This application claims priority of Taiwanese Application No. 102109850, filed on Mar. 20, 2013.
1. Field of the Invention
This invention relates to a hand tool, and more particularly to a ratchet device.
2. Description of the Related Art
Referring to
When the switching member 4 is rotated in a direction, such that one of the pawl members 2 is pressed by the inner peripheral surface 401 to separate from the teeth 501, and the other of the pawl members 2 remains within the corresponding positioning groove 402 and engages the teeth 501, the ratchet wheel 5 is rotatable in only a single direction.
The aforesaid conventional ratchet wheel suffers from the following drawbacks:
1. Each of the pawl members 2 engages only one of the teeth 501, thereby affecting adversely transmission of power from the mounting member 1 to the ratchet wheel 5.
2. During unidirectional rotation of the ratchet wheel 5, force is transmitted from one pawl member 2 to one tooth 501. As a result, serious wear is experienced by the one pawl member 2 and the one tooth 501, thereby reducing the service life of the ratchet device.
3. When a force is applied to rotate the switching ring 4, it must be large enough to overcome the biasing force of the resilient member 3, thereby resulting in difficulties during the direction switching operation.
The object of this invention is to provide a ratchet device that can overcome the above-mentioned drawbacks associated with the prior art.
According to this invention, a ratchet device includes a body, a ratchet wheel unit, and a switching unit. The body has an outer peripheral surface, at least one slide slot formed in the outer peripheral surface, at least one first groove, and at least one second groove. The ratchet wheel unit includes a ratchet wheel sleeved on the body, at least one first pawl member inserted into the first groove, at least one second pawl member inserted into the second groove, and resilient members biasing the first and second pawl members to engage the ratchet wheel. The switching unit is sleeved on the body, and includes a pushing member disposed in the slide slot, and a switching member connected to the pushing member. Through operation of the switching member, the first or second pawl member can be separated from the ratchet wheel.
These and other features and advantages of this invention will become apparent in the following detailed description of a preferred embodiment of this invention, with reference to the accompanying drawings, in which:
Referring to
The cylindrical body 10 is connected fixedly to the handle 100, extends along an axis (L), and has an outer peripheral surface 11 disposed around the axis (L), two slide slots 12 formed in the outer peripheral surface 11, two first grooves 13 in spatial communication with and located at one side of the slide slot 12, and two second grooves 14 in spatial communication with and located at the other side of the slide slot 12. The slide slots 12 are diametrically opposite to each other. The first grooves 13 are diametrically opposite to each other. The second grooves 14 are diametrically opposite to each other. In this embodiment, one of the first grooves 13 is in spatial communication with one of the second grooves 14, and the other of the first grooves 13 is in spatial communication with the other of the second grooves 14.
With further reference to
With particular reference to
The ratchet wheel unit 20 includes a ratchet wheel 21 sleeved on the body 10, two first pawl members 23 inserted respectively into the first grooves 13, two second pawl members 24 inserted respectively into the second grooves 14, and two resilient members 22 each disposed in a respective one of the first grooves 13 and a respective one of the second grooves 14.
The ratchet wheel 21 has a sleeve end 211 and a work end 212 opposite to the sleeve end 211 and permitting the driving head 200 to be inserted therein. The sleeve end 211 has an inner peripheral surface 213 disposed around and adjacent to the outer peripheral surface 11, and a plurality of ratchet teeth 214 formed on the inner peripheral surface 213.
Each of the first pawl members 23 is L-shaped, and has a first toothed end 231 proximate to the corresponding slide slot 12, a first non-toothed end 232 distal from the corresponding slide slot 12 and opposite to the first toothed end 231, a first stop surface 233 contactable with the first shoulder surface 133, and a plurality of first pawl teeth 234 formed in an end surface of the first toothed end 231 and engageable with the ratchet teeth 214. The first toothed end 231 has a first inner side edge 235 proximate to the corresponding slide slot 12, a first outer side edge 236 distal from the corresponding slide slot 12, and an inclined first guiding surface 237 disposed at the first inner side edge 235, such that the first pawl teeth 234 are disposed between the first outer side edge 236 and the first guiding surface 237. Interengaging surfaces of each of the first pawls 23 and a wall defining a corresponding one of the first grooves 13 are curved.
