 · national
Continuity (1)
Related Publication 20050269478A1 · Dec 8, 2005