首页> 外文会议>Cryogenic Optical Systems and Instruments XII; Proceedings of SPIE-The International Society for Optical Engineering; vol.6692 >Cryogenic system for interferometric measurement of dimensional changes at 40 K: Design and performance
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Cryogenic system for interferometric measurement of dimensional changes at 40 K: Design and performance

机译:干涉测量40 K下尺寸变化的低温系统:设计和性能

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This report describes the facility, experimental methods, characterizations, and uncertainty analysis of the Cryo-Distortion Measurement Facility (CDMF) at the Goddard Space Flight Center (GSFC). This facility is designed to measure thermal distortions of structural elements as the temperature is lowered from 320K to below 40 K over multiple cycles, and is capable of unattended running and data logging. The first measurement is the change in length and any bending of composite tubes with Invar end-fittings. The CDMF includes a chamber that is efficiently cooled with two cryo-coolers (one single-stage and one two-stage) rather than with liquid cryogens. Five optical ports incorporate sapphire radiation shields - transparent to the interferometer - on each of two shrouds and a fused silica vacuum-port window. The change in length of composite tubes is monitored continuously with displacement-measuring interferometers; and the rotations, bending, and twisting are measured intermittently with theodolites and a surface-figure interferometer. Nickel-coated invar mirrors and attachment mechanisms were developed and qualified by test in the CDMF. The uncertainty in measurement of length change of 0.4 m tubes is currently estimated at 0.9 micrometers.
机译:本报告介绍了哥达德太空飞行中心(GSFC)的低温失真测量设施(CDMF)的设施,实验方法,特征和不确定性分析。当温度在多个周期内从320K降低到40 K以下时,此设备旨在测量结构元件的热变形,并且能够无人值守运行和数据记录。第一个测量是长度的变化以及带有Invar端接件的复合管的任何弯曲。 CDMF包括一个腔室,该腔室可通过两个低温冷却器(一个单级和一个两个二级)有效地冷却,而不是使用液态制冷剂冷却。五个光学端口在两个护罩和一个熔融石英真空端口窗口的每一个上都装有蓝宝石辐射屏蔽层(对干涉仪透明),对干涉仪而言是透明的。用位移测量干涉仪连续监测复合管的长度变化。然后使用经纬仪和表面图形干涉仪间歇地测量旋转,弯曲和扭曲。镀镍的殷钢反光镜和附着机构已通过CDMF的测试得到开发和验证。目前估计0.4 m的管的长度变化的测量不确定度为0.9微米。

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