1. Field of the Invention
The present invention relates to a one-way ratchet tool and, in particular to a tool including a driving member which is used for driving an element, and that the driving element is switchable between a first mode that the tool is adapted to enable the driving member to turn the element in a first direction, and a second mode that the tool is adapted to enable the driving member to turn the element in a second direction opposite to the first direction.
2. Description of the Related Art
Taiwan Pat. No. M352429 discloses a quick-releasable adaptor for use with a wrench. Additionally, the adaptor is adapted to connect with a socket. Also, the wrench utilizes a one-way mechanism. Thus, the adaptor and the socket are adapted to turn an element in a first direction for tightening the element. Furthermore, the adaptor and the socket are adapted to turn the element in a second direction for loosening the element. However, it is often inconvenient and time-consuming to switch a first mode for driving in the first direction and a second mode for driving in the second direction.
The present invention is, therefore, intended to obviate or at least alleviate the problems encountered in the prior art.
According to the present invention, a tool includes a shank, a driving device mounted on a first end of the shank. The driving device includes a first ratcheting mechanism including a compartment and a plurality of first teeth in the compartment, and a second ratcheting mechanism rotatably received in the compartment and including a plurality of second teeth engaged with the plurality of first teeth. The first ratcheting mechanism is rotatable relative to the second ratcheting mechanism in a single direction. The second ratcheting mechanism also includes a channel extending therein. A driving head is moveably received in the channel between two releasably fixed positions. In one position, the driving head is adapted to turn an element in a first direction. In another position, the driving head is adapted to turn the element in the second position opposite to the first position.
It is therefore an object of the present invention to provide a tool having a driving head that is switchable between a first mode that the driving head is adapted to turn an element in a first direction, and a second mode that the tool is adapted to enable the driving member to turn the element in a second direction opposite to the first direction.
There has thus been outlined, rather broadly, the more important features of the invention in order that the detailed description thereof that follows may be better understood, and in order that the present contribution to the art may be better appreciated. There are additional features of the invention that will be described hereinafter and which will form the subject matter of the claims appended hereto.
Referring to the drawings, a tool in accordance with the present invention includes a shank 10 and a driving device mounted on the shank 10. In the preferred embodiment, the shank 10 includes a first end 101 and a second end 102 opposite to the first end 101 and the driving device is mounted on the first end 101 of the shank 10. Further, a hole 16 is defined on the second end 102 of the shank 10, and the hole 16 is adapted to receive a driving tool, and the shank 10 is adapted to be used as a lever to drive the driving tool. Likewise, the shank 10 is adapted to be used as a lever to drive the driving device or other element mounted on the driving device.
The first end 101 of the shank 10 is substantially U-shaped and includes two lugs 11 separated by a substantially U-shaped space 15, and the two lugs 11 clamps the driving device therebetween and holds the driving device within the space 15. Additionally, the driving device is adapted to be pivoted and positioned at a selected pivoting position, as shown in
The first ratcheting mechanism 20 also includes a compartment extending in a longitudinal direction of the first ratcheting mechanism 20 and through the first ratcheting mechanism 20. In the preferred embodiment, the compartment is configured of a first compartment 21 and a second compartment 22 connected and in communication with the first compartment 21. Additionally, the first compartment 21 has a larger inner diametrical length than that of the second compartment 22. Thus, the reduced diametrical length of the compartment includes a first joining section interconnecting an inner periphery of the first compartment 21 and an inner periphery of the second compartment 22. Further, a plurality of first unsymmetrical teeth 211 disposed on the first joining section.
