1. Technical Field
The present disclosure relates to positioning structures, and particularly, to a positioning structure for positioning at least one workpiece and a machining device using the positioning structure.
2. Description of Related Art
When a workpiece is being machined, a positioning structure may be used for positioning the workpiece. A positioning structure may include a positioning base for supporting the workpiece, and a positioning portion protruding from the positioning base. A platform of a machining device may define a mounting hole. The positioning portion may be inserted into the mounting hole of the platform, for positioning the positioning structure on the platform. However, during the machining process of a plurality of workpieces, a diameter of the mounting hole may become larger and larger due to wear, which results in the positioning structure failing to position the workpiece properly.
Therefore, there is room for improvement in the art.
The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout several views.
The platform 301 is substantially cubic, and defines four mounting grooves 3010 in a substantially middle portion thereof. The four mounting grooves 3010 are arranged in rows and columns (two of the mounting grooves 3010 are substantially blocked by the positioning structure 100 from view in
The plurality of fasteners 30 are respectively mounted on the inserting holes 113 of the first side surface 13 and the second side surface 17, and resist on the workpieces 200 in the installation grooves 111, thereby positioning the workpieces 200 on the positioning base 10. In the illustrated embodiment, the plurality of fasteners 30 are threaded screws, and are respectively threaded into the inserting holes 113.
The positioning members 50 are respectively positioned in the fastening holes 151 of the bottom surface 15 of the positioning base 10. The positioning member 50 is substantially disk-like, and defines a through hole 51 along a center axis thereof. The though hole 51 is a stepped through hole in the illustrated embodiment. An inner sidewall 512 of the through hole 51 includes a resisting surface 510 (shown in
The elastic members 60 are respectively movably mounted in two of the mounting holes 3011 along the longitudinal direction of the positioning base 10. Each elastic member 60 includes a mounting portion 61, a protruding portion 63 protruding from the mounting portion 61, and a pair of springs 65 mounted on the mounting portion 61 (shown in
The mounting members 70 are respectively mounted in two corresponding mounting grooves 3010 along the longitudinal direction of the platform 301. Each mounting member 70 is sleeved on the protruding portion 63 of the corresponding elastic member 60, and engaged with the corresponding positioning member 50. Each mounting member 70 includes a fixing portion 71 and an assembling portion 73 extending from the fixing portion 71. Each fixing portion 71 is fixed within the corresponding mounting groove 3010, and defines a receiving groove 711 extending to the assembling portion 73. The assembling portion 73 is inserted into the through hole 51 of the positioning member 50, and resists the resisting surface 510. The assembling portion 73 defines a plurality of exposing holes 731 at a sidewall thereof corresponding to the inclined surface 511. The exposing holes 731 communicate with the receiving groove 711. The plurality of balls 80 are partly received in the plurality of exposing holes 731, and are partly exposed from the corresponding exposing holes 731. The protruding portion 63 of the corresponding elastic member 60 is inserted into the receiving groove 711, and the inclined sidewall 631 movably resists the plurality of balls 80, thus the plurality of balls 80 are sandwiched between the inclined surface 511 and the inclined sidewall 631. When the protruding portion 63 moves towards the assembling portion 73 via the springs 65, the inclined sidewall 631 resists the plurality of balls 80 to be exposed from the exposing holes 731, thus the plurality of balls 80 resists on the inclined surface 511. Thereby, the positioning base 10 is positioned on the mounting member 70.
The four limiting members 90 are fixed on four of the fixing holes 3013 located besides the corresponding two mounting grooves 3010 that are mounting the two mounting members 70. The limiting members 90 are inserted into four corresponding limiting holes 153, respectively, for preventing the positioning base 10 from shaking. In the illustrated embodiment, the limiting members 90 are conic. In an alternative embodiment, the limiting members 90 may be cylindrical, for example.
In assembly, the plurality of fasteners 30 are respectively mounted into the plurality of inserting holes 113. The positioning members 50 are respectively positioned in the fastening holes 151 of the positioning base 10. The assembling portion 73 is inserted into the through hole 51 of the positioning member 50. The balls 80 are received in the exposing holes 731. The protruding portion 63 of the elastic member 60 is movably received in the receiving groove 711. The fixing portion 71 is fixed within the mounting groove 3010, and the mounting portion 61 is partly received in the mounting groove 3010.
In use, first, loosen the fasteners 30, and put the workpieces 200 into the installation grooves 111 of the positioning base 10. Second, the fasteners 30 are threadedly engaged into the inserting holes 113, and resist the workpieces 200, for positioning the workpieces 200. Because the positioning base 10 is positioned on the positioning members 50 and the mounting members 70, the springs 65 are thereby compressed, and apply an elastic force on the mounting portion 61. The protruding portion 63 moves towards the assembling portion 73, and the inclined sidewall 631 resists the balls 80, the balls 80 resists the inclined surface 511, and thus the positioning base 10 is positioned on the platform 301. Fourth, the machining mechanism 303 machines the workpieces 200.
In an alternative embodiment, a number of the mounting groove 3010 may be one or more than one, and a number of the mounting hole 3011, the positioning member 50, the mounting member 70, or the fastening hole 151 may be one or more than one, corresponding to the number of the mounting groove 3010 being present. A number of the fixing holes 3013 may be one or more than one, a number of the limiting member 90 may be one or more than one corresponding to the number of the fixing hole 3013. A number of the installation grooves 111 may be one or more than one.
It is believed that the present embodiments and their advantages will be understood from the foregoing description, and it will be apparent that various changes may be made thereto without departing from the spirit and scope of the embodiments or sacrificing all of its material advantages.
Number | Date | Country | Kind |
---|---|---|---|
2012203828424 | Aug 2012 | CN | national |