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Verification of Placement Precision and Stability for the GEMS Telescope Optical Boom

机译:验证宝石望远镜光学臂的放置精度和稳定性

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A new variant of the venerable Coilable boom has been designed, built, and tested to validate the challenging structural requirements of the GEMS X-Ray Polarimeter deployable focal length spacecraft observatory. Until its cancellation by NASA in mid-2012, the Gravity and Extreme Magnetism SMEX (GEMS) X-ray polarimeter mission, led by the Goddard Space Flight Center (GSFC) was built around this new boom design which, thanks to its compact stowage and low mass, enabled the use of a relatively affordable, small launch vehicle. The work performed to date has established a completed Flight design, refined and validated by ground testing of a flight-like Engineering Test Unit (ETU), which demonstrated extremely tight deployed placement repeatability. Over dozens of ground deployments, this ETU deployed its 45-kg optical payload simulator to the same position at 3.8 m of linear extension within a 0.025 mm standard deviation, in all translational degrees of freedom (DOFs). In addition to the hardware ground testing, detailed thermal-structural analysis was performed which predicted orbital thermal distortions (including eclipse) on the order of 0.1 mm in all translational DOFs, and 5 arcsec in all rotational DOFs.
机译:古老的可盘绕的动臂的新变体已经被设计,制造和测试,以验证该GEMS X射线光仪展开焦距宇宙飞船天文台的挑战结构要求。直到它在2012年年中取消由美国航空航天局,重力和极端磁性SMEX(GEMS)X射线偏光任务,由戈达德太空飞行中心(GSFC)领导建围绕这个新的热潮设计,由于其紧凑的装载和低质量,使使用比较实惠,小运载火箭。迄今为止已进行的工作已经建立了一个完整的飞行设计,纯化,用飞行般的工程测试单元(ETU),这表明极度紧张部署位置可重复性的地面试验验证。超过几十地面部署的,此ETU部署了45公斤光学有效载荷模拟器到相同的位置在0.025毫米标准偏差内线性延伸为3.8μm,在所有的平移自由度(自由度)的。除了硬件地面试验,进行详细的热结构分析,其预测轨道热变形的0.1mm的所有平移自由度和5弧秒在所有旋转自由度的数量级上(包括蚀)。

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