The driving device further includes a second ratcheting mechanism 30 rotatably engaged with the first ratcheting mechanism 20. In the preferred embodiment, the second ratcheting mechanism 30 is received in the compartment of the first ratcheting mechanism 20 and includes a first body section 301 received in the second compartment 22, and a second body section 302 received in the first compartment 21. Additionally, the first body section 31 has a first outer diametrical length and the second body section 302 has a second outer diametrical length greater than the first outer diametrical length. Thus, the increased diametrical length in the second ratcheting mechanism 30 includes a second joining section interconnecting an outer periphery of the first body section 301 and an outer periphery of the second body section 302. Further, a plurality of second unsymmetrical teeth 33 are disposed on the second joining section and engaged with the first plurality of teeth 211, as best shown in
The second ratcheting mechanism 30 further includes a third body section 303 extended from the second body section 302 and received in the first compartment 21 of the first ratcheting mechanism 20. The third body section 303 has a third outer diametrical length less than the second outer diametrical length of the second body section 302. Further, a channel 31 extends in a longitudinal direction of the second ratcheting mechanism 30 and through the first 301, second 302, and third 303 body sections. Furthermore, a first aperture 32 and a second aperture 38 are defined on the first 301 and third 303 body sections respectively and each aperture 32 and 38 extends through the respective body sections 301 and 303 and is in communication with the channel 31.
The driving device further includes a driving head 40 having a shape corresponding to that of the channel 31 and is received in the channel 31. Additionally, the driving head 40 is adapted to be slidably moved in the channel 31 and is moveable between two releasably fixed positions, as shown in
The driving head 40 is prevented from siding out of the channel 31 of the second ratcheting mechanism 30. In the preferred embodiment, the driving head 40 includes a corner 42 interconnecting two peripheral sides thereof and a slot 43 extending in a longitudinal direction of the corner 42 and inset in the corner 42, and the second body section 302 of the second ratcheting mechanism 30 includes a stopper 36 received in an orifice 37 which extends through the second body section 302 and is in communication with the channel 31, and the stopper 36 includes a first end retained by an inner peripheral side of the bearing 35 and a second end disposed in the channel 31 and retained in the slot 43 of the driving head 40, as shown in
Because the first 211 and second 33 pluralities of teeth are unsymmetrical, the first ratcheting mechanism 20 is rotatable relative to the second ratcheting mechanism 30 in a single direction. Furthermore, when the first plurality of teeth 211 is rotated relative to the second plurality of teeth 33, one of the first plurality of teeth 211 is disengaged from one of the second plurality of teeth 33 and engages with a successive one of the plurality of teeth 33. In order to enable engagement of the plurality of first teeth 211 with the plurality of second teeth 33, an elastic member 54 is provided. In the preferred embodiment, the elastic member 54 is mounted on the third body section 303 of the second ratcheting mechanism 30 and is held between the second body section 302 of the second ratcheting mechanism 30 and an end cap 50. The end cap 50 is received in the first compartment 21 of the first ratcheting mechanism 20. Preferably, the first ratcheting mechanism 20 includes a notch 212 and the end cap 50 is retained in the notch 212 without the aid of a tool. Additionally, the end cap 50 includes a periphery 51 tight-fitted in the notch 212. The end cap 50 further includes an inner edge tight-fitted with an outer periphery of the third body section 303 of the second ratcheting mechanism 30. Further, a seal 53 is utilized between the inner edge of the end cap 50 and the outer periphery of the third body section. Furthermore, a groove 52 is defined between the periphery 51 and the inner edge of the end cap 50 to facilitate the end cap 50 to mount in the notch 212 of the first compartment 21 of the first ratcheting mechanism 20.
In use of the tool of the present invention, user can connect a socket with the driving head 40 when the first lock 41 is releasably engaged in the aperture 32 on the first body section 301 and the second lock 41 is exposed outside the second ratcheting mechanism 30. Thus, the driving head 40 and the socket are adapted to turn an element in a first direction. Additionally, the driving head 40 is switchable to a mode that the second lock 41 is releasably engaged in the aperture 32 on the third body section 303 and the first lock 41 is exposed outside the second ratcheting mechanism 30. Thus, the driving head 40 and the socket are adapted to turn an element in a second direction opposite to the first direction.
Based on the forgoing, it is an aspect of the present invention that the driving head 40 is switchable between a first mode that the driving head 40 is adapted to turn an element in a first direction, and a second mode that the tool is adapted to enable the driving member to turn the element in a second direction opposite to the first direction.
It is another aspect of the present invention that the driving device is adapted to be pivoted and positioned at a selected pivoting position.
While the specific embodiments have been illustrated and described, numerous modifications come to mind without significantly departing from the spirit of invention and the scope of invention is only limited by the scope of accompanying claims.