1. Technical Field
The present disclosure relates to positioning devices and, particularly, to a positioning device which can position workpieces in multiple positions.
2. Description of Related Art
A positioning device is usually used to position a workpiece to be machined to a desired position. To position a number of workpieces in their respective positions, usually they need to be manually adjusted to different positions, which is time-consuming.
Referring to
The base 1 is a substantially rectangular plate, and defines four threaded holes 13. The base 1 includes four bolts 14 and a bottom surface 10 including four feet 11 for supporting the positioning device 100 on a support surface of a tooling machine (not shown).
The support 2 is hollow, and includes a bottom surface 21, a lateral surface 24, and a receiving chamber 23 extending from one end to an opposite end. The bottom surface 21 defines four threaded holes 211 respectively opposing the four threaded holes 13 of the base 1. The four bolts 14 respectively pass through the four threaded holes 13 and 211 to fix the support 2 on the base 1. The lateral surface 24 defines two opposing holes 22. The diameter of the opposite ends of the receiving chamber 23 exceeds that of a middle portion of the receiving chamber 23.
The rotatable member 4 is received in the receiving chamber 23, and includes a body 42, and two bearings 41 arranged around opposite ends of the body 42. The two bearings 41 are fitted in the opposite ends of the receiving chamber 23, and the body 42 is rotatably received in the middle portion of the receiving chamber 23. The rotatable member 4 further includes an extending portion 422 extending from one end of the body 42. A threaded hole 421 is defined in the extending portion 422.
Each positioning member 3 includes a shaft 311, with a flange 312 arranged about the shaft 311, an elastic element 32 arranged about the shaft 311, a handle 310, and a fixing member 33. The fixing member 33 includes a first side surface 332 adjacent to the support 2 and a second side surface 331 opposing the first surface 332. The fixing member 33 defines a tapered axle hole 330 extending from the first surface 332 to the second surface 331, and two blind threaded holes 333 on its top surface. The diameter of the tapered axle hole 330 gradually decreases from the first side surface 332 to the second side surface 331. Each axle hole 330 includes a reduced hole portion 334 at one end, which forms an annular ring portion 335. The two shafts 311 pass through the tapered axle holes 330 from the first side surface 332 to the second side surface 331. Two ends of each elastic element 32 abut against the flange 312 and the annular ring portion 335. One end of each shaft 311 is fixed to the handle 310, and an opposite end is received into the hole 22 of the support 2. In one embodiment, the elastic elements 32 are coil springs.
The platform 5 is substantially parallel to the base 1, and includes a main body 51 and a workpiece fixing plate 52 rotatably connected to the main body 51. The main body 51 defines a central threaded hole 513 and two pairs of threaded holes 514 on opposing sides of the central threaded hole 513. The platform 5 further includes a central bolt 57 and two pairs of bolts 56 on opposing sides of the central bolt 57. The central bolt 57 passes through the central threaded hole 513 and the threaded hole 421 of the rotatable member 4 to fix the main body 51 to the rotatable member 4. The two pairs of bolts 56 respectively pass through the threaded holes 514 of the main body 51 and the blind threaded holes 333 of the positioning member 3 to fix the positioning member 3 to the main body 51.
The main body 51 further includes two opposing placement portions 512a and 512b for placing workpieces. The platform 5 further includes a shaft 54 and two opposing walls 53 fixed on opposite sides of the main body 51 by two bolts 55. Each wall 53 defines an axle hole 531. The workpiece fixing plate 52 defines two opposing axle holes 521. The shaft 54 passes through the axle holes 521 and 531 to rotatably connect the workpiece fixing plate 52 to the main body 51.
Referring to
Referring to
Referring to
When attempting to machine a workpiece in the placement portion 512b, the workpiece fixing plate 52 is first opened, and the workpiece is then placed on the placement portion 512b. The workpiece fixing plate 52 is then closed and locked to fix the workpiece. When needed, the platform 5 can be rotated until the placement portion 512b is located to a desired position. To rotate the platform 5, the two connecting rods 6121 need to be pulled to cause the respective end of the two handles 6122 to move out of the holes 22 of the support 2. Then, the two positioning members 6 thus free from the limitation of the support 2, and can be rotated together with the platform 5. After the platform 5 is rotated to the desired position, the two connecting rods 6121 can be released, and the two elastic elements 62 respectively rebound to cause the respective ends of the two handles 6122 to be received in the two holes 22, thereby locking the platform 5 in the desired position. Similarly, when another desired position is need, the above operation can be repeated.
Although the present disclosure has been specifically described on the basis of the exemplary embodiment thereof, the disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the embodiment without departing from the scope and spirit of the disclosure.
Number | Date | Country | Kind |
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201010187166.0 | May 2010 | CN | national |