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Study on the Stressed Mirror Polishing with a Continuous Polishing Machine for Large Aperture Off-axis Aspheric Mirrors

机译:大孔径离轴非球面镜连续抛光机的镜面抛光研究

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摘要

A special stressed annular polishing technique is proposed to mill the off-axis aspheric sub-mirrors of a large segmented mirror with an annular polishing machine. Based on the basic principle of stressed annular polishing technique, a set of special stressing mechanisms are designed to convert milling the aspheric surfaces of sub-mirrors with different off-axis distances into milling the spherical surfaces with identical radii of curvature, so that they can be pol- ished simultaneously on a continuous polishing machine. It took about contin- uous 40. hours to polish a scaled-down mirror of the planning Chinese Future Giant Telescope (CFGT) using this technique. This mirror has the 330. mm di- ameter, 3.6 m off-axis distance, and the 21.6 m radius of curvature, and its max- imum asphericity is 16 micron. The experiment shows that this method has a high effciency, suits batch manufacturing, especially the batch manufacturing of aspheric sub-mirrors of the segmented primary mirror of an extremely large aperture telescope.
机译:提出了一种特殊的应力环形抛光技术,用环形抛光机研磨大分段镜的离轴非球面子镜。根据受力环形抛光技术的基本原理,设计了一套特殊的受力机构,以将不同离轴距离的子镜的非球面铣削为具有相同曲率半径的球面铣削,从而使它们能够在连续抛光机上同时抛光。使用该技术抛光了计划中的中国未来巨型望远镜(CFGT)的缩小后的镜子,大约花费了40个小时。该反射镜的直径为330毫米,离轴距离为3.6 m,曲率半径为21.6 m,最大非球面度为16微米。实验表明,该方法效率高,适合批量生产,特别是大口径望远镜分段主镜的非球面副镜的批量生产。

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