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空间反射镜背部双脚架柔性支撑结构设计

周宇翔 沈霞

激光技术2017,Vol.41Issue(1):141-145,5.
激光技术2017,Vol.41Issue(1):141-145,5.DOI:10.7510/jgjs.issn.1001-3806.2017.01.029

空间反射镜背部双脚架柔性支撑结构设计

Structure design of backside bipod flexure mount for space reflector

周宇翔 1沈霞1

作者信息

  • 1. 中国科学院 上海技术物理研究所,上海200083
  • 折叠

摘要

Abstract

To satisfy the requirement of thermal adaptability and limited space, a kind of bipod flexure mounts for space reflector (Φ355mm) made of super low expansion coefficient glass was designed by finite element analysis ( FEA) method. Firstly, the basic design principles of bipod flexure were studied. The advantage of bipod structure, compared with three points backside structure, was discussed from the view of freedom. Secondly, simulation analysis and optimization design were carried out for the influence of dimension parameters of support structure and flexure hinge on the surface figure accuracy. The intersection position of supporting foot extension line should be the key design parameters and the bonding position should be designed respectively. The results indicate that backside bipod flexure mounts after improved design has fine thermal adaptability and can effectively discharge the load caused by thermal variation, and has fine supporting ability and dynamic stiffness at the same time. root mean square of surface figure accuracy reaches 3. 68nm, after reflection mirror mounting, and the first order frequency of assembly is 123. 41Hz. The data can meet the design requirements. This study can supply the meaningful reference for future structure design of backside bipod mounts.

关键词

光学设计/双脚架柔性支撑/有限元分析/空间反射镜

Key words

optical design/bipod flexible mount/finite element analysis/space reflector

分类

信息技术与安全科学

引用本文复制引用

周宇翔,沈霞..空间反射镜背部双脚架柔性支撑结构设计[J].激光技术,2017,41(1):141-145,5.

激光技术

OA北大核心CSCDCSTPCD

1001-3806

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