Optimal Design of the Monolithic Flexure Mount for Optical Mirror Using Response Surface Method

Kyoungho Lee, Byounguk Nam, Sungsik Nam
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Abstract

An optimal design of a simple beam-shaped flexure hinge mount supporting an optical mirror is presented. An optical mirror assembly is an opto-mechanically coupled system as the optical and mechanical behaviors interact. This side-supporting mount is flexible in the radial direction and rigid for the remaining degrees of freedom to support the mirror without transferring thermal load. Through thermo-elastic, optical and eigenvalue analysis, opto-mechanical performance was predicted to establish the objective functions for optimization. The key design parameters for this flexure are the thickness and length. To find the optimal values of design parameters, response surface analysis was performed using the design of experiment based on nested FCD. Optimal design candidates were derived from the response surface analysis, and the optimal design shape was confirmed through Opto-mechanical performance validation analysis.
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基于响应面法的光学镜面单片柔性支架优化设计
提出了一种支撑光学反射镜的简单梁型柔性铰链支座的优化设计方法。光学反射镜组件是一个光学和机械行为相互作用的光-机械耦合系统。这种侧面支撑安装是灵活的径向和刚性的剩余自由度,以支持镜子,而不转移热负荷。通过热弹性分析、光学分析和特征值分析,预测了结构的光力学性能,建立了优化的目标函数。该挠曲的关键设计参数是厚度和长度。为了找到设计参数的最优值,采用基于嵌套FCD的试验设计进行了响应面分析。通过响应面分析得到优化设计候选件,并通过光力学性能验证分析确定优化设计形状。
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