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Finite element analysis of the LOLA receiver telescope lens

机译:LOLA接收器望远镜镜头的有限元分析

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This paper presents the finite element stress and distortion analysis completed on the receiver telescope lens of the Lunar Orbiter Laser Altimeter (LOLA) LOLA is one of six instruments on the Lunar Reconnaissance Orbiter (LRO), scheduled to launch in 2008. LOLA's main objective is to produce a high-resolution global lunar topographic model to aid in safe landings and enhance surface mobility in future exploration missions. A receiver telescope captures the laser pulses transmitted through a diffractive optical element (DOE) and reflected off the lunar surface. The largest lens of the receiver telescope was modeled with solid elements and constrained in a manner consistent with the behavior of the mounting configuration. Twenty-one temperature load cases were mapped to the nodes based on thermal analysis completed by LOLA's lead thermal analyst, and loads were applied to simulate the preload applied from the ring flexure. The thermal environment of the baseline design produces large radial and axial gradients in the lens, These large gradients create internal stresses that may lead to part failure, as well as significant bending that degrades optical performance. The high stresses and large distortions shown in the analysis precipitated a design change from BK7 glass to sapphire.
机译:本文介绍了在月球轨道激光高度计(Lola)Lola的接收器望远镜镜头上完成的有限元应力和失真分析是月球侦察轨道(LRO)的六个乐器之一,计划于2008年推出。萝拉的主要目标是为了生产高分辨率全球月球地形模型,可帮助安全着陆,并在未来的勘探任务中提高表面流动性。接收器望远镜捕获通过衍射光学元件(DOE)透射的激光脉冲并反射从月球表面反射。接收器望远镜的最大透镜用固体元素建模并以与安装配置的行为一致的方式约束。基于Lola的铅热分析师完成的热分析映射了二十一个温度负荷壳体,并且应用负载来模拟从环形弯曲施加的预载荷。基线设计的热环境在镜头中产生大的径向和轴向梯度,这些大型梯度会产生可能导致部分故障的内部应力,以及显着弯曲,从而降低光学性能。分析中所示的高应力和大的畸变沉淀到BK7玻璃到蓝宝石的设计变化。

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