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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Design and analysis for the flexible support structure of high precision lens assembly
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Design and analysis for the flexible support structure of high precision lens assembly

机译:高精度镜头组件柔性支撑结构的设计与分析

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摘要

In order to achieve support and positioning of lens assembly which have large aperture and high precision in the on-orbit assembly space telescope validation prototype, A novel lens support structure with multi-point flexible units and four point length-adjustable radial holding is proposed. Then, the structure optimization is finished based on gravity deformation and thermal deformation. Finally, the influence of gravity and thermal load on the lens surface figure under this support structure is given by finite element analysis. The results show that: the largest first lens in the lens assembly is taken as an example, lens surface figure (RMS) of the upper surface causing by gravity and +2 degrees C thermal load is 3.09 nm, while the lower surface is 103 nm, and lens surface figure RMS of the upper surface causing by gravity and -2 degrees C thermal load is 3.43 nm, while the lower surface is 3.39 nm. The results and practice indicate that the multi-point flexible support structure can effectively reduce the influence on lens surface figure by gravity and thermal load, and can be satisfied with the lens surface figure accuracy (RMS 4 nm).
机译:为了实现具有大孔径和高精度的透镜组件的支撑和定位,在轨道组装空间望远镜验证原型中,提出了一种具有多点柔性单元的新型透镜支撑结构和四点长度可调的径向保持。然后,结构优化基于重力变形和热变形完成。最后,通过有限元分析给出了该支撑结构下透镜表面图的重力和热负荷的影响。结果表明:镜头组件中的最大第一透镜是作为示例的,上表面的透镜表面图(RMS)引起的重力和+ 2℃热负荷为3.09nm,而下表面为103nm并且通过重力引起的上表面和-2摄氏度的透镜表面图RMS为3.43nm,下表面为3.39nm。结果和实践表明,多点柔性支撑结构可以通过重力和热负荷有效地降低对透镜表面图的影响,并且可以满足镜头表面图精度(RMS< 4 nm)。

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