Claims
- 1. A power tool comprising:a housing; a motor mounted in the housing and having an output shaft; an epicyclic gearbox mounted in the housing and having an input end mounted on the motor and an output end; an aperture in the housing, said output end of the gearbox being adjacent said aperture; a drive spindle and a torque control ring of the gearbox, which control ring, when held stationary relative to the gearbox, permits the gearbox to transmit torque to said drive spindle and which, when permitted to rotate in said gearbox, disables said torque transmission; an application mechanism including an actuator engaged with, and resiliently biassed towards, said torque control ring, and an adjustment element displaceable on said application mechanism to adjust the engagement of said actuator with said torque control ring; a chuck shaft driven by said drive spindle; a hammer mechanism engaged with said drive spindle and adapted to impart a superimposed oscillatory motion on the drive spindle and to said chuck shaft, said hammer mechanism including an engagement element, which engagement element in a first position thereof enables said hammer mechanism and in a second position thereof disables said hammer mechanism; and a nose ring rotatable on said housing about said aperture thereof which actuates both said adjustment element of the application mechanism and said engagement element of said hammer mechanism.
- 2. A power tool according to claim 1, wherein said application mechanism has a body, and said adjustment element is screw threaded on said body, and wherein said nose ring serves to rotate said adjustment element so that it advances towards and retreats from said torque control ring to adjust said resilient bias.
- 3. A power tool according to claim 2, wherein a spring is disposed between said actuator and adjustment element to provide said resilient bias.
- 4. A power tool according to claim 3, wherein a plurality of springs is disposed around said body.
- 5. A power tool according to claim 1, wherein said actuator is a ball.
- 6. A power tool according to claim 4, wherein said actuator is a plurality of balls, at least one between each spring and said torque control ring.
- 7. A power tool according to claim 1, wherein said hammer mechanism has a body and comprises a rotary ratchet plate fixed on said chuck shaft, and an axially adjustable facing ratchet plate rotationally fixed in the body.
- 8. A power tool according to claim 7, wherein said engagement element comprises a cam ring angularly adjustable in said body to move said ratchet plates together or apart to engage or disengage respectively the hammer mechanism.
- 9. A power tool according to claim 8, wherein said cam ring includes a lever actuated by said nose ring on rotation thereof relative to the housing.
- 10. A power tool according to claim 7, wherein a return spring is disposed between said engagement element and body and biases said engagement element towards its second position in which it disables said hammer mechanism.
- 11. A power tool according to claim 10, wherein said cam ring includes a lever, which lever is actuated by said nose ring upon rotation thereof relative to the housing only when there is a maximum pressure engagement of said actuator with said torque control ring, actuation of the lever by the nose ring serving to move said lever against the pressure of said return spring to the first position of the engagement element in which said hammer mechanism is disabled.
- 12. A power tool comprising:a housing; a motor in the housing; a gearbox in the housing connected to the motor; a rotary output spindle, driven by the gearbox; a torque control mechanism, to control adjustably the torque output of the gearbox and thereby the torque applied to said output spindle; and a hammer mechanism, selectively enabled to impart axial oscillations on said output spindle; a nose ring rotatably mounted on said housing about said mechanisms and for adjusting the torque control mechanism and enable the hammer mechanism.
- 13. The power tool of claim 12 wherein the hammer mechanism further comprises:a first ratchet mounted to the output spindle for rotation therewith; a cam member axially displaceable in response to limited rotary movement thereof between first and second axial positions and operative to enable said hammer mechanism when moved from the first position to the second position; and a second ratchet engaged with the first ratchet and fixed against rotation with respect to said output shaft when the cam member is in the second position.
- 14. The power tool of claim 13 wherein the axial displacement of the cam member controls the engagement and disengagement of the hammer mechanism.
- 15. The power tool of claim 14 wherein the cam member is rotatably mounted on the output shaft for limited rotary movement.
- 16. The power tool of claim 15 further comprising:a subhousing containing the hammer mechanism, having a sidewall and having an opening through the sidewall; the cam member having an arm projecting through the sidewall; and the nose ring comprising a rib engageable with the arm of the cam member for removing the cam member through the limited rotary movement to displace the cam member between the first and second axial positions.
- 17. A power tool having hammer, drill and driver modes comprising:a main housing; a motor in the housing; a gear box connected to and driven by the motor; a combination mechanism selectively operating in hammer, drill and driver modes and comprising: a subhousing; a chuck shaft connected to and driven by the gear box; the chuck shaft rotatably and axially slidably mounted in the housing body; hammer mechanism located in the subhousing and comprising; a first ratchet fixed to the chuck shaft; a second ratchet fixed relative to the housing body to cause the chuck shaft to axially reciprocate when in the hammer mode; a cam having a first position to disable the hammer mechanism and a second position to enable the hammer mechanism; the cam having a knob for moving the cam between first and second positions; a torque control clutch lockable in the drill mode, settable in a plurality of torque settings in the driver mode, mounted on the subhousing and comprising: an actuator engageable with the gear box to adjust the torque output of the gear box to the chuck shaft in the driver mode and to set the gear box in the drill mode; a control ring adjustably mounted on the subhousing for setting the actuator and thereby the torque output of the gear box; and a nose ring rotatably mounted on the subhousing, engageable with the control ring to set the torque output of the gear box and engageable with the cam knob to shift the cam between the first and second positions to enable and disable the hammer mechanism.
