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Advancement of the Segment Support System for the Thirty Meter Telescope Primary Mirror

机译:30米望远镜主镜分段支撑系统的改进

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摘要

This paper presents refinements to the design of the TMT primary mirror segment passive-support system that are effective in reducing gravity print-through and thermal distortion effects. First, a novel analytical method is presented for tuning the axial and lateral support systems in a manner that results in improved optical performance when subject to varying gravity fields. The method utilizes counterweights attached to the whiffletrees to cancel astigmatic and comatic errors normally resulting when the lateral support system resists transverse loads induced by gravity. Secondly, several central diaphragm designs are presented and analyzed to assess lateral-gravity and thermal distortion performance: 1) a simple flat diaphragm, 2) a stress-relieving diaphragm having a slotted outer rim and a circumferential convolution near the outside diameter, and 3) a flat diaphragm having a slotted outer rim. The latter design is chosen based on results from analytical studies which show it to have better overall optical performance in the presence of gravity and thermal environments.
机译:本文提出了对TMT主镜段被动支撑系统设计的改进,这些系统可有效减少重力透印和热变形效应。首先,提出了一种新颖的分析方法,用于调整轴向和侧向支撑系统,使其在受到变化的重力场时可以改善光学性能。该方法利用附着在横木上的配重来抵消散光和彗形误差,这些误差通常在侧向支撑系统抵抗重力引起的横向载荷时产生。其次,提出并分析了几种中央隔膜设计,以评估侧向重力和热变形性能:1)简单的平面隔膜; 2)带有开槽外缘且在外径附近有周向卷积的应力消除隔膜;以及3 )带有开槽外缘的平膜片。后一种设计是根据分析研究的结果选择的,这些研究表明在重力和热环境下,它具有更好的整体光学性能。

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