New NC Data Generating Method Including Tool Wear Compensation in ELID (Electrolytic In-Process Dressing) Grinding

S. Moriyasu, Y. Yamagata, H. Ohmori
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Abstract

Recent demands for ultraprecision machining has been for higher precision. The ELID grinding technique is widely known as a method which produces high precision ground surfaces in a short period of time.1) Aspherical optics, one typical example of super precision parts, require not only good mirror surface finish but also high form accuracy.2) But it involves considerable difficulty to achieve both good mirror surface finish and high form accuracy. The authors have proposed a new form control system for achieving high form accuracy regularly and efficiently in aspherical ELID grinding, and successful results could be obtained through some experiments3),4). But there had been some conditions, under which the profile errors could not converge because the radius of the grinding wheel decreased by the wear. This paper proposes a new form compensation method which can be applied to the condition under which the grinding wheel is much worn.
电解加工中刀具磨损补偿的数控数据生成新方法
最近对超精密加工的要求是更高的精度。ELID磨削技术是一种在短时间内获得高精度磨削表面的方法。1)非球面光学器件是超精密零件的典型代表,它不仅要求镜面光洁度好,而且要求形状精度高。2)镜面光洁度好,形状精度高,但要同时实现镜面光洁度好和形状精度高,难度很大。作者提出了一种新的形状控制系统,可以在非球面ELID磨削中实现有规律、高效的高形状精度,并通过一些实验获得了成功的结果(3),4)。但在一定条件下,由于磨耗使砂轮半径减小,使齿形误差不能收敛。本文提出了一种新的形式补偿方法,适用于砂轮磨损严重的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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