Claims
- 1. An automatic lens grinding device comprising a base; a glasses frame supporter rotatably mounted to said base and being provided with a circular opening slightly larger than an inner periphery of one side of the glasses frame; a plurality of devices mounted on said supporter for securing the glasses frame to said supporter in front of said circular opening; a profile tracing guide pin for tracing the inner periphery of said glasses frame, said pin being attached on one end of a shaft and moving a cam at the other end of the shaft; a slidble working table containing a plurality of gears, slidable to forwardly and rearwardly parallel to said supporter; first drive means for moving said slidable working table; coaxial rotary shafts supporting a lens to be ground therebetween; a recording assembly mounted to an extension of said one of said shafts, said recording assembly being provided with a recording substrate; second drive means for rotating driving shafts and said recording plate through said plurality of gears; a grinding stone aligned with said slidable working table; third drive means for driving said grinder stone; a pressure detector for detecting contact pressure between said grinding stone and for generating an electrical signal corresponding to the detected pressure; a pattern detecting element for detecting the absence or presence of a pattern recorded on said recording substrate and control circuit means for receiving signals from said pattern detecting element and said pressure detector which are then put into a selecting circuit, which puts out a value larger than either one of said signals from said pattern detecting element or said pressure detector for actuating said first drive means drive circuit thereby controlling the functioning of said first drive means.
- 2. Device according to claim 1, wherein said pattern detecting element comprises a lamp for generating a light beam collecting lens and a photo detector.
- 3. Device according to claim 1, wherein said control circuit further includes power amplifiers, a feedback circuit, a first drive means driving circuit, a tachometer generator, and a manual pressure control dial.
- 4. Device according to claim 1, wherein said recording paper is a heat sensitive paper.
- 5. Device according to claim 1, wherein said recording paper is a photosensitive paper.
- 6. Device according to claim 1, wherein said recording paper is a magnetic sensitive paper.
- 7. Device according to claim 4, wherein said profile tracing system further comprises a lever controlling said pin, a plunger, a spring connecting said lever and said cam, for retracting said plunger toward the supporter, a heat pen mounted at an end of said plunger for tracing said profile on said heat sensitive paper.
- 8. Device according to claim 5, said profile tracing system comprises a tube, a beam light lamp therein, and a beam collecting lens focusing said profile on said photosensitive paper and a profile tracing guide pin attached on said tube.
- 9. Device according to claim 6, wherein said profile tracing pen is magnetic article.
- 10. Device according to claim 1, wherein said supporter is drivingly connected to and rotatable by said second drive means.
- 11. Device according to claim 1, further including operating switches including work selecting switches, a starting switch, an emergency stop switch, a manual switch.
- 12. Device according to claim 1, further including a manual pressure adjusting dial for presetting a desired pressure.
- 13. An automatic lens grinding device comprising base means for supporting said device;
- support means for supporting glasses frames on said support means being rotatably mounted to said base means and provided with an opening extending therethrough, said glasses frame being removably held on said support means so that one side of the glasses frame is centered across the opening;
- pattern means for receiving a recorded pattern corresponding to the portion of the glasses frame centered across the opening in said support means;
- a profile guide assembly for tracing the inner profile of the portion of the glasses frame centered within the opening in said support means and for forming said recorded pattern on said pattern means;
- carriage assembly means for rotatably supporting a lens to be ground and said pattern means, so that the lens and said pattern means can be rotated, said carriage assembly means being slidably mounted on said base means;
- first drive means for rotating said support means, said pattern means and the lens, said first drive means including coupling means for removably connecting said first drive means to said support means;
- grinding means for grinding the lens rotatably supported in said carriage assembly means;
- second drive means for moving said carriage assembly along said base means toward and away from said grinding means;
- pressure detecting means for sensing the contact between the lens and said grinding means and for producing at least a first pressure signal in response to the sensed contact;
- pattern detecting means for sensing said recorded pattern, and for producing a first pattern signal in response to sensing the absence of said recorded pattern and a second pattern signal in response to sensing the presence of said recorded pattern; control circuit means for receiving the signals produced by said pressure detecting means and said pattern detecting means and for controlling movement of said carriage assembly means toward said grinding means in response to said first pressure signal and said first pattern signal and movement of said carriage assembly means away from said grinding means in response to said second pattern signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
50-114211 |
May 1975 |
JA |
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CROSS REFERENCE TO THE RELATED APPLICATION
This application is a continuation-in-part of our earlier co-pending application Ser. No. 490,188 filed on July 19, 1974, now abandoned.
US Referenced Citations (8)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
490188 |
Jul 1974 |
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