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Applications and development of micro- or nano-metric multi degree of freedom adjusting displacement scaling mechanisms for primary mirror

机译:应用和开发微型或纳米度量多程度自由度调节主镜子的位移缩放机制

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For large aperture and high-resolution space optical cameras, the focusing requirements caused by different resolution requirements, or the requirements for the segmented primary mirror for deployable telescopes or on-orbit assembly space telescopes, the micro- or nano-metric multi degree of freedom adjusting of the primary mirror or the segment mirror is one of the inevitable development trends of the active optical system. According to the different degrees of freedom involved in the primary mirror adjustment, the micro- or nano-metric multi degree of freedom adjusting displacement scaling mechanisms of the monolithic and segmented primary mirror are studied. The development history and structural characteristics of multi degree of freedom adjusting displacement scaling mechanisms including rigid lever type, gear deceleration type, hydraulic mechanism type and compliant hinge type, as well as their research status and application fields, are introduced. The performance characteristics and applications of various displacement scaling mechanisms are analyzed and compared. Finally, according to the application requirements of space telescopes in the future, the development trend of multi degree of freedom (DOF) adjusting displacement scaling mechanism for segmented primary mirror is proposed.
机译:对于大的孔径和高的分辨率的空间光相机,引起不同的分辨率要求的聚焦的需求,或者用于要求分割主镜用于展开的望远镜或在轨组件空间望远镜,所述微米或纳米度量多自由度主反射镜或反射镜段的调整是有源光学系统的必然的发展趋势之一。根据初级镜调整所涉及的不同程度的自由度,研究了微观或纳米度量的多度自由度调节整体和分段镜像的位移缩放机构。介绍了包括刚性杠杆式,齿轮减速型,液压机构类型和柔顺铰链型等位移调节的多程度自由度的开发历史和结构特征及其研究现状和应用领域。分析和比较各种位移缩放机制的性能特征和应用。最后,根据将来的空间望远镜的应用要求,提出了多程度自由(DOF)调节分段初级镜子的置换缩放机构的发展趋势。

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