1. Technical Field
The present disclosure relates to lenses and, particularly, to a lens dewaxing device for automatically removing wax from lenses which are combined by the wax.
2. Description of Related Art
To increase efficiency, glass substrates are stacked and combined together using wax and ground into lenses. As such, after the grinding, the wax needs to be removed to separate the lenses, which is typically realized by human operations at present. However, to remove the wax, a high temperature above 60 degrees is required, which may be harmful to operators.
Therefore, it is desirable to provide a lens dewaxing device, which can overcome the above-mentioned problems.
Many aspects of the present disclosure 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 disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the views.
Embodiments of the present disclosure will now be described in detail with reference to the drawing.
Referring to
The platform 100 includes a base 102 and a support 104 positioned on the base 102. The base 102 is rectangular and defines a rectangular opening 106. The lengthwise direction of the opening 106 is substantially parallel to that of the base 102. The support 104 includes four vertical rods 108 and two horizontal rods 110. The four vertical rods 108 are perpendicularly connected to the base 102, at four corners, such that the base 102 is positioned at one end of the four vertical rods 108. The two horizontal rods 110 are positioned at the other end of the four vertical rods 108 and parallel with each other. Two ends of each horizontal rod 110 connect two of the vertical rods 108. The base 102 also defines a groove 112 (see
The heating plate 200 is positioned on the base 102. In detail, the heating plate 200 is also rectangular and received in the opening 106 such that the lengthwise direction of the heating plate 200 is substantially parallel to that the lengthwise direction of the opening 106. The heating plate 200 is made of metal and can be electrically heated.
The first linear actuator 300, such as a linear motor, includes a first rail 302 and a first slider 304. The first rail 302 is fixed to the support 104 and is in parallel with the heating plate 200. The first slider 304 slidably rides on the first rail 302. The first linear actuator 300 is configured for driving the first slider 304 to slide on the first rail 302. In detail, the first rail 302 connects central portions of the two horizontal rods 110 together. The lengthwise direction of the first rail 302 is parallel to the lengthwise direction of the heating plate 200. The first linear actuator 300 further includes two guiding rods 306, positioned across the two horizontal rods 110 and at two sides of the first rail 302. The lengthwise directions of the guiding rods 306 are substantially parallel to the lengthwise direction of the first rail 302. The first slider 304 is a rectangular block that defines two guide holes 308 at two lengthwise ends. The two guiding rods 306 slidably run through the respective guiding holes 308.
The first rotational motor 600 includes a connection body 602 connected to the first slider 304, and a first rotor 604 protruding from the connection body 602, and a first connecting plate 606 with a central potion thereof connected to the first rotor 604. The first rotational motor 600 is configured for driving the first rotor 604 along with the first connecting plate 606 to rotate relative to the connection body 602. The lengthwise direction of the first rotor 604 is substantially perpendicular to the lengthwise directions of the first slider 304 and the first rail 302. The first connecting plate 606 is rectangular and is set in such a way that the lengthwise direction of the first connecting plate 606 is substantially perpendicular to the lengthwise direction of the first rotor 604.
The second linear actuators 400, may be, for example, ball screws, and each actuator 400 includes a second rail 402 and a second slider 404. The second slider 404 slidably rides on the second rail 402. The second sliders 404 are fixed to the first connecting plate 606, at two sides of the first rotor 604, such that the second rails 402 are substantially perpendicular to the heating plate 200. The second linear actuators 400 are configured for driving the second sliders 404 to slide on the second rails 402 such that the second rail 402 moves in a direction substantially perpendicular to the heating plate 200.
The operating plates 500 are fixed to the second rails 402, at an end far from the connecting plate 606 and in parallel with the heating plate 200. Each operating plate 500 is similar to the groove 112 in shape but smaller.
The second rotational motor 700 includes a second rotor 702 and a second connecting plate 704 with a central portion thereof connected to an end of the second rotor 702. The second rotor 702 is positioned beside the base 102, adjacent to a corner of the base 102 that is far from the opening 106 and the groove 112. The lengthwise direction of the second rotor 702 is substantially perpendicular to the base 102. The second connecting plate 704 is elongated and extends along a direction that is substantially parallel to the base 102.
Central portions of the feeding plates 800 are connected to two respective ends of the connecting plate 704. The feeding plates 800 are similar to the operating plates 500 in shape and size and arranged in parallel with the base 102.
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In other embodiments, only one of the second linear actuators 400 and the operating plates 500 can be employed. The first rotational motor 600 can be omitted. The second slider 404 can be connected to the first slider 304 directly such that the second rail 402 points to the heating plate 200 directly. The second rotational motor 700 and the feeding plates 800 also can be omitted in other embodiments and the cylinders 20 are fed manually.
It will be understood that the above particular embodiments are shown and described by way of illustration only. The principles and the features of the present disclosure may be employed in various and numerous embodiment thereof without departing from the scope of the disclosure as claimed. The above-described embodiments illustrate the possible scope of the disclosure but do not restrict the scope of the disclosure.
Number | Date | Country | Kind |
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100139233 | Oct 2011 | TW | national |