Claims
- 1. A clutch cover assembly adapted to be attached to a flywheel for engaging and disengaging a friction member with and from the flywheel, said clutch cover assembly comprising:
a clutch cover configured and adapted to be fixedly coupled to the flywheel to rotate therewith; a pressure plate movably coupled to said clutch cover in an axial direction and fixedly coupled to said clutch cover in a rotational direction to rotate; a pushing member movably disposed between said clutch cover and said pressure plate to apply a pushing force on said pressure plate that is directed away from said clutch cover; and a wear compensating mechanism operatively disposed between said clutch cover and said pushing member to axially move a support position of said pushing member directed away from said clutch cover by an amount corresponding to an amount of wear occurring of the friction member, said wear compensating mechanism including
a first inclined surface disposed on a friction member facing side of said clutch cover and extending in a rotating direction, a first ring member rotatably and axially movable with respect to said clutch cover, and having a second inclined surface in complementary contact with said first inclined surface, a biasing member arranged to urge said first ring member in the rotating direction with respect to said clutch cover such that said first ring member moves axially away from said clutch cover, and a restricting mechanism arranged to contact a function member facing side of said first ring member to selectively control axial movement of said first ring member toward the friction member such axial movement of said first ring member toward the friction member occurs when the friction member is worn.
- 2. The clutch cover assembly according to claim 1, wherein
said restricting mechanism includes a wear amount detecting member that is axially movably and frictionally engaged with said clutch cover, said wear amount detecting member contacting a stop surface on said friction member facing side of said first ring member for restricting movement of said first ring member toward the friction member such that said wear amount detecting member moves together with said pressure plate toward the friction member to form a space with respect to said first ring member when the friction member is worn.
- 3. The clutch cover assembly according to claim 2, wherein
said friction compensating mechanism further has a second ring member contacting said friction member facing side of said first ring member, said second ring member being non-rotatably and axially movably engaged with said clutch cover, and having a support portion for supporting said pushing member.
- 4. The clutch cover assembly according to claim 1, wherein
said friction compensating mechanism further has a second ring member contacting said friction member facing side of said first ring member, said second ring member being non-rotatably and axially movably engaged with said clutch cover, and having a support portion for supporting said pushing member.
- 5. The clutch cover assembly according to claim 1, wherein
said pushing member includes a diaphragm spring, at least one lever member and a retainer operatively coupled between said diaphragm spring and said at least one lever member.
- 6. The clutch cover assembly according to claim 2, wherein
said stop surface of said first ring member has a third inclined in complementary contact with a fourth inclined surface on said friction facing side of wear amount detecting member.
- 7. The clutch cover assembly according to claim 6, wherein
said first and second inclined surfaces have angles of inclination that are different from angles of inclination of said third and fourth inclined surfaces.
- 8. The clutch cover assembly according to claim 7, wherein
said angles of inclination said first and second inclined are larger than said angles of inclination of said third and fourth inclined surfaces.
- 9. The clutch cover assembly according to claim 2, wherein
said wear amount detecting member includes a first control member having said fourth inclined surface, a second control member frictionally engaged with said clutch cover so as to be axially movable, and a third control member operatively coupled to said pressure plate to move together with said pressure plate toward the friction member to form said space with respect to said first ring member when the friction member is worn.
- 10. A clutch cover assembly according to claim 9, wherein
said first control member is fixedly coupled to said third control member, and said second member is a cylindrical member having an outer peripheral surface frictionally engaged with an aperture formed in said clutch cover.
- 11. A clutch cover assembly adapted to be attached to a flywheel for engaging and disengaging a friction member with and from the flywheel, said clutch cover assembly comprising:
a clutch cover configured and adapted to be fixedly coupled to the flywheel to rotate therewith; a pressure plate movably coupled to said clutch cover in an axial direction and fixedly coupled to said clutch cover in a rotational direction to rotate; a pushing member movably disposed between said clutch cover and said pressure plate to apply a pushing force on said pressure plate that is directed away from said clutch cover; and a wear compensating mechanism operatively disposed between said clutch cover and said pushing member to axially move a support position of said pushing member directed away from said clutch cover by an amount corresponding to an amount of wear occurring of the friction member, said wear compensating mechanism including
a first ring member rotatably arranged on a friction member side of said clutch cover with a friction member facing side of said first ring member having a first inclined surface extending in a rotating direction, a second ring member non-rotatably but axially movable with respect to said clutch cover and disposed on said friction member facing side of said first ring member, and having a second complementary inclined surface on its clutch cover side contacting said first inclined surface and a support portion on its friction member side supporting said pushing member, and a biasing member arranged to urge said first ring member in the rotating direction with respect to said clutch cover to move said second ring member axially relative to said first ring member.
- 12. The clutch cover assembly according to claim 11, wherein
said wear compensating mechanism further has a restricting mechanism contacting said friction member facing side of said first ring member to prevent movement of said first ring member toward the friction member, but allow movement of said first ring member toward the friction member when the friction member wears.