Each of the second pawl members 24 is L-shaped, and has a second toothed end 241 proximate to the corresponding slide slot 12, a second non-toothed end 242 distal from the corresponding slide slot 12 and opposite to the second toothed end 241, a second stop surface 243 contactable with the second shoulder surface 143, and a plurality of second pawl teeth 244 formed in an end surface of the second toothed end 241 and engageable with the ratchet teeth 214. The second toothed end 241 has a second inner side edge 245 proximate to the corresponding slide slot 12, a second outer side edge 246 distal from the corresponding slide slot 12, and an inclined second guiding surface 247 disposed at the second inner side edge 245, such that the second pawl teeth 244 are disposed between the second outer side edge 246 and the second guiding surface 247. Interengaging surfaces of each of the second pawls 24 and a wall defining a corresponding one of the second grooves 14 is curved.
Each of the resilient members 22 abuts against the non-toothed end 232 of the corresponding first pawl member 23 and the non-toothed end 242 of the corresponding second pawl member 24 for biasing the first and second pawl members 23, 24 toward the ratchet teeth 214.
The switching unit 30 is sleeved on the body 10, and includes two pushing members 31 rotatable about the axis (L) in the slide slots 12, respectively, and a switching member 32 interconnecting the pushing members 31. The switching member 32 is annular, is sleeved rotatably on the body 10, and has an inner peripheral surface 321. The pushing members 31 are diametrically opposite to each other, and are connected fixedly to the inner peripheral surface 321. Each of the pushing members 31 has an inclined first pressing surface 313 aligned with and movable toward or away from the corresponding first pawl member 23, and an inclined second pressing surface 314 aligned with and movable toward or away from the corresponding second pawl member 24. The first and second pressing surfaces 313, 314 are inclined with respect to the axis (L), and are movable to contact the first and second positioning surfaces 121, 122.
The positioning unit 40 includes a spring 41 disposed in the body 10, a ball 42 biased by the spring 41 to project outwardly from the outer peripheral surface 11, a middle cavity 43 formed in the inner peripheral surface 321, a first cavity 44 formed in the inner peripheral surface 321 and located at one side of the middle cavity 43, and a second cavity 45 formed in the inner peripheral surface 321 and located at the other side of the middle cavity 43.
With particular reference to
With particular reference to
With particular reference to
When the rotational direction of the ratchet wheel 21 is switched, since the interengaging surfaces between the first pawl members 23 and walls defining the first grooves 13 and between the second pawl members 24 and walls defining the second grooves 14 are curved, smooth movement of the first and second pawl members 23, 24 can be ensured.
In view of the above, the ratchet device of this invention has the following advantages:
1. Each of the first and second pawl members 23, 24 has a plurality of pawl teeth 234, 244 for engaging the ratchet teeth 214, so as to increase contact area therebetween, thereby facilitating transmission of power from the body 10 to the ratchet wheel 21.
2. During unidirectional rotation of the ratchet wheel 21, force is transmitted from one body 10 to the pawl teeth 234, 244 of two first or second pawl members 23, 24. Consequently, wear experienced by the ratchet teeth 214 and the first and second pawl members 23, 24 is reduced significantly, thus prolonging the service life of the ratchet device.
3. When a force is applied to rotate the switching member 32, the pushing members 31 are moved within the slide slots 12, respectively, in such a manner that the first and second pressing surfaces 313, 314 move respectively on the first and second guiding surfaces 237, 247. In this manner, the biasing force of the resilient members 22 can be overcome with relative ease to press the first or second pawls members 23, 24. As a consequence, the ratchet device is easy to operate.
It should be noted that, the ratchet wheel unit 20 may includes four resilient members 22 for biasing the first and second pawl members 23, 24. If this occurs, there is no need for the first grooves 13 to be in spatial communication with the second grooves 14, respectively.
With this invention thus explained, it is apparent that numerous modifications and variations can be made without departing from the scope and spirit of this invention. It is therefore intended that this invention be limited only as indicated by the appended claims.
Number | Date | Country | Kind |
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102109850 | Mar 2013 | TW | national |