1. Field of Invention
The present invention relates to a torque-exerting device and, more particularly, to a clutch for a torque-exerting device.
2. Related Prior Art
There are various torque-exerting devices such as screwdrivers and wrenches. These torque-exerting devices can be classified into hand tools and automatic tools. The automatic tools can be classified into pneumatic and electric tools. Some of the torque-exerting devices include clutches to transmit predetermined values of torque.
The clutches can be classified into a ratchet-type and a ball-type. A ratchet-type of clutch includes a movable element and a rotatable element. The movable element includes ratchets for releasable engagement with ratchets of the rotatable element. In use, the movable element is placed in a handle for example so that the former is movable up and down in the latter. The rotatable element is placed in the handle so that the former is rotatable in the latter. The rotatable element is engaged with a bit. A predetermined value of torque can be transferred to the bit from the handle via the clutch. Under the predetermined value of torque, the ratchets of the movable element are engaged with the ratchets of the rotatable element for transmitting the torque. At the predetermined value of torque, the ratchets of the movable element are disengaged from the ratchets of the rotatable element. When the ratchets of the movable element are disengaged from the ratchets of the rotatable element, the movable element is moved up and down in the handle. The movable element tends to wear away the handle.
The present invention is therefore intended to obviate or at least alleviate the problems encountered in prior art.
It is the primary objective of the present invention to provide a torque-exerting device with a durable clutch.
To achieve the foregoing objective, the clutch is arranged between a handle and an axle of the torque-exerting device. The handle includes a chamber defined therein by a wall. The clutch includes a movable element, a rotatable element, recesses and balls. The movable element is placed in the chamber in an axially movable manner. The rotatable element is placed in the chamber in a rotatable manner and secured to the axle. The rotatable element is in releasable engagement with the movable element. The recesses are defined in the movable element or the wall of the chamber of the handle. Each of the balls is partially placed in a respective one of the recesses and in contact with the wall of the chamber of the handle or the movable element.
In another aspect, the handle includes a chamber and at least one recess. The chamber is defined by a wall. The recess is defined in the wall of the chamber of the handle. The clutch includes a movable element, a rotatable element and at least one ball. The movable element is placed in the chamber in an axially movable manner. The rotatable element is placed in the chamber in a rotatable manner and secured to the axle. The rotatable element is in releasable engagement with the movable element. The ball is partially placed in the recess and partially in contact with the movable element.
Other objectives, advantages and features of the present invention will be apparent from the following description referring to the attached drawings.
The present invention will be described via detailed illustration of four embodiments referring to the drawings wherein:
Referring to
The clutch 30 includes a movable element 10, a rotatable element 32, a spring 31, a plurality of balls 20 and a cover 34. As best shown in
The hexagonal portion 11 of the movable element 10 namely includes six facets 13 alternately arranged with six corners 14. The distance between any two opposite ones of the facets 13 is longer than the diameter of the circular portion 12 of the movable element 10. The hexagonal portion 11 of the movable element 10 further includes six recesses 15 each defined in a respective one of the corners 14. Each of the recesses 15 is preferably a groove that includes an open end 16, a closed end 17, and an opening 18 extending to the open end 16 from the closed end 17.
At least one of the balls 20 is placed in each of the recesses 15. Four of the balls 20 are placed in each of the recesses 15 preferably. The diameter of the balls 20 is marginally shorter than the diameter of the recesses 15 so that the former can be placed in the latter. Each ball 20 is partially placed in the respective recess 15 and partially placed out of the respective recess 15.
The diameter of the balls 20 may be shorter than or identical to the width of the openings 18 so that the former can be moved into the recesses 15 via the latter. The diameter of the balls 20 may be longer than the width of the openings 18 so that the former cannot be moved through the latter and that the balls 20 are moved into the recesses 15 via the open ends 16.
Each ball 20 includes a portion in contact with a concave face that defines the respective recess 15 and two other portions in contact with two adjacent facets 52 of the polygonal wall 50. Hence, each facet 13 is separated from the respective facet 52 by a gap D.
The rotatable element 32 includes a plurality of ratchets 33 longitudinally extending from an upper end. The ratchets 33 are arranged along a circle at the upper end of the rotatable element 32. The ratchets 33 are used for releasable engagement with ratchets 19.
In assembly, the spring 31 and the cover 34 are placed in the chamber 43. The movable element 10 and the balls 20 are placed in the chamber 43 so that the former are movable up and down in the latter. The balls 20 are kept in the recesses 15 by the cover 34. The movable element 10 is biased by the spring 31 via the cover 34. The rotatable element 32 is placed in the chamber 43 so that the former is rotatable in the latter. An upper end of the axle 45 is connected to the rotatable element 32. A ring 44 is attached to the handle 41, thus keeping the clutch 30 in the handle 41. A lower end 42 of the axle 45 extends out of the handle 41 via the ring 44. The rotatable element 32 is engaged with a bit.
In use, a predetermined value of torque can be transferred to the bit from the handle 41 via the clutch 30. Under the predetermined value of torque, the ratchets 19 of the movable element 10 are engaged with the ratchets 33 of the rotatable element 32 for transmitting the torque. At the predetermined value of torque, the ratchets 19 are disengaged from the ratchets 33. As the ratchets 19 are disengaged from the ratchets 33, the movable element 10 is moved up and down relative to the rotatable element 32 in the handle 41. The movable element 10 is however kept from the polygonal wall 50 by the balls 20 that roll on the polygonal wall 50.
The friction between the balls 20 and the polygonal wall 50 is small. Therefore, the wear of the polygonal wall 50 is mild, and the torque-exerting device 40 is durable.
Referring to
Referring to
Referring to
In a second mode of operation, the handle 72 is rotated relative to the head 76 about a horizontal axis. Torque is transferred to the transmission mechanism from the handle 72 via the clutch 30 and then to the tongue 78 from the transmission mechanism. In the second mode of operation, the value of the torque cannot exceed a limit set by operating the knob 74.
The present invention has been described via the detailed illustration of the embodiments. Those skilled in the art can derive variations from the embodiments without departing from the scope of the present invention. Therefore, the embodiments shall not limit the scope of the present invention defined in the claims.