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HEAT TRANSFER CONSIDERATIONS FOR DESIGNING FSW CRYOGENIC THERMAL STRUCTURES FOR AEROSPACE APPLICATIONS

机译:用于设计航空航天应用FSW低温热结构的传热考虑

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摘要

Research was conducted to investigate potential structural design configurations for aerospace cryogenic tank wall applications. The primary design considerations included the vibration damping characteristics under various flight loading conditions and the panel wall thermal resistance under different heat loads. The discussion herein is with regards to the thermal issue, specifically the heat transfer rates across two different panel wall designs that have attractive vibration damping characteristics. The heat transfer rates were evaluated analytically and verified with experimental data. One panel is a corrugated, serpentine-layered design fabricated using friction stir welding. The other panel is an "egg-carton" design fabricated using friction stir spot welding. An important thermal consideration for the cryogenic tank wall design is the minimum outer wall temperature attained during ambient storage or prior to launch. Of the two designs considered herein, neither wall provided sufficient thermal resistance to maintain outer wall temperatures above freezing under ambient conditions. One of the wall designs, however, performed somewhat better. It is shown that when configured with an outer layer of thermal plastic coating both designs could maintain an outer wall temperature within design constraints.
机译:进行了研究,以研究航空航天低温罐壁应用的潜在结构设计配置。主要设计考虑因素包括在各种飞行负载条件下的振动阻尼特性和不同热负荷下的面板壁热阻。这里的讨论关于热问题,特别是跨两个不同面板壁设计的传热速率,其具有吸引振动阻尼特性。分析评估传热速率并用实验数据进行验证。一个面板是使用摩擦搅拌焊接制造的波纹状的蛇形分层设计。另一面板是使用摩擦搅拌点焊制造的“蛋纸盒”设计。低温罐壁设计的重要热考虑因素是环境储存期间或在发射之前获得的最小外壁温度。在本文认为的两个设计中,壁都没有提供足够的热阻,以保持在环境条件下冻结的外壁温度。然而,其中一个墙体设计表现略微表现出更好。结果表明,当配置有外层的热塑性涂层外层,两个设计都可以在设计限制内保持外壁温度。

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