IP Library Granted Patent US 11,624,426
Granted Patent B2
US 11,624,426 · App. 17/018,061 · Granted Apr 11, 2023

Orbital tensioner

Inventors: Sukhdeep Singh (Lasalle, CA); Sangkyu Kim (Milton, CA); Anil Bhalla (London, CA); Michael Koppeser (Windsor, CA)
Assignee: Gates Corporation
F16H7/1218F16H7/0831F16H2007/081F16H2007/0865F16H2007/0874F16H2007/0893
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Quick Facts
Patent No.
US 11,624,426
App. No.
17/018,061
Granted
Apr 11, 2023
Kind
B2
Abstract

A tensioner comprising a base, a ring engaged with the base, the ring rotatable about a center “C” within a base opening, a pulley journalled to the ring, a pivot arm pivotally engaged with the ring, a pulley journalled to the pivot arm, a torsion spring disposed between the ring and the pivot arm for urging the pivot arm, a damping assembly frictionally disposed between the base and the ring, a spring applying a normal load to the damping material, and the damping material having a resistance in the range of greater than 0Ω up to approximately 10,000Ω.

Claims (19)

1. A tensioner comprising:

a base;

a ring engaged with the base, the ring rotatable about a center “C” within a base opening, a pulley journalled to the ring;

a pivot arm pivotally engaged with the ring, a pulley journalled to the pivot arm;

a torsion spring disposed between the ring and the pivot arm for urging the pivot arm;

a damping assembly frictionally disposed between the base and the ring, a spring applying a normal load to the damping assembly; and

the damping assembly comprising a damping material having a resistance in the range of greater than 0Ω up to approximately 10,000Ω and a metallic backing plate for the damping material.

2. The tensioner of claim 1 wherein the pivot arm has a pivot axis that is offset from center “C”.

3. The tensioner of claim 2 further comprising a bushing disposed between the ring and the base to facilitate rotational movement of the ring.

4. The tensioner of claim 1 wherein the damping material comprises at least one conductive ingredient.

5. The tensioner of claim 4 wherein the at least one conductive ingredient is carbon fiber.

6. The tensioner of claim 4 wherein the at least one conductive ingredient is stainless steel fiber.

7. The tensioner as in claim 4 , wherein the damping material further comprises Nylon 66.

8. The tensioner as in claim 1 , wherein the spring comprises a wave spring.

9. The tensioner as in claim 1 , wherein a retaining member attached to the base retains the ring to the base.

10. The tensioner as in claim 1 , further comprising a bushing between the ring and the base, the bushing having a resistance in the range of greater than 0Ω up to approximately 10,000Ω.

11. The tensioner as in claim 10 wherein the bushing comprises stainless steel fibers.

12. The tensioner as in claim 1 , wherein the resistance of the damping material is less than approximately 5000Ω.

13. The tensioner as in claim 6 , wherein the resistance of the bushing is less than approximately 5000Ω.

Continuity (2)
Continuation 15920013 · Mar 13, 2018
Related Publication 20200408283A1 · Dec 31, 2020
Cited By (1)
US 12,404,916