Power tool facilitating replacement of operating head
View Patent ↗The power tool facilitating replacement of an operating head includes a housing and a drive motor disposed in the housing, the drive motor being in transmission connection with an output shaft, the output shaft being mounted with a shaft-locking mechanism, the shaft-locking mechanism including a first clutch piece, a second clutch piece, and a control pusher, the control pusher being in transmission connection with the second clutch piece to control the second clutch piece to move along the axial direction of the output shaft, a control switch being provided in the housing, the control pusher having a power-on position, a power-off position, and a shaft-locking position which are sequentially arranged along the axial direction of the output shaft. The disclosure mainly allows for snap-fitting between the first clutch piece and the second clutch piece after the output shaft completely stops rotation.
1 . A power tool comprising:
a housing;
a drive motor disposed in the housing;
a control switch configured to control activation and deactivation of the drive motor the control switch being in the housing;
an output shaft configured to mount an operating head; and
a shaft-locking mechanism mounted on the output shaft; wherein:
the drive motor is in transmission connection with the output shaft,
the shaft-locking mechanism comprises:
a first clutch piece secured to the output shaft,
a second clutch piece sleeved over the output shaft, and
a control pusher configured to move along an axial direction of the output shaft,
the control pusher is in transmission connection with the second clutch piece to control the second clutch piece to move along the axial direction of the output shaft,
the control pusher has
a power-on position where the control switch is triggered and the second clutch piece is separated from the first clutch piece,
a power-off position where the control switch is released and the second clutch piece is separated from the first clutch piece, and
a shaft-locking position where the control switch is released and the second clutch piece and the first clutch piece form a circumferential limit,
the power-on position, the power-off position, and the shaft-locking position are sequentially arranged along the axial direction of the output shaft,
a locating mechanism configured to locate the control pusher is disposed between the control pusher and the housing, wherein the locating mechanism comprises three locating slots formed in the housing and a locating block arranged on the control pusher, the three locating slots corresponding to the power on position, the power-off position, and the shaft-locking position, respectively, and
when the control pusher is located at the power-on position, or the power-off position, or the shaft-locking position, the locating block is inserted into the corresponding locating slot.
2 . The power tool according to claim 1 , wherein:
a plurality of recesses are arranged at intervals on a surface of one of the first clutch piece and the second clutch piece,
a convex tooth is arranged on a surface of another one of the first clutch piece and the second clutch piece, and
when the control pusher is located at the shaft-locking position, the convex tooth is inserted into a corresponding recess among the plurality of recesses so that the circumferential limit is formed between the first clutch piece and the second clutch piece.
3 . The power tool according to claim 2 , wherein:
a plurality of protrusions are arranged at intervals on an outer peripheral side surface of the first clutch piece,
a recess is formed between every neighboring two protrusions, and
the convex tooth is arranged at a side of the second clutch piece proximal to the first clutch piece and extends towards the first clutch piece.
4 . The power tool according to claim 3 , wherein;
a first guide surface is formed at an end portion of each of the protrusions proximal to the second clutch piece; and/or
a second guide surface is formed at an end portion of the convex tooth proximal to the first clutch piece.
5 . The power tool according to claim 1 , wherein:
the locating block is an elastomer;
two ends of the locating block protrude beyond two lateral sides of the control pusher; and
a smooth curved surface is formed at each of the two ends of the locating block.
6 . The power tool according to claim 1 , wherein:
a tab is arranged at an outer peripheral side of the second clutch piece;
the control pusher is formed with a snap slot; and
the control pusher and the second clutch piece are connected via snap-fitting between the tab and the snap slot.
7 . The power tool according to claim 6 , wherein:
the control pusher is provided with two extension plates extending till two lateral sides of the second clutch piece,
the snap slot is formed on each of the extension plates,
a front end of each of the extension plates having an abutting surface, and
when the control pusher is located at the power-on position, the abutting surface abuts against a contact piece of the control switch to trigger the control switch.
8 . The power tool according to claim 1 , wherein:
the housing is provided with a guide rail configured to guide the control pusher to slide,
the control pusher comprises a push plate and a sliding groove,
the push plate is exposed out of an outer surface of the housing, and
the guide rail is in sliding connection with the sliding groove.
9 . The power tool according to claim 1 , wherein;
an end portion of the output shaft is attached to a locking nut and a clamping core that are configured to mount the operating head;
a thread is formed on an outer surface of the end portion of the output shaft;
the locking nut is in threaded connection with the output shaft; and
a clamping force of the clamping core with respect to the operating head is adjusted via fitting between the locking nut and the output shaft.
10 . A power tool, comprising:
a housing;
a drive motor disposed in the housing;
a control switch configured to control activation and deactivation of the drive motor, the control switch being in the housing;
an output shaft configured to mount an operating head; and
a shaft-locking mechanism mounted on the output shaft; wherein:
the drive motor is in transmission connection with the output shaft,
the shaft-locking mechanism comprises:
a first clutch piece secured to the output shaft,
a second clutch piece sleeved over the output shaft, and
a control pusher configured to move along an axial direction of the output shaft,
the control pusher is in transmission connection with the second clutch piece to control the second clutch piece to move along the axial direction of the output shaft,
the control pusher has
a power-on position where the control switch is triggered and the second clutch piece is separated from the first clutch piece,
a power-off position where the control switch is released and the second clutch piece is separated from the first clutch piece, and
a shaft-locking position where the control switch is released and the second clutch piece and the first clutch piece form a circumferential limit,
the power-on position, the power-off position, and the shaft-locking position are sequentially arranged along the axial direction of the output shaft,
a locating mechanism configured to locate the control pusher is disposed between the control pusher and the housing,
a tab is arranged at an outer peripheral side of the second clutch piece, and the control pusher is formed with a snap slot,
the control pusher and the second clutch piece are connected via snap-fitting between the tab and the snap slot,
the control pusher is provided with two extension plates extending till two lateral sides of the second clutch piece, the snap slot being formed on each of the extension plates,
a front end of each of the extension plates has an abutting surface, and
when the control pusher is located at the power-on position, the abutting surface abuts against a contact piece of the control switch to trigger the control switch.