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Tool influence function in aspheric polishing under dynamic pressure distribution_上海光学精密机械研究所

上海光学精密机械研究所 免费考研网/2018-05-06

中文题目: 随动压力分布下的非球面抛光去除函数
外文题目: Tool influence function in aspheric polishing under dynamic pressure distribution
作者: 李徐钰;魏朝阳;徐文东;邵建达;
刊名: 光学精密工程
年: 2016 期: 12 页: 3061--3067
中文关键词:
非球面抛光;;随动压力分布;;变曲率去除函数;;有限元法
中文摘要:
考虑去除函数对数控小工具抛光光学元件精度的影响,提出了如何根据需要加工的非球面参数以及抛光盘参数得到最优去除函数的方法。由于计算非球面上去除函数的核心是准确获得抛光盘与镜面间的动态压力分布,本文提出利用有限元法仿真抛光盘与非球面间的压力分布,并结合经典Preston方程与行星运动模型来得到非球面不同位置处的去除函数。基于随动压力分布模型,分析了沥青盘抛光非球面时在不同抛光位置处去除函数的变化。在曲率半径为1 000mm的球面上进行了去除函数验证实验。结果表明:基于本文理论得到的去除函线型更接近实际情况,皮

英文摘要:
By taking the effect of Tool Influence Function(TIF) used in the NC program on the polishing accuracy for optical elements into account, the method how to obtain the optimized TIF based on the aspheric parameters to be polished and polishing pad parameters is proposed. As the key to calculate the TIF of aspheric elements is to obtain accurately the dynamic pressure distribution between polishing pad and mirror, this paper analyzes the pressure distribution between polishing pad and mirror by finite element method and obtains the TIFs in different positions on the aspheric surface by classic Preston equation and planet motion. The variation tendency of the pitch polishing pad in polishing an aspheric element is analyzed in different polishing positions based on the dynamic pressure distribution model. The TIF spot experiment is carried out on an aspheric element with a curvature of 1 000 mm. The result shows that the shape of TIF simulated by the theory introduced in the paper is more similar with that of the actual situation, and the Pearson correlation coefficient reaches 0.977. It concludes that the method can obtain the pressure distribution conveniently by changing the parameter of polishing position and can optimize the TIFs, which provides a theoretical basis for improving polishing efficiency and polishing accuracy. ? 2016, Science Press. All right reserved.


文献类型: 期刊论文
正文语种: chinese
收录类别: EI
DOI: 10.3788/OPE.20162412.3061


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