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Wide-Field Infrared Survey Telescope (WFIRST): Composite Structure Verification for Operational Temperatures

机译:广域红外勘测望远镜(WFIRST):工作温度的复合结构验证

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The Wide-Field Infrared Survey Telescope (WFIRST) mission is the next large astrophysics observatory for NASA after the James Webb Space Telescope and is the top priority mission from the 2010 National Academy of Sciences' decadal survey. The WFIRST Optical Telescope Assembly (OTA) includes inherited composite support structures that were originally designed and tested for room temperature operation; however, the WFIRST mission will require operation at colder temperatures to achieve sufficient sensitivity for the infrared wavelengths. We will present the results and conclusions of testing completed at the coupon and engineering model level to verify that the inherited composite structures will maintain mechanical integrity and performance over the required temperature range. The testing included; (1) characterization testing of constituent material coupons, (2) thermal cycling and static load testing of a representative aft metering structure (AMS) and forward metering structure (FMS), and (3) thermal cycling and dynamic testing of a representative secondary mirror assembly (SMA).
机译:广域红外勘测望远镜(WFIRST)任务是继詹姆斯·韦伯太空望远镜之后的美国宇航局下一个大型天体物理观测站,也是2010年美国国家科学院十年测量的首要任务。 WFIRST光学望远镜组件(OTA)包括继承的复合支撑结构,这些复合支撑结构最初是针对室温操作进行设计和测试的;但是,WFIRST任务将需要在较低温度下进行操作,以实现对红外波长的足够灵敏度。我们将介绍在样板和工程模型级别完成的测试结果和结论,以验证继承的复合结构将在所需的温度范围内保持机械完整性和性能。测试包括; (1)组成材料试样的特性测试,(2)代表性的后计量结构(AMS)和正向计量结构(FMS)的热循环和静态载荷测试,以及(3)代表性的辅助反射镜的热循环和动态测试组件(SMA)。

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