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Thermal conductivity of aerogel blanket insulation under cryogenic-vacuum conditions in different gas environments

机译:在不同气体环境中低温真空条件下的气凝胶橡皮布绝缘的导热系数

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Thermal conductivity of low-density materials in thermal insulation systems varies dramatically with the environment: cold vacuum pressure, residual gas composition, and boundary temperatures. Using a reference material of aerogel composite blanket (reinforcement fibers surrounded by silica aerogel), an experimental basis for the physical heat transmission model of aerogel composites and other low-density, porous materials is suggested. Cryogenic-vacuum testing between the boundary temperatures of 78 K and 293 K is performed using a one meter cylindrical, absolute heat flow calorimeter with an aerogel blanket specimen exposed to different gas environments of nitrogen, helium, argon, or CO2. Cold vacuum pressures include the fall range from 1x10~(-5) torr to 760 torr. The soft vacuum region, from about 0.1 torr to 10 torr, is complex and difficult to model because all modes of heat transfer - solid conduction, radiation, gas conduction, and convection - are significant contributors to the total heat flow. Therefore, the soft vacuum tests are emphasized for both heat transfer analysis and practical thermal data. Results for the aerogel composite blanket are analyzed and compared to data for its component materials. With the new thermal conductivity data, future applications of aerogel-based insulation systems are also surveyed. These include Mars exploration and surface systems in the 5 torr CO2 environment, field joints for vacuum-jacketed cryogenic piping systems, common bulkhead panels for cryogenic tanks on space launch vehicles, and liquid hydrogen cryofael systems with helium purged conduits or enclosures.
机译:保温系统中低密度材料的导热率随着环境的显着变化:冷真空压力,残留气体组成和边界温度。采用气凝胶复合毯(由二氧化硅气凝胶包围的钢筋)的参考材料,提出了气凝胶复合材料和其他低密度,多孔材料的物理传热模型的实验基础。使用一米圆柱形,绝对热流量热量计与氮气,氦气,氩气或二氧化碳的不同气体环境暴露于不同气体环境的气凝钉覆盖标本,对78 k和293k之间的低温真空测试。冷真空压力包括从1×10〜(-5)托的秋季范围到760托。软真空区域,约0.1托至10托,复杂且难以模型,因为所有传热模式 - 固体传导,辐射,气体传导和对流 - 是总热流的重要贡献者。因此,强调了柔软的真空测试,用于传热分析和实用的热数据。分析了气凝胶复合毯的结果,并与其成分材料的数据进行比较。利用新的导热性数据,还调查了气凝胶基绝缘系统的未来应用。其中包括火星勘探和表面系统在5托盘二氧化碳环境中,用于真空夹紧的低温管道系统的现场接头,空间发射车辆上的低温罐的公共舱壁板,以及带氦气吹扫导管或外壳的液体氢气冷冻系统。

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