Claims
- 1. An axial pawl ratchet mechanism comprising:
a first disc including axial gear teeth on a first side providing for ratcheting in a first direction; a second disc having axial gear teeth and peripheral radial gear teeth and disposed so that the first disc axial gear teeth are engageable with the second disc axial gear teeth to provide an axial pawl ratchet assembly; a ratchet head having an opening having inner diameter teeth and disposed for receiving the axial pawl ratchet assembly therein so that the peripheral gear teeth of the second disc engage the inner diameter teeth of the ratchet head in order to transfer torque between the ratchet head and the axial pawl ratchet assembly; and an actuator coupled to the axial pawl ratchet assembly for adjusting the position of the axial pawl ratchet assembly between a first engagement position and a second engagement position, so that in the first engagement position the first and second discs will ratchet in a first direction and transmit torque in a second direction and in the second engagement position the first and second discs will ratchet in the second direction and transmit torque in the first direction.
- 2. The axial pawl ratchet mechanism of claim 1 wherein the first disc includes a second side having axial gear teeth that provide for ratcheting in the second direction.
- 3. The axial pawl ratchet mechanism of claim 2 further comprising a third disc having axial gear teeth, the third disc being mounted to the second side of the first disc so that the first disc axial gear teeth engage the axial gear teeth of the third disc.
- 4. The axial pawl ratchet mechanism of claim 1 wherein the ratchet head includes a drive body having a drive end and an adjustment end.
- 5. The axial pawl ratchet mechanism of claim 1 wherein the actuator includes a drive body having a pawl carrier to which the axial pawl ratchet assembly is maintained in order to actuate between the first and second engagement positions.
- 6. The axial pawl ratchet mechanism of claim 1 wherein the axial gear teeth of the first and second discs pass over one another to provide overrunning or ratcheting.
- 7. The axial pawl ratchet mechanism of claim 1 wherein the ratchet head is oscillated and rotates the second disc via the peripheral radial gear teeth interconnected with the inner diameter teeth of the ratchet head.
- 8. The axial pawl ratchet mechanism of claim 4 wherein the actuator is attached to the adjustment end of the drive body and the actuator may provide for adjusting of the axial position of the drive body within the opening between the first engagement position and the second engagement position.
- 9. The axial pawl ratchet mechanism of claim 4 wherein the drive body includes an outer diameter engagement portion for engaging inner diameter teeth of a third disc.
- 10. The axial pawl ratchet mechanism of claim 4 wherein the first and second discs and the drive body are assembled together to form the axial pawl ratchet assembly and the drive body provides for rotation of the first and second discs.
- 11. The axial pawl ratchet mechanism of claim 4 further comprising a pawl spring mounted to the drive body and the pawl spring received by and biasing the first disc by use of a selector knob attached to the drive body.
- 12. The axial pawl ratchet mechanism of claim 4 wherein torque is transmitted from the second disc through the first disc and into the third disc.
- 13. The axial pawl ratchet mechanism of claim 4 wherein ratchet head may be reversed so that a first mechanism including an axial pawl ratchet assembly may lock-up in order to backstop the drive body.
- 14. The axial pawl ratchet mechanism of claim 4 wherein a second mechanism including the axial pawl ratchet assembly may provide a backstop to the ratchet head to provide anti-chatter friction so that every advance given by oscillating the second mechanism is used and prevents slippage.
- 15. The axial pawl ratchet mechanism of claim 4 wherein the third disc is locked to the drive body and the drive body may rotate within the opening of the ratchet head.
- 16. The axial pawl ratchet mechanism of claim 15 wherein the second disc is fixed within the ratchet head and the axial gear teeth on the first side of the first disc ratchet against the axial gear teeth of the second disc upon rotation of the drive body.
- 17. The axial pawl ratchet mechanism of claim 15 wherein the axial gear teeth of the second side of the first disc will oscillate on the axial gear teeth of the third disc against which the first disc is biased.
- 18. The axial pawl ratchet mechanism of claim 4 wherein in the first engagement position, the axial pawl ratchet assembly is adjusted radially and the first disc and the second disc will ratchet only in a first direction and transmit torque in a second direction to the drive body.
- 19. The axial pawl ratchet mechanism of claim 6 wherein in the second engagement position, the first disc is adjusted radially so that it shifts its position engaging the third disc so that the first disc will ratchet only in a second direction and transmit torque in the first direction to the drive body.
