Metis日冕反射镜制造中光学表面最小变形粘接工艺的有限元分析

F. Procháska, T. Vít, O. Matousek, R. Melich
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引用次数: 1

摘要

在梅蒂斯轨道日冕仪精密反射镜的制造过程中,对最终表面的微粗糙度和形状精度提出了很高的要求。这是一项具有挑战性的工程任务,涉及到反射镜的轻量化设计以及由此产生的光学表面形状稳定性。这种光学元件的制造通常受到许多不同效应的影响。它们大多是由温度场的不稳定性引起的。有必要探索、理解并最终减少在镜面粘合、研磨和抛光过程中发生的所有热机械过程,以尽量减少光学表面变形。应用有限元模拟是解决这一问题的有效工具。采用有限元模拟方法对不同的反射镜支架进行了仿真比较,以减小温度变化产生的残余应力,并将光学表面的形状变形抑制在约100 nm的临界极限以下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FEM analysis of bonding process used for minimization of deformation of optical surface under Metis coronagraph mirrors manufacturing
High demands on the final surfaces micro-roughness as well as great shape accuracy have to be achieved under the manufacturing process of the precise mirrors for Metis orbital coronagraph. It is challenging engineering task with respect to lightweight design of the mirrors and resulting objectionable optical surface shape stability. Manufacturing of such optical elements is usually affected by number of various effects. Most of them are caused by instability of temperature field. It is necessary to explore, comprehend and consequently minimize all thermo - mechanical processes which take place during mirror cementing, grinding and polishing processes to minimize the optical surface deformation. Application of FEM simulation was proved as a useful tool to help to solve this task. FEM simulations were used to develop and virtually compare different mirror holders to minimize the residual stress generated by temperature changes and to suppress the shape deformation of the optical surface below the critical limit of about 100 nm.
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