Summary: | 碩士 === 逢甲大學 === 材料與製造工程所 === 94 === Ultra Grinding Aid Manufacture is the technology that combines the ultra sound wave and grinding manufacture. This technology is mainly for reprocessing on the hard material such as ceramic. We can further analyze the characteristics of Ultra Grinding Aid Manufacture through the experiment. By improving the processing technology, we hope to more accurately control the quality and the size of surface milling so that its effect on ceramic manufacture will be improved.
There are two parts to the theme of this thesis:
The first part of the thesis theme is focusing on the best terms of Ultra Grinding Aid Manufacture by Taguchi method. We have learned through the experiment that the important factor which affected the quality of Ultra Grinding Aid Manufacture the feed rate and the cutting width. When we confirmed the best Grinding Manufacture term, after the experiment, we have come to the result of Ra 0.4715 Um will increase the processing quality. It also verified that our execution and analysis of the experiment plan are in the right direction.
The second part of the thesis theme is to undergo the experiment of the Diamond pencils’ life span with the best processing term. We have learned the phenomenon and the characteristic of Diamond pencil’s abrasion that occurred in processing, and thus established an abrasion record. In order to compensate the grinding manufacture processing program, we have controlled the deviation of the processing precision accuracy and made it under 0.005 mm. In doing so, we have improved the precision accuracy of the Grinding Manufacture surface. Ultrasonic Aided Grinding Machining is the technology that combines the ultrasonic wave and grinding machining. it’s mainly for the hard material ceramic to go on second processing. I hope that through the experiment we can analyze the characteristics of Ultrasonic Aided Grinding Machining, promote the processing technology, control the quality of surface milling and precision accuracy accurately, and enhance the benefit of ceramic precision machining.
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