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Cryogenic Thermal Distortion Model Validation for the JWST ISIM Structure

机译:JWST ISIM结构的低温热变形模型验证

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The James Webb Space Telescope (JWST) Integrated Science Instrument Module (ISIM) Structure is a precision optical metering structure for the JWST science instruments. Optomechanical performance requirements place stringent limits on the allowable thermal distortion of the metering structure. A significant effort was completed to develop capabilities to predict and metrologize cryogenic thermal distortion of the ISIM Structure. This paper focuses on thermal distortion finite element modeling, analysis, and model validation. Extensive thermal distortion analysis was completed during the design phase for the ISIM Structure to demonstrate that thermal distortion requirements were achieved. Comparison of measurements from recently completed cryogenic testing and model predictions demonstrate the adequacy of thermal distortion modeling uncertainty factors adopted during the design phase, and provide bounds on the accuracy of the model predictions. This paper will provide an overview of the test configurations, describe the thermal distortion models of the tests, and provide a comparison of test results and analytical predictions from the models.
机译:詹姆斯·韦伯太空望远镜(JWST)综合科学仪器模块(ISIM)结构是用于JWST科学仪器的精密光学计量结构。光机性能要求对计量结构的允许热变形有严格的限制。为了开发预测和度量ISIM结构的低温热变形的能力,已完成了巨大的努力。本文着重于热变形有限元建模,分析和模型验证。在ISIM结构的设计阶段完成了广泛的热变形分析,以证明达到了热变形要求。来自最近完成的低温测试和模型预测的测量结果的比较表明,在设计阶段采用了热变形建模不确定性因素是足够的,并为模型预测的准确性提供了界限。本文将概述测试配置,描述测试的热变形模型,并提供测试结果与模型的分析预测的比较。

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