Design and analysis of the International X-Ray Observatory mirror modules

R. Mcclelland, T. Carnahan
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引用次数: 21

Abstract

The Soft X-Ray Telescope (SXT) modules are the fundamental focusing assemblies on NASA's next major X-ray telescope mission, the International X-Ray Observatory (IXO). {su12]The preliminary design and analysis of these assemblies has been completed, addressing the major engineering challenges and leading to an understanding of the factors effecting module performance. Each of the 60 modules in the Flight Mirror Assembly (FMA) supports 200–300 densely packed 0.4 mm thick glass mirror segments in order to meet the unprecedented effective area required to achieve the scientific objectives of the mission. Detailed Finite Element Analysis (FEA), materials testing, and environmental testing have been completed to ensure the modules can be successfully launched. Resulting stress margins are positive based on detailed FEA, a large factor of safety, and a design strength determined by robust characterization of the glass properties. FEA correlates well with the results of the successful modal, vibration, and acoustic environmental tests. Deformation of the module due to on-orbit thermal conditions is also a major design driver. A preliminary thermal control system has been designed and the sensitivity of module optical performance to various thermal loads has been determined using optomechanical analysis methods developed for this unique assembly. This design and analysis furthers the goal of building a module that demonstrates the ability to meet IXO requirements, which is the current focus of IXO FMA technology development team.
国际x射线天文台镜面模块的设计与分析
软x射线望远镜(SXT)模块是美国宇航局下一个主要x射线望远镜任务——国际x射线天文台(IXO)的基本聚焦组件。{su12]这些组件的初步设计和分析已经完成,解决了主要的工程挑战,并导致对影响模块性能的因素的理解。飞行镜组件(FMA)中的60个模块中的每个模块都支持200-300个密集包装的0.4毫米厚玻璃镜段,以满足实现任务科学目标所需的前所未有的有效面积。详细的有限元分析(FEA)、材料测试和环境测试已经完成,以确保模块能够成功发射。基于详细的有限元分析,得到的应力裕度为正,安全系数大,设计强度由玻璃性能的稳健表征决定。有限元分析与成功的模态、振动和声环境试验结果相吻合。由于在轨热条件导致的模块变形也是一个主要的设计驱动因素。设计了一个初步的热控制系统,并使用为该独特组件开发的光力学分析方法确定了模块光学性能对各种热负荷的灵敏度。这种设计和分析进一步实现了构建一个能够满足IXO要求的模块的目标,这是IXO FMA技术开发团队当前的重点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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