Optimization analysis of ultra-precision flying-tool cutting machine for optical elements

Shenggen Zhu, Fei-hu Zhang, Jinfeng Bai, Lingyu Zhao, Huiying Zhao
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引用次数: 0

Abstract

With the development of the modern state of optical engineering, large diameter (400×400 mm) of optical element processing and its whole surface shape accuracy is 0.1 micron (λ/ 6). It's on special crystal material single point diamond fly knife cutting ultra-precision machine tools put forward higher request, the bed is equipped with stable, the lathe bed equipment for the foundation design, and set the parts of the material. We think about the precision analysis of the external influencing factors of equipment, and design the model of equipment bed. In the bed model, the static simulation analysis is made under the two schemes of basic design and optimized reinforcement, respectively. And we compared the necessary design model and optimized design model. The total deformation was 0.409 microns for bed base, 0.268 microns for oblique rib, and 0.312 microns for circular rib. And we analyzed the deformation in X, Y and Z directions.
光学元件超精密飞刀切割机的优化分析
随着现代光学工程的发展,大直径(400×400 mm)光学元件的加工及其整体表面形状精度可达0.1微米(λ/ 6),这就对特殊晶体材料单点金刚石飞刀切削的超精密机床提出了更高的要求,其床身配备稳定,床身设备为基础设计,并设置了零件的材质。考虑了设备外部影响因素的精度分析,设计了设备床身模型。在床层模型中,分别在基础设计和优化加固两种方案下进行了静力仿真分析。并对必要设计模型和优化设计模型进行了比较。床基变形量为0.409微米,斜肋变形量为0.268微米,圆肋变形量为0.312微米。并分析了X、Y、Z三个方向的变形情况。
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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