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VERIFICATION OF OPTICAL PAYLOAD CFRP STRUCTURE FOR SATELLITE THROUGH ANALYSIS AND SPACE QUALIFICATION TEST

机译:通过分析和空间验证测试验证卫星的光学有效载CFRP结构

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This paper describes the development results of optical telescope CFRP structure with analysis and qualification test. Structural analysis and space qualification tests were carried out with launch and in-orbit environments in order to verify the optical payload CFRP structure for satellite with optical, structural and dimensional stability point of view. And structural stability is verified by coupon tests with statistical analysis for calculation Margin of Safety (MoS). Structural analysis with design load and modal analysis in order to prevent the dynamic coupling were performed. And theimo-elastic analysis with qualification temperature from on-orbit thermal analysis results was performed to verify the structural stability. After performed the analytical verification, space qualification tests with structural model(SM) were carried out with dynamic test (sin and random vibration test & sin burst (design load) test) and thermal cycle test for on-orbit structural stability. Optical performance (WFE: Wave front Error) with optics mounted on CFRP Bezel, structural stability with modal survey and 3-dimensional measurement with CMM were performed before and after the space qualification tests.
机译:本文介绍了具有分析和资格测试的光学望远镜CFRP结构的开发结果。通过发射和轨道环境进行结构分析和空间验证测试,以验证具有光学,结构和尺寸稳定性的卫星的光学有效载荷CFRP结构。通过优惠券测试验证了结构稳定性,具有安全性安全性(MOS)的计算边际统计分析。具有设计负荷和模态分析的结构分析,以防止动态耦合。进行来自在轨道热分析结果的资格温度的目的分析,以验证结构稳定性。在进行分析验证后,使用动态测试(SIN和随机振动测试和SIN爆发(设计负载)测试)进行空间资格测试(SM),以及用于轨道结构稳定性的热循环测试。光学性能(WFE:波前误差)与安装在CFRP挡板上的光学器件,在空间资格测试之前和之后进行模态测量的结构稳定性和使用CMM的三维测量。

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