Research on high precision combined processing technology of meter-level optical glass guideway

Hanqiang Zhang, Yi-fan Dai, Ci Song, Guipeng Tie
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Abstract

Guideway of the measuring system can affect the measuring accuracy. In order to provide a high-precision motion reference for the coordinate measuring system, this paper proposes the use of ultra -low expansion glass as the material of the measuring platform guideway, and optical processing is introduced to improve the surface accuracy. Meanwhile, guideway edge is easy to produce edge effect and the high-precision measurement is difficult, the combined processing method of magnetorheological finishing, CCOS large disc by circle motion and linear motion of rectangular plate is proposed, and the guideway is measured by sub-aperture stitching method. The results show that the Peak-Valley value of the 1000×240mm2 glass guideway surface is 0.347μm and the Root-Mean-Square value is 0.033wave1wave=0.6328μm). Moreover, the edge effect is controlled in the process. Ultimately, the accuracy of the one meters long glass guideway is reached at deep sub-micron level, and the combined processing technology is verified to be feasible.
米级光学玻璃导轨高精度组合加工技术研究
测量系统的导轨会影响测量精度。为了给坐标测量系统提供高精度的运动参考,本文提出采用超低膨胀玻璃作为测量平台导轨的材料,并引入光学处理来提高表面精度。同时,针对导轨边缘易产生边缘效应和高精度测量困难的问题,提出了磁流变精加工、CCOS大圆盘圆周运动和矩形板直线运动相结合的加工方法,采用子孔径拼接法对导轨进行测量。结果表明:1000×240mm2玻璃导轨表面的峰谷值为0.347μm,均方根值为0.033(波=0.6328μm);此外,在此过程中,边缘效应得到了控制。最终达到了一米长玻璃导轨的深亚微米级精度,验证了组合加工技术的可行性。
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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