IP Library Granted Patent US 8,038,131
Granted Patent B1
US 8,038,131 · App. 12/210,329 · Granted Oct 18, 2011

Air-cushion type shock-absorbing device for a wheeled vehicle

Assignee: Pin Hsiu Rubber Co., Ltd.
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Quick Facts
Patent No.
US 8,038,131
App. No.
12/210,329
Granted
Oct 18, 2011
Kind
B1
Abstract

A shock-absorbing device includes a shock-absorbing cylinder, an air cell mounted on the shock-absorbing cylinder, an upper seal cover mounted on an upper end of the air cell and having a side provided with a mounting portion mounted on the shock-absorbing cylinder, and a lower seal cover mounted on a lower end of the air cell and having a side provided with a mounting section mounted on the shock-absorbing cylinder. Thus, the mounting portion of the upper seal cover and the mounting section of the lower seal cover are directly mounted on the shock-absorbing cylinder, so that the upper seal cover and the lower seal cover are directly mounted on the shock-absorbing cylinder easily and quickly to assemble the shock-absorbing device without needing aid of any screw or other hand tool.

Claims (35)

1. A shock-absorbing device, comprising:

a shock-absorbing cylinder;

an air cell mounted on the shock-absorbing cylinder;

an upper seal cover mounted on an upper end of the air cell and having a side provided with a protruding mounting portion mounted on an upper end of the shock-absorbing cylinder;

a lower seal cover mounted on a lower end of the air cell and having a side provided with a protruding mounting section mounted on a lower end of the shock-absorbing cylinder;

wherein the upper end of the air cell has a periphery provided with a radially and outwardly extending upper retaining flange;

the lower end of the air cell has a periphery provided with a radially and outwardly extending lower retaining flange;

the upper seal cover has a periphery provided with a downward and inward extending bent upper locking hook which is directly hooked onto the upper retaining flange of the air cell so that the upper seal cover is directly mounted on the upper end of the air cell without needing any screw;

the lower seal cover has a periphery provided with an upward and inward extending bent lower locking hook which is directly hooked onto the lower retaining flange of the air cell so that the lower seal cover is directly mounted on the lower end of the air cell without needing any screw.

2. The shock-absorbing device of claim 1 , wherein the mounting portion of the upper seal cover has an inner wall provided with a mounting hole mounted on the upper end of the shock-absorbing cylinder.

3. The shock-absorbing device of claim 2 , wherein the mounting hole of the mounting portion of the upper seal cover is located at a central portion of the mounting portion of the upper seal cover.

4. The shock-absorbing device of claim 2 , wherein the mounting hole of the mounting portion of the upper seal cover extends through a whole thickness of the mounting portion of the upper seal cover.

5. The shock-absorbing device of claim 2 , wherein the mounting hole of the mounting portion of the upper seal cover has a peripheral wall provided with at least one retaining groove to receive at least one upper O-ring which is located between the upper end of the shock-absorbing cylinder and the mounting portion of the upper seal cover.

6. The shock-absorbing device of claim 1 , wherein the mounting section of the lower seal cover has an inner wall provided with a mounting bore mounted on the lower end of the shock-absorbing cylinder.

7. The shock-absorbing device of claim 6 , wherein the mounting bore of the mounting section of the lower seal cover is located at a central portion of the mounting section of the lower seal cover.

8. The shock-absorbing device of claim 6 , wherein the mounting bore of the mounting section of the lower seal cover extends through a whole thickness of the mounting section of the lower seal cover.

9. The shock-absorbing device of claim 6 , wherein the mounting bore of the mounting section of the lower seal cover has a peripheral wall provided with at least one retaining slot to receive at least one lower O-ring which is located between the lower end of the shock-absorbing cylinder and the mounting section of the lower seal cover.

10. The shock-absorbing device of claim 1 , wherein

the upper seal cover has an inner face directed toward the air cell and an outer face located opposite to the inner face;

the mounting portion of the upper seal cover protrudes outwardly from the inner face of the upper seal cover.

11. The shock-absorbing device of claim 10 , wherein

the air cell has an inside provided with a receiving chamber;

the mounting portion of the upper seal cover extends into the receiving chamber of the air cell.

12. The shock-absorbing device of claim 1 , wherein the mounting portion of the upper seal cover is integrally formed on the upper seal cover.

13. The shock-absorbing device of claim 1 , wherein the mounting portion of the upper seal cover is located at a central portion of the upper seal cover.

14. The shock-absorbing device of claim 1 , wherein

the lower seal cover has an inner face directed toward the air cell and an outer face located opposite to the inner face;

the mounting section of the lower seal cover protrudes outwardly from the outer face of the lower seal cover and extends outwardly from the air cell.

15. The shock-absorbing device of claim 1 , wherein the mounting section of the lower seal cover is integrally formed on the lower seal cover.

16. The shock-absorbing device of claim 1 , wherein the mounting section of the lower seal cover is located at a central portion of the lower seal cover.

17. The shock-absorbing device of claim 1 , wherein

the air cell has an inside provided with a receiving chamber;

the mounting section of the lower seal cover has an outer wall provided with an inflation nozzle and has a side provided with a flow channel connected between the inflation nozzle and the receiving chamber of the air cell.

18. The shock-absorbing device of claim 1 , wherein the upper retaining flange of the air cell has an inside provided with a metallic wire.

19. The shock-absorbing device of claim 1 , wherein the lower retaining flange of the air cell has an inside provided with a metallic wire.

Assignments (2)
CHANGE OF NAME Recorded May 28, 2015
From: PIN HSIU RUBBER CO., LTD.
To: PIN HSIU TECHNOLOGY CO., LTD.
Reel/Frame 035786/0276 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2008
From: LIN, CHENG-HSIUNG
To: PIN HSIU RUBBER CO., LTD.
Reel/Frame 021528/0607 →