设计并实现用于大规模和高性能红外焦平面的新型杜瓦结构

Guangquan Zhai, Bocong An, Yue Wang, Xueliang Hu, Jingyuan Li, Dawei Yang
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引用次数: 0

摘要

随着空间红外焦平面探测器向着大规模、多光谱、高集成度方向发展,热泄漏、微振动、结构热适应等问题日益突出,成为制约大型红外焦平面探测器应用的瓶颈。通过采用新型弦结构杜瓦,解决了红外焦平面元件的支撑问题。通过对力热耦合设计的分析和验证,新型杜瓦结构有效减少了热泄漏,降低了微振动的影响,避免了热适应引起的探测器应力,为高性能大型红外焦平面的应用提供了解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and implementation of a new Dewar structure for large-scale and high performance infrared focal plane
With the development of space infrared focal plane detectors towards large-scale, multi spectral, and high integration directions, issues such as heat leakage, micro vibration, and structural thermal adaptation have become increasingly prominent, becoming bottlenecks that restrict the application of large-sized infrared focal plane detectors. By using a new Dewar with a string structure, the support problem of infrared focal plane components has been solved. Through the analysis and verification of force thermal coupling design, the new Dewar structure has effectively reduced heat leakage, Reduced the impact of micro vibrations and avoided detector stress caused by thermal adaptation, providing a solution for the application of high-performance large-sized infrared focal planes.
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