Claims
- 1. A compression release mechanism for relieving compression during engine starting in an internal combustion engine having a camshaft rotatably disposed within a housing, the camshaft having inboard and outboard cams and a cam gear disposed thereon, said mechanism comprising:a flyweight having a hub extending substantially perpendicularly therefrom, a non-cylindrically shaped bore disposed in said hub; and a release pin disposed substantially axially parallel to the camshaft, said release pin including a first end having a shape corresponding to said bore, said first end received in said bore, said release pin having a lift member disposed at a second end thereof, said lift member adapted to selectively engage a valve actuation device, and further comprising an adhesive proximate said first end of said release pin, wherein said release pin is adhesively secured to said flyweight.
- 2. A compression release mechanism for relieving compression during engine starting in an internal combustion engine having a camshaft rotatably disposed within a housing, the camshaft having inboard and outboard cams and a cam gear disposed thereon, said mechanism comprising:a flyweight having a hub extending substantially perpendicularly therefrom, a non-cylindrically shaped bore disposed in said hub; and a release pin disposed substantially axially parallel to the camshaft, said release pin including a first end having a shape corresponding to said bore, said first end received in said bore, said release pin having a lift member disposed at a second end thereof, said lift member adapted to selectively engage a valve actuation device, wherein the release pin includes an annular groove within which a retaining ring is received to thereby retain the release pin in the compression release mechanism.
- 3. The compression release mechanism of claim 2, wherein said complementary shape is a D-shape.
- 4. The compression release mechanism of claim 2, wherein said flyweight is integrally formed in one piece.
- 5. The compression release mechanism of claim 2, wherein said release pin is integrally formed in one piece.
- 6. The compression release mechanism of claim 2, wherein said release pin is rotatably received through the inboard and outboard cams.
- 7. The compression release mechanism of claim 2, wherein said lift member is disposed adjacent a side of the outboard cam, said side facing away from the cam gear.
- 8. A compression release mechanism for relieving compression during engine starting in an internal combustion engine having a camshaft rotatably disposed within a housing, the camshaft having inboard and outboard cams and a cam gear disposed thereon, said mechanism comprising:a one-piece flyweight having a hub extending substantially perpendicularly therefrom, a bore disposed in said hub; and a release pin including a first end having a shape matching said bore, said first end received in said bore, said release pin having a lift member disposed at a second end thereof, said lift member adapted to selectively engage a valve actuation device, said release pin rotatably disposed through the inboard and outboard cams, and further comprising an adhesive proximate said first end of said release pin, wherein said release pin is adhesively secured to said flyweight.
- 9. A compression release mechanism for relieving compression during engine starting in an internal combustion engine having a camshaft rotatably disposed within a housing, the camshaft having inboard and outboard cams and a cam gear disposed thereon, said mechanism comprising:a one-piece flyweight having a hub extending substantially perpendicularly therefrom, a bore disposed in said hub; and a release pin including a first end having a shape matching said bore, said first end received in said bore, said release pin having a lift member disposed at a second end thereof, said lift member adapted to selectively engage a valve actuation device, said release pin rotatably disposed through the inboard and outboard cams, wherein the release pin includes an annular groove within which a retaining ring is received to thereby retain the release pin in the compression release mechanism.
- 10. The compression release mechanism of claim 9, wherein the one-piece flyweight is an integrally molded structure.
- 11. The compression release mechanism of claim 9, wherein the one-piece flyweight is molded from nicad-zinc.
- 12. The compression release mechanism of claim 9, wherein the bore in the hub has a non-cylindrical shape.
- 13. The compression release mechanism of claim 9, wherein the bore is D-shaped.
- 14. The compression release mechanism of claim 9, wherein said release pin is rotatably received through the inboard and outboard cams.
- 15. The compression release mechanism of claim 9, wherein said lift member is disposed adjacent a side of the outboard cam, said side facing away from the cam gear.
- 16. A compression release mechanism for relieving compression during engine starting in an internal combustion engine having a camshaft rotatably disposed within a housing, the camshaft having inboard and outboard cams and a cam gear disposed thereon, said mechanism comprising:a one-piece flyweight having a hub extending substantially perpendicularly therefrom, a bore disposed in said hub; and a release pin including a first end having a shape matching said bore, said first end received in said bore and secured therein by crimping a portion of the hub against the first end of the release pin, said release pin having a lift member disposed at a second end thereof, said lift member adapted to selectively engage a valve actuation device, said release pin rotatably disposed through the inboard and outboard cams.
- 17. The compression release mechanism of claim 16, wherein the crimped portion of the hub is deformed against the release pin.
- 18. The compression release mechanism of claim 16, wherein the release pin is provided with a non-cylindrical portion against which the hub is deformed.
- 19. The compression release mechanism of claim 18, wherein the release pin is provided with a groove into which the hub is deformed.
- 20. The compression release mechanism of claim 16, wherein the one-piece flyweight is an integrally molded structure.
- 21. The compression release mechanism of claim 16, wherein the release pin includes an annular groove within which a retaining ring is received to thereby retain the release pin in the compression release mechanism.
- 22. The compression release mechanism of claim 16, wherein said release pin is rotatably received through the inboard and outboard cams.
- 23. The compression release mechanism of claim 16, wherein said lift member is disposed adjacent a side of the outboard cam, said side facing away from the cam gear.
RELATED APPLICATIONS
The application is based on U.S. Provisional Patent Application Ser. No. 60/166,064, filed Nov. 17, 1999, the complete disclosure of which is hereby expressly incorporated by reference.
US Referenced Citations (18)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0 515 183 |
Nov 1992 |
EP |
59-043913 |
Mar 1984 |
JP |
A 62-265414 |
Nov 1987 |
JP |
WO 0161157 |
Aug 2001 |
WO |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/166064 |
Nov 1999 |
US |