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Realization and Testing of a Deployable Space Telescope Based on Tape Springs

机译:基于带弹簧的可展开式太空望远镜的实现与测试

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For its compact size and light weight, space telescope with deployable support structure for its secondary mirror is very suitable as an optical payload for a nanosatellite or a cubesat. Firstly the realization of a prototype deployable space telescope based on tape springs is introduced in this paper. The deployable telescope is composed of primary mirror assembly, secondary mirror assembly, 6 foldable tape springs to support the secondary mirror assembly, deployable baffle, aft optic components, and a set of lock-released devices based on shape memory alloy, etc. Then the deployment errors of the secondary mirror are measured with three-coordinate measuring machine to examine the alignment accuracy between the primary mirror and the deployed secondary mirror. Finally modal identification is completed for the telescope in deployment state to investigate its dynamic behavior with impact hammer testing. The results of the experimental modal identification agree with those from finite element analysis well.
机译:由于其体积小,重量轻,其辅助反射镜具有可展开支撑结构的太空望远镜非常适合用作纳米卫星或立方体卫星的光学有效载荷。首先介绍了一种基于带弹簧的可部署空间望远镜原型的实现方法。展开式望远镜由主镜组件,副镜组件,6个可折叠的带状弹簧支撑副镜组件,可展开的挡板,后部光学组件以及一组基于形状记忆合金的锁定释放装置等组成。用三坐标测量机测量副镜的部署误差,以检查主镜与已部署的副镜之间的对准精度。最后,在展开状态下完成了望远镜的模态识别,以通过冲击锤测试研究其动态行为。实验模态识别的结果与有限元分析的结果非常吻合。

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