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Hygrothermal characteristics of aerogel-enhanced insulating materials under different humidity and temperature conditions

机译:不同湿度和温度条件下气凝胶增强绝缘材料的湿热特性

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Since aerogel-enhanced materials provide significantly higher thermal resistance than conventional materials, they have received increasing attention over the past few years. In this study, a variety of aerogel-enhanced materials including aerogel-enhanced plasters, blankets, and boards, with different percentages of aerogel were prepared and investigated. The consistency of the thermal properties under a wide range of temperatures and humidity conditions was studied. In particular, the temperature and moisture-driven changes of the thermal conductivity of the samples were quantified. In addition, to characterize the permeability and hydrophobicity behaviour of the samples, water sorption curves, moisture storage capacity, and the vapour permeability were studied. The test conditions swung temperature ranges from 20 degrees C to +60 degrees C and moisture content ranges from 0% to 95% in Relative Humidity (RH). The results show that the aerogel-enhanced insulating materials have remarkably low thermal conductivity under different hygric conditions. This study shows that compared to the standard testing condition, the maximum increase in the thermal conductivity was 100% under 95% RH, while the greatest temperature driven increase in the thermal conductivity was 12% at the maximum tested temperature. Both these effects were recorded in the aerogel gypsum board samples. The humidity-driven changes in the thermal conductivity of aerogel-based products are significantly greater than temperature-driven changes. The thermal resistance of the investigated materials decreased under extreme humidity condition, therefore, drying mechanism or providing a protection layer must be considered to prevent moisture accumulation and performance attenuation. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于气凝胶增强的材料比传统材料具有更高的耐热性,因此在过去几年中,它们受到越来越多的关注。在这项研究中,准备并研究了各种气凝胶增强材料,包括气凝胶增强的灰泥,毯子和木板,以及不同百分比的气凝胶。研究了在各种温度和湿度条件下热性能的一致性。特别地,对样品的热导率的温度和湿度驱动的变化进行定量。此外,为表征样品的渗透性和疏水性,还研究了其吸水曲线,储水量和水蒸气渗透性。测试条件的摆动温度范围为20摄氏度至+60摄氏度,相对湿度(RH)的水分含量为0%至95%。结果表明,气凝胶增强的绝热材料在不同的潮湿条件下具有极低的热导率。这项研究表明,与标准测试条件相比,在95%RH下,热导率的最大增加为100%,而在最高测试温度下,最大的温度驱动下热导率的最大增加为12%。这两种作用均记录在气凝胶石膏板样品中。湿度驱动的气凝胶基产品导热系数的变化远大于温度驱动的变化。被研究材料的热阻在极端湿度条件下会降低,因此,必须考虑干燥机理或提供保护层以防止水分积聚和性能下降。 (C)2017 Elsevier B.V.保留所有权利。

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