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Research on the Support and Gravitational Deformation of Large Aperture Primary Mirror of Space Telescopes

机译:空间望远镜大口径主镜的支撑和引力变形研究

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The surface figure of the primary mirror in a large aperture telescope is one of the key factors influencing imaging quality. Space telescopes are used in weightless environments, which is different from the ground environment for optical machining and testing. Therefore the effect of the deformation induced by gravity on the imaging quality is not negligible and the mirror support is to be carefully designed to unload the gravity during the course of machining and testing. In this paper, finite element analysis software is adopted to simulate and compare the deformation induced by gravity of a metre-scale aspheric lightweight primary mirror with different support methods and different working conditions. The results are then imported into MetroPro software supplied by ZYGO Corporation, to remove the tilts and rigid body motion of the mirror and calculate the primary aberrations from the deformation. Finally, sensitivity analysis of support deformation is implemented and the principles of mirror support design are summarized. The research is instructive for design, machining and testing of large aperture mirrors.
机译:大口径望远镜中主镜的表面图形是影响成像质量的关键因素之一。太空望远镜是在无重力环境中使用的,该光学环境不同于地面环境,用于光学加工和测试。因此,由重力引起的变形对成像质量的影响是不可忽略的,镜面支撑件应精心设计以在加工和测试过程中卸载重力。本文采用有限元分析软件对具有不同支撑方式,不同工作条件的米级非球面轻型主镜重力作用引起的形变进行仿真和比较。然后将结果导入到ZYGO Corporation提供的MetroPro软件中,以消除反射镜的倾斜和刚体运动,并从变形计算出主要像差。最后,进行了支撑变形敏感性分析,总结了镜面支撑设计的原理。该研究对大孔径镜的设计,加工和测试具有指导意义。

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