ASTRO-H (Hitomi)机载软x射线光谱仪(SXS)制冷机非线性隔振系统地基试验验证

B. Allen, Catherine Borst, Scott Kidney, M. Mimovich, Chris Paavola, Timothy J. Pargett, P. Wilke, Christian Smith, K. Ishimura, Y. Takei, S. Yasuda
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引用次数: 3

摘要

固有的非线性隔振系统提供了令人信服的分析性能优于其线性交替。验证测试和测试后的关联对于说服保守的项目管理团队采用这些技术来完成他们的任务是非常重要的。本文详细介绍了为ASTRO-H(发射后命名为Hitomi)上的软x射线光谱仪(SXS)开发的新型隔振系统开发和执行的综合测试验证程序。更具体地说,为改善低温冷却器引起的在轨机械振动而开发的双级/导热/非线性隔振系统需要进行地面测试,以验证在轨性能和发射引起的响应水平抑制,以保护敏感的有效载荷温度控制部件。该系统被称为VIS,在发射和地面测试期间实现了高频小信号传输和小加速度和抗振动位移。
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Ground based test verification of a nonlinear vibration isolation system for cryocoolers of the Soft X-ray Spectrometer (SXS) onboard ASTRO-H (Hitomi)
Inherently nonlinear vibration isolation systems offer compelling analytical performance advantages over their linear alternates. Verification testing followed by post-test correlation is essential to convincing otherwise conservative project management teams to adopt these technologies for their mission. This paper details a comprehensive test verification program developed and executed for a novel vibration isolation system developed for the Soft X-ray Spectrometer (SXS) onboard ASTRO-H (named Hitomi after launch). More specifically, the dual-stage / thermally conductive / nonlinear vibration isolation system developed for on-orbit amelioration of cryocooler-induced mechanical vibration, needed to undergo ground testing to demonstrate both on-orbit performance and launch induced response level rejection to protect sensitive payload temperature control components. The system, referred to as the VIS, realizes both small signal transmissibility at high frequency and small acceleration and displacement against vibration during launch and ground testing.
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