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Evaluation of the contributions to the effective thermal conductivity of an open-porous-type foamed glass

机译:评估开孔型泡沫玻璃对有效导热率的贡献

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Sustainable development focused on energy and material savings is driving attempts to decrease the thermal conductivity of heat insulation materials. Foamed glass is one of the most sustainable thermal insulation materials and has unique, load-bearing properties. In this study, contributions to the effective thermal conductivity were quantified for an open-porous-type foamed glass. Foamed samples were prepared by heating a mixture of waste flat glass, the foaming additives carbon and Mn3O4, and the nucleation agent TiO2. The density of the foamed glass was 117 kg m(-3) (total porosity 95.8 vol%) with a closed porosity of only 5.8 vol%. The latter was minimized by promoting partial crystallization. The thermal conductivity was 54.3 mW m(-1) K-1 at atmospheric pressure. Fitting the pressure dependence of the thermal conductivity gave a base thermal conductivity of 26.7 +/- 0.4 mW m(-1) K-1, and a gaseous contribution of 27.7 +/- 0.5 mW m(-1) K-1 with a pore size of 0.77 +/- 0.07 mm. Thus, the base thermal conductivity, which is attributed mainly to the thermal conduction in the solid phase, is much higher than in the case of fibrous glass insulation products. (C) 2019 Elsevier Ltd. All rights reserved.
机译:着眼于节约能源和材料的可持续发展正在推动降低隔热材料导热系数的尝试。泡沫玻璃是最可持续的隔热材料之一,具有独特的承重性能。在这项研究中,量化了开孔型泡沫玻璃对有效导热率的贡献。通过加热废平板玻璃,发泡添加剂碳和Mn3O4以及成核剂TiO2的混合物来制备泡沫样品。泡沫玻璃的密度为117 kg m(-3)(总孔隙率为95.8 vol%),封闭孔隙率为5.8 vol%。通过促进部分结晶使后者最小化。在大气压下的热导率为54.3 mW m(-1)K-1。拟合热导率的压力依赖性得出基本热导率为26.7 +/- 0.4 mW m(-1)K-1,气态贡献率为27.7 +/- 0.5 mW m(-1)K-1,其中孔径为0.77 +/- 0.07毫米。因此,主要归因于固相中的热传导的基础热导率比纤维玻璃绝缘产品的情况高得多。 (C)2019 Elsevier Ltd.保留所有权利。

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