- 18. The tool of claim 17 wherein:the cam in the second position fixes the second ratchet in the subhousing in a location for rotary sliding engagement of the first ratchet relative to the second ratchet.
- 19. A power tool having hammer, drill and driver modes comprising:a main housing; a motor in the housing; a gear box connected and driven by the motor; a combination mechanism selectively operable in hammer, drill and driver modes and comprising: a subhousing; a chuck shaft connected to and driven by the gearbox; the chuck shaft rotatably and axially slidably mounted in the housing body; hammer mechanism located in the housing body and comprising: a pair of ratchets mounted on the chuck shaft, settable in an enabled mode to cause the chuck shaft to axially reciprocate and in a disabled mode; a hammer mode actuator shiftable between a first position to disable the hammer mechanism and a second position to enable the hammer mechanism; a control knob attached to the hammer mode actuator and extending through the subhousing; a torque control clutch lockable in the drill mode, settable in a plurality of torque settings in the driver mode, mounted on the subhousing and comprising: a clutch actuator engageable with the gear box to adjust the torque output of the gear box to the chuck shaft in the driver mode and to set the gear box in the drill mode; a control ring adjustably mounted on the housing body for setting the actuator and thereby the torque output of the gear box; and a nose ring rotatably mounted on the subhousing, engageable with the control ring to set the torque output of the gear box and engageable with the control knob to shift the hammer mode actuator between the first and second positions to enable and disable the hammer mechanism.
- 20. A power tool having hammer, drill and driver modes comprising:a main housing; a motor mounted in the housing and having an output shaft; an epicycle gear box located forwardly of the motor, having an output stage and having an input stage connected to and driven by the output shaft of the motor; a combination mechanism located forwardly of the epicycle gear box and selectively operable in hammer, drill and driver modes and comprising: a subhousing elongated in a fore and aft direction; a chuck shaft extending fore and aft of the subhousing and connected to and driven by the output stage of the gear box; the chuck shaft rotatably and axially slidably mounted in the subhousing; a torque control clutch lockable in the drill mode, settable in a plurality of torque settings in the driver mode, mounted around the periphery of the subhousing and comprising: a clutch actuator engageable with the gear box to adjust the torque output of the gear box to the chuck shaft in the driver mode and to set the gear box in the drill mode; a control ring adjustably mounted on the subhousing for setting the clutch actuator and thereby the torque output of the gear box; the control ring adjustable between a first fore and aft location and a second fore and aft location; the interface between the clutch actuator and the gear box defining a third fore and aft location rearward of the second fore and aft location; hammer mechanism located in the subhousing between the first and third fore and aft locations and comprising: a pair of ratchets mounted on the chuck shaft, settable in an enabled mode to cause the chuck shaft to axially reciprocate and in a disabled mode; and a hammer mode actuator shiftable between a first position to enable the hammer mechanism and a second position to disable the hammer mechanism.
- 21. The power tool of claim 20 wherein:a nose ring rotatably mounted on the subhousing, engageable with the control ring to set the torque output of the gearbox and engageable with the hammer mode actuator to enable and disable the hammer mechanism.
- 22. The power tool of claim 21 wherein:a plurality of the clutch actuators extends fore and aft of the subhousing and are spaced around the periphery of the subhousing, the subhousing has a slot between an two adjacent ones of the plurality of clutch actuators and the hammer mode actuator projects through the slot and is engageable with the nose ring.
- 23. The power tool of claim 20 wherein:the subhousing having a forward section; the forward section has a threaded outer wall; the control ring adjustably supported on the threaded outer wall of the forward section; a bearing rotatably supports the chuck shaft in the forward section of the subhousing and located adjacent to the control ring; and the ratchets are located rearwardly of the bearing.
- 24. A mode control for setting the mode operation of a power tool (1) having a hammer mechanism and an epicycle gear box and (2) having hammer, drill and driver modes, the mode control comprising: a subhousing for the hammer mechanism; the subhousing having a sidewall and an opening in the sidewall; a clutch actuator mounted around the periphery of the housing and engageable with the gear box to adjust the torque output of the gear box in the driver mode and to set the gear box in the drill mode; an actuator spring for resiliently biasing the actuator; a control ring adjustably mounted on the housing for setting the spring tension on the actuator and thereby the torque output of the gearbox; a hammer mode actuator located in the housing, having an arm extending through the opening in the subhousing sidewall, and shiftable between a first position wherein the hammer mode is disabled to a second position wherein the hammer mechanism is enabled and a nose ring rotatably mounted on the subhousing, engageable with the control ring to set the torque output of the gearbox and engageable with the hammer mode actuator arm to shift the hammer mode actuator between the first and second positions.
