【24h】

Thermal calculation and structure analysis of space Main Optical Telescope

机译:空间主镜的热力计算与结构分析

获取原文
获取原文并翻译 | 示例

摘要

Primary mirror with Φ 1m and f 3.5m is the most important optical part in the space Main Optical Telescope (MOT). Since its required surface error is less than λ/40(rms.), where λ is about 0.6um, the mirror deformation induced by space heat and gravity must be within 0.015μm, it's necessary to make thermal calculation and structural analysis to improve its structure. In this paper, the MOT structure and its finite element model is described. The mechanical properties are then analyzed in order to verify whether this structure can meet the optical requirements of sufficient strength, stiffness, and thermal stability. Mechanical analysis is carried out with MSC.Nastran software under 3 different load cases: gravity influence on-ground, dynamic impact during launching, weightlessness and heat environment in-orbit. Space thermal analyses are also done to simulate the space environment. The coupled deformation of heat and structure is finally analyzed. Calculation results show that different support ways and support forces will be the keys to determine the surface precision of primary mirror. The structure can meet the optical demands, but the thermal deformation can not, especially in an asymmetric temperature distribution, which should be tested and controlled by some strict methods.
机译:Φ1m和f 3.5m的主镜是空间主光学望远镜(MOT)中最重要的光学部件。由于其所需的表面误差小于λ/ 40(rms。),其中λ约为0.6um,由空间热和重力引起的镜面变形必须在0.015μm以内,因此有必要进行热计算和结构分析以改善其结构体。本文描述了MOT结构及其有限元模型。然后分析机械性能,以验证该结构是否可以满足足够强度,刚度和热稳定性的光学要求。力学分析是使用MSC.Nastran软件在3种不同的载荷情况下进行的:地面重力影响,发射过程中的动态冲击,失重和在轨热环境。还进行了空间热分析以模拟空间环境。最后分析了热与结构的耦合变形。计算结果表明,不同的支撑方式和支撑力将是决定主镜表面精度的关键。该结构可以满足光学要求,但热变形不能满足要求,特别是在温度分布不对称的情况下,应通过严格的方法进行测试和控制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号