Claims
- 1. In a transmission having a first portion with a first gear ratio and a second portion having an output gear ratio, the first portion including a planetary gear assembly with a ring gear, a sun gear and a planet gear assembly, the planet gear assembly having a planet carrier and a plurality of planet gears, the planet carrier having a plurality of pinions for rotatably supporting the plurality of planet gears and an output sun gear, the plurality of planet gears meshingly engaged with the sun gear and the ring gear, the sun gear receiving a torque input, the output sun gear meshingly engaged with the second portion and outputting an intermediate torque output, the second portion receiving the intermediate torque output and producing an output torque, a clutch assembly for limiting the magnitude of the output torque, the clutch assembly comprising:
an annular clutch member coupled to the ring gear, the clutch member having a predetermined clutch profile; and an engagement assembly having a follower member, the follower member abutting the clutch member and cooperating with the clutch profile to inhibit relative rotation between the clutch member and the follower member when the magnitude of the intermediate torque output is less than a predetermined maximum torque.
- 2. The clutch assembly of claim 1, wherein the annular clutch member and the ring gear are unitarily formed.
- 3. The clutch assembly of claim 1, wherein an impact absorbing structure is disposed between the ring gear and the annular clutch member.
- 4. The clutch assembly of claim 3, wherein at least one of the annular clutch member and the impact absorbing structure includes a locking element for engaging a mating locking element formed on the ring gear, the locking element engaging the mating locking element to prevent relative rotation between the ring gear and the at least one of the annular clutch member and the impact absorbing structure.
- 5. The clutch assembly of claim 1, wherein the engagement assembly includes a spring member to bias the follower member against the clutch member to inhibit relative rotation between the clutch member and the follower member when the magnitude of the intermediate torque output is less than a predetermined maximum torque.
- 6. The clutch assembly of claim 5, further comprising an adjustment mechanism for selectively adjusting a force exerted by the spring member onto the follower member.
- 7. The clutch assembly of claim 1, wherein the follower member includes a spherical end section for contacting the clutch profile.
- 8. The clutch assembly of claim 1, wherein the clutch profile is sinusoidally shaped.
- 9. The clutch assembly of claim 1, wherein the clutch profile includes a plurality of tapered ramps.
- 10. The clutch assembly of claim 1, wherein the follower member is movable along an axis that is parallel to the longitudinal centerline of the ring gear.
- 11. A power tool comprising:
a motor having an output shaft; a transmission having a first portion with a first gear ratio and a second portion having an output gear ratio, the first portion including a planetary gear assembly with a ring gear, a sun gear and a planet gear assembly, the planet gear assembly having a planet carrier and a plurality of planet gears, the planet carrier having a plurality of pinions for rotatably supporting the plurality of planet gears and an output sun gear, the plurality of planet gears meshingly engaged with the sun gear and the ring gear, the sun gear coupled to the output shaft and receiving a torque input from the motor, the output sun gear meshingly engaged with the second portion and outputting an intermediate torque output, the second portion receiving the intermediate torque output and producing an output torque; and a clutch assembly for limiting the magnitude of the output torque, the clutch assembly having an annular clutch member and an engagement assembly, the clutch member coupled to the ring gear, the clutch member having a predetermined clutch profile and the engagement assembly having a follower member, the follower member abutting the clutch member and cooperating with the clutch profile to inhibit relative rotation between the clutch member and the follower member when the magnitude of the intermediate torque output is less than a predetermined maximum torque.
- 12. The power tool of claim 11, wherein the annular clutch member and the ring gear are unitarily formed.
- 13. The power tool of claim 11, wherein an impact absorbing structure is disposed between the ring gear and the annular clutch member.
- 14. The power tool of claim 13, wherein at least one of the annular clutch member and the impact absorbing structure includes a locking element for engaging a mating locking element formed on the ring gear, the locking element engaging the mating locking element to prevent relative rotation between the ring gear and the at least one of the annular clutch member and the impact absorbing structure.
- 15. The power tool of claim 11, wherein the engagement assembly includes a spring member to bias the follower member against the clutch member to inhibit relative rotation between the clutch member and the follower member when the magnitude of the intermediate torque output is less than a predetermined maximum torque.
- 16. The power tool of claim 15, further comprising an adjustment mechanism for selectively adjusting a force exerted by the spring member onto the follower member.
- 17. The power tool of claim 11, wherein the follower member includes a spherical tip portion for contacting the clutch profile.
- 18. The power tool of claim 11, wherein the clutch profile is sinusoidally shaped.
- 19. The power tool of claim 11, wherein the clutch profile includes a plurality of tapered ramps.
- 20. The power tool of claim 11, wherein the follower member is movable along an axis parallel the longitudinal centerline of the ring gear.
- 21. In a transmission having a first portion with a first gear ratio and a second portion having an output gear ratio, the first portion receiving a torque input and producing an intermediate torque output, the second portion receiving the intermediate torque output and producing an output torque, a clutch assembly for limiting the magnitude of the output torque, the clutch assembly comprising:
a clutch member against which the intermediate torque output is exerted, the clutch member being operable in a first condition, wherein torque transmission to the second portion is permitted, and a second condition, wherein torque transmission to the second portion is inhibited; and an engagement assembly having a follower member in engagement with the first structure; wherein engagement between the follower member and the clutch member is operable for maintaining the clutch member in the second condition when a magnitude of the torque input is less than a predetermined maximum torque and wherein the clutch is maintained in the first condition when the magnitude of the torque input is not less than the predetermined maximum torque.
- 22. A power tool comprising:
a motor having an output shaft; a pinion coupled for rotation with the output shaft of the motor; a three-stage, three-speed planetary transmission having a first planetary portion that includes a plurality of planet gears and a ring gear, the planet gears being in meshing engagement with the pinion and the ring gear; and a clutch assembly for limiting a torsional output of the three-stage, three-speed planetary transmission, the clutch assembly having an annular clutch member and an engagement assembly, the clutch member being coupled to the ring gear and having a predetermined clutch profile, the engagement assembly having a follower member and an adjustment mechanism, the adjustment mechanism being configured to produce a biasing force of a predetermined magnitude to bias the follower member into abutment with the clutch member, the follower member cooperating with the clutch profile to inhibit relative rotation between the clutch member and the follower member when the torsional output of the three-stage, three-speed planetary transmission is less than a predetermined maximum torque.
PRIORITY & CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/263,379, filed Jan. 23, 2001. Other features of the present invention are discussed and claimed in commonly assigned copending U.S. application Ser. No. ______ entitled Multispeed Power Tool Transmission; U.S. application Ser. No. ______ entitled 360 Degree Clutch Collar; and U.S. application Ser. No. ______ entitled Housing with Functional Overmold Member.
Provisional Applications (1)
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Number |
Date |
Country |
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60263379 |
Jan 2001 |
US |