系外行星成像星冕仪模块光学基板结构优化设计与分析

Optimization design and analysis for the optics bench structure of the Cool Planet Imaging Coronagraph module

  • 摘要: 为确保星冕仪的成像性能,文章针对中国空间站巡天空间望远镜(CSST)系外行星成像星冕仪(CPI-C)的光学基板结构进行优化设计与分析。首先,通过数值仿真分析方法获取光学基板的最优结构设计方案;然后,对优化设计方案进行动力学性能仿真分析评估;最后,对试验工装夹具进行设计,并试验测试加工完成的光学基板的力学性能。结果显示:优化后的光学基板重8.6 kg,轻量化率为70.19%,一阶固有频率为322.46 Hz;试验工装和光学基板耦合后的一阶固有频率为269.63 Hz(>150 Hz)。以上表明光学基板的性能满足设计指标要求,能够用于CPI-C模块。

     

    Abstract: To ensure the imaging performance of the star coronagraph, the structural optimization design and analysis for the optics bench of Cool Planet Imaging Coronagraph (CPI-C) on China Space Station Telescope (CSST) was proposed. Firstly, the optimal structural design scheme of optics bench was obtained by numerical simulation. Then, the dynamics performance of the optimized design scheme was analyzed by numerical simulation. Finally, the experimental fixture was designed, and the mechanical properties of the optics bench were tested. The results show that the weight of optics bench is 8.6 kg, with a lightweight rate of 70.19% and the first order natural frequency of 322.46 Hz. The first order natural frequency of the coupled structure of the experimental fixture and optics bench is 269.63 Hz (>150 Hz). It indicates that the performance of the optics bench meets the design requirements and can be used for the CPI-C module.

     

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