The present invention generally relates to apparatuses for cylindrically grinding workpieces and, more particularly, to a fixture for bonding workpieces.
Usually, optical elements such as camera lenses and spectacles are in used in cylindrical form. However, original optical workpieces (i.e. lens blanks) are most easily manufactured in the form of a square. Therefore, these original optical workpieces have to be cylindrically ground before use.
A typical example of a contemporary cylindrical grinding apparatus is a centering apparatus. The centering apparatus typically includes a pair of holders for holding the original workpiece, where each holder has a hollow chamber communicating with a surface of the holder. The holder can hold the workpiece on its surface by using an air pump creating suction in the hollow chamber, a grinding wheel is then used to cylindrically grind the workpiece. However, the centering apparatus can only cylindrically grind one workpiece at a time.
When transferring the workpieces 50 from the first holding tool 30 to the second holding tool 40, the adhesive should be dissolved so that the workpieces 50 can be taken out of the first holding tool 30. However, the workpieces 50 will not be compact (i.e. held together in a tight bundle) in the second holding tool 40 because the workpieces 50 will become disarrayed whilst the adhesive is being dissolved.
Therefore, a fixture for bonding workpieces which can overcome the above-described problems is desired.
In one embodiment thereof, a fixture for bonding workpieces includes a frame and a supporting board. The frame includes a first side wall, a second side wall, and a third side wall. The first side wall is opposite to the second side wall, and the third side wall connects the first side wall and the second side wall. The supporting board is slideably fitted to the first side wall and the second side wall.
Other advantages and novel features will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
Many aspects of the fixture for bonding workpieces can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present fixture. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Referring to
The supporting base 11 has an undersurface 112 and an inclined plane 111. The undersurface 112 is parallel to the horizontal plane. The inclined plane 111 and the undersurface 112 form an angle 0 which may be in the range from 30 to 45 degrees. In this preferred embodiment, the supporting base 11 has a trapezoidal cross section. It may be understood that the supporting base 11 can also have a triangular cross section or any other appropriately shaped cross section.
In this embodiment, the frame 12 is substantially U-shaped and includes a first side wall 121, a second side wall 122, and a third side wall 123. The first side wall 121 is opposed and parallel to the second side wall 122, and the third side wall 123 perpendicularly interconnects the first side wall 121 and the second side wall 122 at one end. One of the first side wall 121 and the second side wall 122 has a slideway 124 for guiding the supporting board 13. It is understood that the frame 12 can be an inclined supporting member, and the third side wall 123 is a lower end portion relative to the first side wall 121 and the second side wall 122. The slideways 124 can be other positioning members. The third side wall can also have a slideway as positioning member cooperating with the slideways 124 to form a receiving space therebetween for receiving the bonding workpieces 14 therein.
The supporting board 13 is substantially a quadrate board, and has a width slightly greater than the distance between the first side wall 121 and the second side wall 122. The supporting board 13 has an upper surface 131 for supporting the workpieces 14. It is understood that the supporting base 11 can also be formed together with the frame 12 so that the supporting board 13 can settle aslant into the frame 12.
When using the fixture 10 for bonding workpieces 14, firstly, a predetermined amount of lubricating oil is smeared on the upper surface 131 of the supporting board 13. Secondly, the supporting board 13 is inserted into the frame 12 along the main axes of the slideways 124, whereby the frame and the supporting board cooperatively form a receiving space therebetween. Thirdly, a plurality of workpieces 14 are placed on the upper surface 131 of the supporting board 13, parallel to the third side wall 123. Fourthly, a predetermined amount of hydrolysable ultraviolet adhesive is dropped on to the workpieces 14, and bonds the workpieces 14 together. Finally, the supporting board 13 is detached from the frame 12, and the workpieces 14 are transferred to a cylindrical grinding apparatus for grinding.
The fixture 10 is easy to be used for bonding workpieces 14. Furthermore, the bonded workpieces 14 are easy to transfer to the cylindrical grinding apparatus because the workpieces 14 cannot be bonded with the lubricated supporting board 13.
Referring to
Understandably, the supporting base 11 can be substituted by an inclined board. The third side wall 123 can be higher than the other two side wall 121, 122, for preventing the workpieces 14 from turning out of the frame 12. The slideway 124 can also be substituted by other slide mechanisms so that the supporting board 13 can slidably contact the frame 12.
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 invention or sacrificing all of its material advantages, the examples here before described merely being preferred or exemplary embodiments of the invention.
Number | Date | Country | Kind |
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200510037478.2 | Sep 2005 | CN | national |