- 25. The mode control of claim 24 wherein the nose ring is rotatably movable on the subhousing in sequence through:a group of driver mode settings for adjusting the control ring for setting and progressively increasing the spring tension applied to the actuator in the driver mode and thereby the torque output in the drill mode; a drill mode setting for adjusting the spring tension to disable the driver mode and set the epicyclic gear box in the drill mode; and a hammer mode setting for moving the hammer mode actuator to the second position from the first position and thereby enabling the hammer mode.
- 26. The mode control of claim 25 further comprising:a hammer mode actuator spring for biasing the hammer mode actuator to the first position to disable the hammer mechanism; the nose ring comprises a ledge engageable with first and second sides of the hammer mode actuator arm; the ledge located adjacent to the first side of the arm in a first of the driver mode settings; the ledge located adjacent to the second side of the arm in the drill setting; and the ledge moving the arm from the first position wherein the hammer mode is disabled to the second position wherein the hammer mode is enabled when the nose ring is moved from the drill mode setting to the hammer mode setting.
- 27. A mode control for setting the mode operation of a power tool (1) having a hammer mechanism and an epicycle gear box and (2) having hammer, drill and driver modes, the mode control comprising: a subhousing for the hammer mechanism; the subhousing having a front end a rear end, a sidewall extending between the front and rear ends and an opening in the sidewall; a clutch actuator mounted adjacent to rear end of the subhousing and engageable with the gear box to adjust the torque output of the gear box in the driver mode and to set the gear box in the drill mode; an actuator spring resiliently biasing the actuator; a control ring adjustably mounted adjacent to the front end of the subhousing for setting the spring tension applied by the actuator spring on the actuator and thereby the torque output of the gear box; a hammer mode actuator located in the subhousing between the front and rear ends, having an arm extending through the opening in the subhousing sidewall, and shiftable between a first position wherein the hammer mode is disabled to a second position wherein the hammer mechanism is enabled and a nose ring assembly rotatably mounted on the subhousing, engageable with the control ring to set the torque output of the gear box and engageable with the hammer mode actuator arm to shift the hammer mode actuator between the first and second positions to enable and disable the hammer mechanism.
- 28. The mode control of claim 27 wherein:the nose ring assembly comprises a first nose ring engaged with the control ring and a second nose ring engaged with the hammer mode actuator arm.
- 29. The mode control of claim 27 wherein:the nose ring assembly comprises a single nose ring for operating both the control ring and the hammer mode actuator arm.
- 30. A power tool having hammer, drill and driver modes comprising:a main housing; a motor in the housing; a gear box connected to and driven by the motor; a combination mechanism selectively operating in hammer, drill and driver modes and comprising: a subhousing; a chuck shaft connected to and driven by the gear box; the chuck shaft rotatably and axially slidably mounted in the housing body; hammer mechanism located in the subhousing and comprising; a first ratchet fixed to the chuck shaft; a second ratchet fixed relative to the housing body when in the hammer mode to cause the chuck shaft to axially reciprocate; a cam having a first position to disable the hammer mode and a second position to enable the hammer mode; a torque control clutch lockable in the drill mode, settable in a plurality of torque settings in the driver mode, mounted on the subhousing and comprising: an actuator engageable with the gear box to adjust the torque output of the gear box to the chuck shaft in the driver mode and to set the gear box in the drill mode; a control ring adjustably mounted on the subhousing for setting the actuator and thereby the torque output of the gear box; and a nose ring rotatably mounted on the subhousing, engageable with the control ring to set the torque output of the gear box and engageable with the cam to shift the cam between the first and second positions to enable and disable the hammer mechanism.
- 31. The power tool of claim 30 wherein:the second ratchet is axially shiftable in the subhousing toward and away from the first ratchet; and the cam, when shifted from the first position to the second deposition, shifts the second ratchet to a location wherein the second ratchet is engaged by the first ratchet to enable the hammer mechanism.
- 32. The power tool of claim 30 wherein:the subhousing has a sidewall and an opening in the sidewall; the cam has an arm extending through the opening; and the nose ring engages the arm to shift the cam between first and second positions.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9304540 |
Mar 1993 |
GB |
|
Parent Case Info
This application is a continuation of divisional application Ser. No. 08/540,865, filed Oct. 12, 1995, now abandoned which is a divisional of application Ser. No. 08/206,488, filed Mar. 4, 1994, Now U.S. Pat. No. 5,458,206.
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CH |
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Divisions (1)
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08/822425 |
Mar 1997 |
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09/469504 |
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US |
Continuations (1)
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08/540865 |
Oct 1995 |
US |
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08/822425 |
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Reissues (1)
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08/822425 |
Mar 1997 |
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09/469504 |
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US |