Small tool grinding of the large aperture segment mirror based on six axis robotic arm

Zibo Jiang, Xinnan Li, Bo Li, Zhe Chen, Kunxin Chen, Fengpu Wang
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Abstract

The splicing sub mirrors of the Thirty Meter Telescope(TMT) primary mirror are off-axis aspheric shapes with large aspheric value. In order to reduce the time of stressed mirror annular polishing(SMAP), the mirror surface will be fine grinding using computer numerical control (CNC) processing device based on a six axis robotic arm before SMAP process, and the segment mirror will be lapping quickly benefit by high removal efficiency of fine grinding compared to polishing. In this article the principles of CNC processing, robotic arm motion controlling, and the experiment of fine grinding removal function are introduced. Finally, the segment mirror of TMT at the out edge is processed, and the fabrication convergence curve and final surface residual distribution are obtained. The optimized machining experience can further shorten the processing time and be used for early aspheric process of segments.
基于六轴机械臂的大孔径段镜面小工具磨削技术
三十米望远镜(TMT)主镜的拼接副镜是离轴非球面形状,非球面值较大。为了缩短受力镜面环形抛光(SMAP)的时间,在SMAP工序之前,将使用基于六轴机械臂的计算机数控(CNC)加工设备对镜面进行精磨,由于精磨的去除效率比抛光高,分段镜面将很快被研磨。本文介绍了 CNC 加工原理、机械臂运动控制以及精磨去除功能实验。最后,对 TMT 外边缘的分段镜面进行了加工,得到了加工收敛曲线和最终表面残余分布。优化后的加工经验可进一步缩短加工时间,并可用于早期的分段非球面加工。
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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