Oscillating multi-tool
A power tool includes a housing, a motor that is disposed within the housing and defining a first axis, and a tool holder driven to oscillate about a second axis by the motor. The second axis is perpendicular to the first axis. The power tool also includes a vibration dampening assembly with a counterweight that is configured to reciprocate along a third axis that is perpendicular to both the first axis and the second axis in response to oscillation of the tool holder about the second axis.
1. A power tool comprising:
a housing;
a motor disposed within the housing and defining a first axis;
a tool holder driven to oscillate about a second axis by the motor, the second axis being perpendicular to the first axis;
a drive mechanism configured to convert continuous torque from the motor to continuous oscillating movement of a tool accessory received by the tool holder; and
a vibration dampening assembly disposed in an interior of the housing, the vibration dampening assembly including a counterweight configured to reciprocate linearly along a third axis perpendicular to both the first axis and the second axis in response to oscillation of the tool holder about the second axis, the third axis being positioned above the first axis defined by the motor.
2. The power tool of claim 1 , wherein the vibration dampening assembly further includes,
a first spring adjacent a first end of the counterweight, and
a second spring adjacent an opposite, second end of the counterweight, and
wherein the first and second springs are coaxial with the third axis and bias the counterweight toward a neutral position.
3. The power tool of claim 2 , wherein the first end of the counterweight defines a first spring seat to receive the first spring and the second end of the counterweight defines a second spring seat to receive the second spring.
4. The power tool of claim 1 , wherein the vibration dampening assembly further includes a case in which the counterweight is positioned.
5. The power tool of claim 4 , wherein the case includes a ventilation port configured to communicate an interior of the case in which the counterweight is located with the atmosphere outside the case.
6. The power tool of claim 4 , wherein the counterweight is enclosed within the case.
7. The power tool of claim 4 , wherein the case includes a bracket configured to mount the vibration dampening assembly to the interior of the housing.
8. The power tool of claim 1 , wherein the counterweight is produced using an additive manufacturing process.
9. The power tool of claim 1 , wherein the counterweight is cylindrical.
10. The power tool of claim 1 , wherein the housing defines a battery support portion configured to receive a battery pack to power the motor.
11. The power tool of claim 10 , wherein the battery support portion is positioned at a first end of the housing and the drive mechanism is positioned at a second end opposite the first end.
12. The power tool of claim 1 , wherein the housing defines a handle portion configured to be grasped by a user, and wherein the motor and the drive mechanism are positioned within the housing in front of the handle portion.
13. A power tool comprising:
a housing;
a motor disposed within the housing and defining a first axis;
a tool holder driven to oscillate about a second axis by the motor, the second axis being perpendicular to the first axis;
a drive mechanism configured to convert continuous torque from the motor to continuous oscillating movement of a tool accessory received by the tool holder; and
a vibration dampening assembly disposed in an interior of the housing, the vibration dampening assembly including,
a case supported by the housing,
a counterweight positioned within the case, the counterweight configured to reciprocate linearly along a third axis perpendicular to both the first axis and the second axis in response to oscillation of the tool holder about the second axis, the third axis being positioned above the first axis defined by the motor,
a first spring arranged between the case and the counterweight, the first spring biasing the counterweight in a first direction, and
a second spring arranged between the case and the counterweight, the second spring biasing the counterweight in a second direction opposite the first direction;
wherein the first and second springs are coaxial with the third axis and bias the counterweight toward a neutral position within the case.
14. The power tool of claim 13 , wherein a first end of the counterweight defines a first spring seat to receive the first spring and a second end of the counterweight opposite the first end defines a second spring seat to receive the second spring.
15. The power tool of claim 13 , wherein the vibration dampening assembly further includes a first end cap positioned adjacent a first side of the case and a second end cap positioned adjacent a second side of the case opposite the first side, the first and second end caps enclosing the counterweight within the case.
16. The power tool of claim 13 , wherein the counterweight is cylindrical.
17. The power tool of claim 13 , wherein the case includes a ventilation port configured to communicate an interior of the case in which the counterweight is located with the atmosphere outside the case.
18. The power tool of claim 13 , wherein the case includes a bracket configured to mount the vibration dampening assembly to the interior of the housing.
19. The power tool of claim 1 , wherein the counterweight is configured to reciprocate solely along the third axis.