1. Technical Field
The present disclosure relates to fixtures and, particularly, to an adjustable fixture used for painting a workpiece.
2. Description of Related Art
With the development of technology, a user can have high expectations regarding appearance of portable electronic devices, e.g., mobile phones and notebooks. Painting is an effective method to achieve a great appearance.
Usually, a portable electronic device is fixed on a fixture, and then spray painted. However, the typical fixture cannot be adjusted according to need, thus paint coats may not be applied evenly on the portable electronic device, influencing the appearance of the portable electronic device.
Therefore, there is room for improvement within the art.
Many aspects of an adjustable fixture can be better understood with reference to the following drawings. These drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present adjustable fixture. Moreover, in the drawings like reference numerals designate corresponding sections throughout the several views.
The present adjustable fixture is suitable for fixing a workpiece, e.g., a mobile phone or a notebook mounted thereon for painting. The workpiece can be neatly adjusted in three dimensions.
The clamping board 11 includes a fastening hole 111 defined near a center thereof. The fastening hole 111 cooperates with a fastening pole 113 to fix the clamping board 11 to the telescopic sleeve 12. The clamping board 11 includes two clamping slots 112 respectively defined at two sides of the fastening hole 111, and is used to clamp workpieces (not shown) thereon.
The telescopic sleeve 12 includes an opened end 121, a closed end 122, and a peripheral wall 123 connecting the opened end 121 and the closed end 122. The closed end 122 and the peripheral wall 123 enclose a space cavity 124. The closed end 122 defines a connecting hole 1221 corresponding to the fastening hole 111. The peripheral wall 123 includes three upper through holes 1231 and three lower through holes 1232. The three upper through holes 1231 are defined adjacent to the closed end 122, and are equally disposed along the peripheral direction. The three lower through holes 1232 are defined adjacent to the opened end 121, and are equally disposed along the peripheral direction. One upper through hole 1231 corresponds to one lower through hole 1232. An interior surface of the peripheral wall 123 defines a groove 1234 (show in
Referring to
The telescopic shaft 14 includes three screw holes 141 corresponding to the three upper through holes 1231 or the three lower through holes 1232 defined at one end thereof. Each screw hole 141 is defined through the telescopic shaft 14, and screws with the external threads of the receiving sleeve 131 to mount a latching assembly 13 therein. One screw hole 141 is used to fasten a sliding pole 19 therein. The sliding pole 19 includes a head portion 191 and an externally threaded tail portion 192. The tail portion 192 can be screwed into the screw hole 141. The telescopic shaft 14 further includes two latching poles 142 protruding from a peripheral wall thereof adjacent to the other end used to latch the shaft 14 to the base 16. The telescopic shaft 14 is cut partially to form a resisting surface 143, one of the screw holes 141 is on the resisting surface 143.
The first elastic member 15 is a compression spring received in the base 16. One end of the elastic member 15 resists the telescopic shaft 14, the other end resists the base 16.
The base 16 includes a main portion 161 and a connecting portion 162 protruding from the main portion 161. The main portion 161 is generally a column, and defines a receiving space 1611. The receiving space 1611 is configured for tightly receiving the bearing 17 therein. The connecting portion 162 is a hollow pole, and includes an opened 1622. A peripheral wall of the connecting portion 162 defines two symmetric “L”-shaped slots 1623 adjacent to the opened 1622. Each “L”-shaped slot 1623 includes a first slot section 1624 and a second slot section 1625 communicating with the first slot section 1624. The first slot section 1624 extends axially, and the second slot section 1625 extends circumferentially.
The bearing 17 includes a pole 171 and two bearing mechanisms 172 <wheel carries too much baggage, go broader> rotatably mounted to both ends of the pole 171. The pole 171 is a hollow pole used to partially receive the fastening seat 18 therein, and is fastened to the fastening seat 18. The bearing mechanisms 172 are received in the receiving space 1611 and fastened to the base 16.
The fastening seat 18 includes a fastening portion 181 and a pivoting portion 182 protruding from the fastening portion 181. The fastening portion 181 is mounted to a workplate (not shown). The pivoting portion 182 is inserted into the pole 171, and fastened with the pole 171.
Referring to
In use, the adjustable fixture 10 can be adjusted via the sliding operation between the telescopic shaft 14 and the telescopic sleeve 12. The telescopic shaft 14 can be stably kept at the three upper through holes 1231 and the three lower through holes 1232, with the spheres 133 positioned in the grooves 1234. The adjustable fixture 10 allows rotation of the mounting board 11 relative to the fastening seat 18. Thus, the adjustable fixture can be adjusted in three dimensions.
It is to be understood, however, that even through numerous characteristics and advantages of the present disclosure have been set forth in the foregoing description, together with details of the structure and function of the disclosure, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of sections within the principles of the disclosure to the full extent indicated by the broad general meaning of the terms, in which the appended claims are expressed.
Number | Date | Country | Kind |
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2009 1 0300700 | Mar 2009 | CN | national |
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