- 13. The clutch cover assembly according to claim 12, wherein
said restricting mechanism has a wear amount detecting member that is axially movably and frictionally engaged with said clutch cover, said wear amount detecting member contacting a stop surface on said friction member facing side of said first ring member for restricting movement of said first ring member toward the friction member, and said wear amount detecting member being arranged to move axially with said pressure plate toward the friction member to form a space with respect to said first ring member when the friction member is worn.
- 14. The clutch cover assembly according to claim 11, wherein
said pushing member includes a diaphragm spring, at least one lever member and a retainer operatively coupled between said diaphragm spring and said at least one lever member.
- 15. The clutch cover assembly according to claim 13, wherein
said stop surface of said first ring member has a third inclined in complementary contact with a fourth inclined surface on said friction facing side of wear amount detecting member.
- 16. The clutch cover assembly according to claim 15, wherein
said first and second inclined surfaces have angles of inclination that are different from angles of inclination of said third and fourth inclined surfaces.
- 17. The clutch cover assembly according to claim 16, wherein
said angles of inclination said first and second inclined are larger than said angles of inclination of said third and fourth inclined surfaces.
- 18. The clutch cover assembly according to claim 13, wherein
said wear amount detecting member includes a first control member having said fourth inclined surface, a second control member frictionally engaged with said clutch cover so as to be axially movable, and a third control member operatively coupled to said pressure plate to move together with said pressure plate toward the friction member to form said space with respect to said first ring member when the friction member is worn.
- 19. A clutch cover assembly according to claim 18, wherein
said first control member is fixedly coupled to said third control member, and said second member is a cylindrical member having an outer peripheral surface frictionally engaged with an aperture formed in said clutch cover.
- 20. A clutch cover assembly adapted to be attached to a flywheel for engaging and disengaging a friction member with and from the flywheel, said clutch cover assembly comprising:
a clutch cover configured and adapted to be fixedly coupled to the flywheel to rotate therewith; a pressure plate movably coupled to said clutch cover in an axial direction and fixedly coupled to said clutch cover in a rotational direction to rotate; a pushing member movably disposed between said clutch cover and said pressure plate to apply a pushing force on said pressure plate that is directed away from said clutch cover; and a wear compensating mechanism operatively disposed between said clutch cover and said pushing member to axially move a support position of said pushing member directed away from said clutch cover by an amount corresponding to an amount of wear occurring of the friction member, said wear compensating mechanism including
a first inclined surface integrally formed with a surface on a friction member facing side of said clutch cover and extending in a rotating direction, a first ring member having a second inclined surface that is in complementary contact with said first inclined surface, and being axially movable and rotatable with respect to said clutch cover, and a biasing member arranged to urge said first ring member in the rotating direction with respect to said clutch cover to move said first ring member axially relative to said clutch cover.
- 21. The clutch cover assembly according to claim 20, wherein
said wear compensating mechanism further includes a second ring member arranged to contact a friction member facing side of said first ring member such that said second ring member is non-rotatably but axially movable with respect to said clutch cover, and said second ring member having a support portion for supporting said pushing member.
- 22. The clutch cover assembly according to claim 20, wherein
said biasing member is configured to function between said first and second ring members.
- 23. The clutch cover assembly according to claim 22, wherein
said biasing member is disposed in a space formed between said first and second ring members.
- 24. The clutch cover assembly according to claim 20, wherein
said wear compensating mechanism further includes a wear amount detecting member that is axially movably and frictionally engaged with said clutch cover, and said wear amount detecting member being operatively coupled to move axially with said pressure plate toward the friction member when the friction member is worn.
- 25. The clutch cover assembly according to claim 20, wherein
said pushing member includes a diaphragm spring, at least one lever member and a retainer operatively coupled between said diaphragm spring and said at least one lever member.
- 26. The clutch cover assembly according to claim 20, wherein
said wear compensating mechanism further includes stop mechanism operatively coupled to said first ring member and arranged to operate by centrifugal force to prevent relative rotation of said first ring member with respect to said clutch cover upon rotation of said clutch cover assembly above a predetermined speed.
- 27. The clutch cover assembly according to claim 26, wherein
said stop mechanism includes a lock member movably coupled to said clutch cover between a release position and a stopping position.
- 28. The clutch cover assembly according to claim 27, wherein
said lock member is normally urged to said stopping position by a spring member.
- 29. The clutch cover assembly according to claim 28, wherein
said first ring member includes teeth that are arranged to be engaged by said lock member when said clutch cover assembly rotates above said predetermined speed.
Priority Claims (3)
Number |
Date |
Country |
Kind |
2000-093358 |
Mar 2000 |
JP |
|
2000-117786 |
Apr 2000 |
JP |
|
2000-117787 |
Apr 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part application of U.S. patent application Ser. No. 09/457,301, filed on Dec. 9, 1999. The entire disclosure of U.S. patent application Ser. No. 09/457,301 is hereby incorporated herein by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09457301 |
Dec 1999 |
US |
Child |
09813897 |
Mar 2001 |
US |