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MICROGRAVITY PROCESSING OF AEROGEL MATERIAL ON THE STS-95 SPACE SHUTTLE MISSION

机译:STS-95航天飞机飞行任务中航空材料的微重力处理

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Discovered in the thirties, aerogels rank today among the lightest solids known and display outstanding thermal, optical and acoustic properties in air and vacuum due to their highly porous open-cell structure. Absence of convection driven by density gradients prior to gelation as well as reduction of sedimentation are examined as possible means to affect the nanometer scale pore structure. Inorganic and organic aerogels were processed to gelation in microgravity conditions during the STS-95 Space Shuttle mission in October, 1998. The experiment consisted of servo-actuated modules which mixed 80 different formulations of aerogels evaluating a number of experimental objectives. This paper describes the objectives, approach, and some experimental details of the flight experiment.
机译:气凝胶在三十年代被发现,如今已跻身已知最轻的固体之列,并且由于其高度多孔的开孔结构,在空气和真空中表现出出色的热,光学和声学特性。研究了在凝胶化之前由密度梯度驱动的对流的缺乏以及沉降的减少是影响纳米级孔结构的可能手段。在1998年10月执行STS-95航天飞机任务期间,将无机和有机气凝胶在微重力条件下进行了凝胶化处理。该实验由伺服驱动模块组成,该模块混合了80种不同配方的气凝胶,评估了许多实验目标。本文介绍了飞行实验的目的,方法和一些实验细节。

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