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Large angle flexure pivot development for future science payloads for space applications

机译:大角度挠性支点的开发,可用于空间应用的未来科学有效载荷

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An innovative design of a Large Angle Flexure Pivot (LAFP) is described. It combines the advantages of flexure mechanisms while surpassing one of their few flaws, small displacement strokes. The LAFP design exceeds these angular limitations to reach a deflection of 180° (±90°). The centre shifts laterally by less than ±35 μm throughout the full rotation range. The LAFP is meant to be mounted in pairs, coaxially and with the payload between them. The intended application of the LAFP is to angularly guide an optical component in a space environment for future science missions operating in a cryogenic environment. A dedicated performance test bench was developed and manufactured to test the pivot characteristics notably the lateral shift using Eddy current sensors. The test bench incorporates a representative dummy payload for mass and inertia. Extensive FEM analysis has been performed to validate the design at component level and further analysis with the pivots mounted with a representative payload on a test bench for random vibration, shock and thermal cycling environment. The second test bench for the vibration and shock tests has been manufactured incorporating a simplified launch locking device. The performance tests have confirmed a lateral shift of less than ±35 μm over an angular range of ±90°. The pivots have been successfully tested and survived vibration loads for high level sine at 24 g and random vibration at 12 grms in all three directions.
机译:描述了大角度挠性枢轴(LAFP)的创新设计。它结合了挠曲机构的优点,同时克服了挠曲机构的少数缺陷之一,即小位移冲程。 LAFP设计超出了这些角度限制,以达到180°(±90°)的偏转。在整个旋转范围内,中心横向偏移小于±35μm。 LAFP旨在成对安装,同轴安装,并在它们之间放置有效载荷。 LAFP的预期应用是在空间环境中以角度引导光学组件,以便在低温环境中进行未来的科学任务。开发并制造了专用的性能测试台,以使用电涡流传感器测试枢轴特性,尤其是横向位移。测试台结合了具有代表性的虚拟有效载荷,用于质量和惯性。已经进行了广泛的FEM分析,以验证组件级别的设计,并通过将带有代表性负载的支轴安装在测试台上进行进一步分析,以应对随机振动,冲击和热循环环境。用于振动和冲击测试的第二个测试台已经制造,并带有简化的发射锁定装置。性能测试已证实,在±90°的角度范围内,横向偏移小于±35μm。枢轴已经过成功测试,并且在所有三个方向上都承受了24 g的高正弦振动和12 grms的随机振动的振动载荷。

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