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Optimization of a 16 Inches Diameter Primary Mirror Assembly of a Ground-Based Telescope

机译:优化基于地面望远镜的16英寸直径的主镜组件

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This article presents the opto-mechanical design of a primary mirror assembly of a ground-based telescope with optimization algorithm. The prototype of ground-based telescope - GSO RC16 with 16 inches diameter blank primary mirror had been manufactured in 2016. However, a telescope with a blank primary mirror is too heavy to carry on for the stargazer. Besides, deformations caused by temperature difference and gravity will do significant effect to the large aperture mirrors with high-optical performance requirements. In order to reduce the weight and maintain the stiffness simultaneously, the lightweight design and mounting interface design are critical and important. There are four types of system architectures in this project, including (1) two types of lightweight mirror designs - honeycomb type segments and sector type segments; (2) two types of mounting interface designs - retainer type support and CFRP type support. The optimization results showed that (1) the lightweight ratio of the primary mirrors are greater than 70%; and (2) the PV value of the mirrors supported by optimal mounting interfaces with gravity effect as a tilt of about 45 degrees and ±20°C temperature difference effectively less than 1/4 λ.
机译:本文提出了具有优化算法的地面望远镜的主镜组件的光电设计。地面望远镜 - GSO RC16的原型,2016年制造了16英寸直径的空白主镜。然而,带有空白镜子的望远镜太重,无法持有星顶。此外,由温差和重力引起的变形对具有高光学性能要求的大型孔径镜产生显着影响。为了减轻重量并同时保持刚度,轻质设计和安装界面设计是至关重要的,重要的。该项目中有四种类型的系统架构,包括(1)两种类型的轻质镜面设计 - 蜂窝型段和扇形类型段; (2)两种类型的安装接口设计 - 保持器类型支持和CFRP类型支持。优化结果表明,(1)主镜的轻量级比大于70%; (2)由重力效应的最佳安装界面支持的镜子的PV值,作为约45度和±20℃的倾斜,有效地小于1/4λ。

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