首页> 外文OA文献 >Thermal-Structural Analysis of Sunshield Membranes
【2h】

Thermal-Structural Analysis of Sunshield Membranes

机译:遮阳膜的热结构分析

摘要

Future large infrared space telescopes, such as the James Webb Space Telescope (JWST), will require deployable sunshields to provide passive cooling for optics and instruments. Deployable sunshield structures for such applications typically consist of multiple thin-film membrane layers supported by deployable booms. The mechanical design of the sunshield must accommodate thermal strains due to layer-to-layer temperature differences as well as potentially large in-plane temperature gradients within individual film layers. This paper describes a thermal-structural analysis for predicting the stress state in a thin-film membrane subject to both mechanical thermal loads that could aid in the mechanical design of future sunshield structures. First the temperature field predicted by a thermal analysis is mapped to a structural finite element model, and then the structural response is predicted using a nonlinear static analysis. The structural model uses membrane elements in conjunction with a tension field material model to predict the response of the thin-film membrane layer. The tension field material model accounts for no-compression behavior associated with wrinkling and slackness. This approach was used to study the problem of a single membrane layer from the NASA reference concept for the JWST sunshield. Results from the analysis show that the membrane can experience a loss of tensile preload due to the presence of an in-plane temperature gradient representative of the cold-side layer temperature distribution predicted for the reference concept JWST.
机译:未来的大型红外太空望远镜,例如James Webb太空望远镜(JWST),将需要可展开的遮阳板来为光学和仪器提供被动冷却。用于此类应用的可展开遮阳结构通常由可展开吊杆支撑的多个薄膜膜层组成。遮阳板的机械设计必须适应由于层与层之间的温度差异以及各个薄膜层中可能存在的较大的面内温度梯度而引起的热应变。本文介绍了一种热结构分析方法,用于预测承受两种机械热负荷的薄膜中的应力状态,这可以有助于未来遮阳结构的机械设计。首先将通过热分析预测的温度场映射到结构有限元模型,然后使用非线性静态分析预测结构响应。结构模型将膜单元与张力场材料模型结合使用,以预测薄膜膜层的响应。张力场材料模型考虑了与起皱和松弛相关的无压缩行为。该方法用于研究来自JANA的JWST遮阳板的NASA参考概念中的单个膜层问题。分析结果表明,由于存在代表参考概念JWST预测的冷侧层温度分布的面内温度梯度,因此膜可能会遭受拉伸预紧力的损失。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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