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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Design and analysis for the multi-point flexible support structure of large and precision lens
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Design and analysis for the multi-point flexible support structure of large and precision lens

机译:大型精密镜头多点柔性支撑结构的设计与分析

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摘要

In order to achieve accurate surface figure and optical axis stability of a large aperture lens in the ground-based telescope system which subject to various load case, a novel lens support with multi-point flexible support structure is proposed. Then, the parameters of the support structure are optimized based on low-order modal and system accuracy, and the sensitivity of the flexure element's parameters, the impact on the optical axis inducted by assembly and machining error of the support structure and the stability of the lens under different load cases are analyzed, meanwhile the rigidity of the support structure is tested. The result show that: the support rigidity of the system is higher, the optical axis offset causing by gravity is less than 2 mu m when the lens is mounted horizontally; lens wave-front aberration (RMS) is 11.07nm when thermal load is altered from reference temperature(+20 degrees C) to -20 degrees C. The results and practice indicate that the multi-point flexible support structure can improve lens surface figure, and the assembly design is practicable and extensible.
机译:为了在经过各种负载壳体的地面望远镜系统中实现大型孔径透镜的精确表面图和光轴稳定性,提出了一种具有多点柔性支撑结构的新颖透镜支撑。然后,基于低阶模态和系统精度优化支持结构的参数,以及弯曲元件参数的灵敏度,通过组装和加工误差对载体结构的施加和加工误差的影响和稳定性分析了不同负载箱下的镜头,同时测试了支撑结构的刚性。结果表明:系统的支撑刚度较高,当镜头水平安装时,通过重力引起的光轴偏移小于2μm;当热负荷从参考温度(+ 20℃)变为-20℃时,镜头波前像差(RMS)是11.07nm。结果和实践表明,多点柔性支撑结构可以改善镜头表面图,并且装配设计可行和可扩展。

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