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Evaluation of Microbolometer-Based Thermography for Gossamer Space Structures

机译:基于微辐射热计的热成像技术对游丝空间结构的评估

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In August 2003, NASA's In-Space Propulsion Program contracted with our team to develop a prototype on-board Optical Diagnostics System (ODS) for solar sail flight tests. The ODS is intended to monitor sail deployment as well as structural and thermal behavior, and to validate computational models for use in designing future solar sail missions. This paper focuses on the thermography aspects of the ODS. A thermal model was developed to predict local sail temperature variations as a function of sail tilt to the sun, billow depth, and spectral optical properties of front and back sail surfaces. Temperature variations as small as 0.5℃ can induce significant thermal strains that compare in magnitude to mechanical strains. These thermally-induced strains may result in changes in shape and dynamics. The model also gave insight into the range and sensitivity required for in-flight thermal measurements and supported the development of an ABAQUS-coupled thermo-structural model. The paper also discusses three kinds of tests conducted to 1) determine the optical properties of candidate materials; 2) evaluate uncooled microbolometer-type infrared imagers; and 3) operate a prototype imager with the ODS baseline configuration. (Uncooled bolometers are less sensitive than cooled ones, but may be necessary because of restrictive ODS mass and power limits.) The team measured the spectral properties of several coated polymer samples at various angles of incidence. Two commercially available uncooled microbolometer imagers were compared, and it was found that reliable temperature measurements are feasible for both coated and uncoated sides of typical sail membrane materials.
机译:2003年8月,美国国家航空航天局(NASA)的太空推进计划与我们的团队签订了合同,开发了用于太阳帆飞行测试的机载光学诊断系统(ODS)原型。 ODS旨在监视帆的展开以及结构和热行为,并验证用于设计未来太阳帆任务的计算模型。本文重点介绍了ODS的热成像方面。开发了一个热模型来预测局部帆温度随帆向太阳倾斜,翻滚深度以及前后帆表面光谱光学特性的变化。小至0.5℃的温度变化会引起明显的热应变,其大小与机械应变相比。这些热感应应变可能会导致形状和动力学变化。该模型还提供了飞行中热测量所需的范围和灵敏度的信息,并支持ABAQUS耦合热结构模型的开发。本文还讨论了以下三种测试:1)确定候选材料的光学性能; 2)评估未冷却的微辐射热计型红外成像仪;和3)使用ODS基线配置操作原型成像仪。 (未冷却的辐射热计不如冷却的辐射热计敏感,但由于限制性ODS质量和功率限制而可能是必需的。)研究小组测量了多个涂层聚合物样品在不同入射角下的光谱特性。比较了两种市售的未冷却的微辐射热成像仪,发现对于典型的帆膜材料的涂层侧和未涂层侧,可靠的温度测量都是可行的。

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