- 20. A wrench comprising:
a ratchet head including a bore having an inner diameter having teeth forming first and second rows; first and second pawl discs each having peripheral gear teeth and axial gear teeth; a ratchet disc having first and second sides, each having axial gear teeth and the ratchet disc being mounted between the first and second pawl discs providing a backstopping assembly where the axial gear teeth of the first side of the ratchet disc engage the axial gear teeth of the first pawl disc and the axial gear teeth of the second side of the ratchet disc engage the axial gear teeth of the second pawl disc; and an actuator mounted in the ratchet head and coupled to the backstopping assembly in order to move the axial pawl ratchet assembly between a first position where the first pawl disc has peripheral gear teeth engage the first row of teeth of the ratchet head so that the first pawl disc will ratchet in a first direction and transmit torque in a second direction and a second position where the second pawl disc has peripheral gear teeth engage the second row of teeth of the ratchet head so that the second pawl disc will ratchet in the second direction and transmit torque in the first direction.
- 21. The wrench of claim 20 wherein the ratchet disc is a bidirectional disc.
- 22. The wrench of claim 20 wherein the actuator comprises a selector knob.
- 23. The wrench of claim 20 wherein the actuator includes a drive body having a drive end and an adjustment end.
- 24. The wrench of claim 23 wherein the actuator may provide for adjustment axially within the bore between a first position and a second position via adjustment to the adjustment end.
- 25. The wrench of claim 23 wherein the adjustment end includes a pawl carrier having a channel for controlling axial movement of the actuator within the ratchet head, so that in the first position, the first pawl disc will ratchet only in a first direction and transmit torque in the second direction to the drive body.
- 26. The wrench of claim 23 further comprising a selector knob attached to the adjustment end.
- 27. The wrench of claim 23 wherein the ratchet head includes an oscillating means.
- 28. An axial pawl ratchet mechanism comprising:
a pawl disc including axial gear teeth on a first side providing for ratcheting in a first direction and a second side having axial gear teeth; a ratchet disc having axial gear teeth and peripheral radial gear teeth and disposed so that the first disc axial gear teeth are engageable with the pawl disc axial gear teeth; a ramp disc is provided having axial gear teeth and the ramp disc is mounted to the second side of the pawl disc so that the pawl disc axial gear teeth engage the ramp disc axial gear teeth and the pawl disc, ratchet disc and ramp disc providing an axial pawl ratchet assembly; a ratchet head having an opening having inner diameter teeth and disposed for receiving the axial pawl ratchet assembly therein so that the peripheral gear teeth of the ratchet disc engage the inner diameter teeth of the ratchet head in order to transfer torque between the ratchet head and the axial pawl ratchet assembly; and an actuator coupled to the axial pawl ratchet assembly for adjusting the radial position of the axial pawl ratchet assembly between a first engagement position and a second engagement position, so that in the first engagement position the ratchet disc is fixed within the ratchet head and the pawl disc can overrun or ratchet along the ratcheting disc and pawl disc interface while oscillating on the ramp disc against which it is biased in a left or right position so that the pawl disc and the ratchet disc will ratchet in a first direction and transmit torque in a second direction and in the second engagement position the pawl disc is biased in the other of the left or right position against the ramp disc and the pawl disc and the ratchet disc will ratchet in the second direction and transmit torque in the first direction.
- 29. The axial pawl ratchet mechanism of claim 28 wherein a pawl spring is mounted to the actuator and an end of the pawl spring is received by and biases the pawl disc via a selector knob attached to the actuator.
- 30. The axial pawl ratchet mechanism of claim 29 wherein the torque is transmitted from the ratchet disc through the pawl disc and into the ramp disc.
- 31. The axial pawl ratchet mechanism of claim 30 wherein the ramp disc is locked to the drive body and the drive body may rotate.
- 32. The axial pawl ratchet mechanism of claim 31 wherein the ratchet head is reversed so that a first mechanism including an axial pawl ratchet assembly may lock up in order to backstop the drive body.
- 33. The axial pawl ratchet mechanism of claim 31 wherein a second mechanism including the axial pawl ratchet assembly may provide a backstop to the ratchet head to provide anti-chatter friction so that every advance given by oscillating the second mechanism is used and prevents slippage.
RELATED APPLICATION
[0001] This application claims the benefit of the filing date of provisional application serial No. 60/438,708 filed Jan. 8, 2003.
Provisional Applications (1)
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Number |
Date |
Country |
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60438708 |
Jan 2003 |
US |