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Improvement of performance of foam perlite thermal insulation material by the design of a triple-hierarchical porous structure

机译:通过三层多孔结构设计提高泡沫珍珠岩隔热材料的性能

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Inorganic thermal insulation materials are incombustible, cheap, and perdurable, and can thus effectively avoid such shortcomings of organic materials. Nevertheless, the physical properties, such as thermal conductivity and apparent density, are usually not as good as the organic thermal insulation materials. In present work, we designed and synthesized a new kind of inorganic thermal insulation material with admirable and intriguing triple-hierarchical porous structures by combining the ambient temperature foam method and simple heat treatment. The final products contained triple-hierarchical pores in the range of hundreds of microns, several microns to tens of microns, and submicrons to several microns. Compared to products without heat treatment, the apparent density of this kind of inorganic thermal insulation material was 0.148 g.cm(-3), which decreased by 15%, and the compressive strength was 0.30 MPa; the thermal conductivity reached 0.047 W.m(-1).K-1 which reduced by 10%, and the softening coefficient (the ratio of the samples' strength under saturation with that in dry condition) was improved from 0 to similar to 80%. Therefore, this work not only provided a new type of thermal insulation material with hierarchical pores, but also has great significance for the design of inorganic thermal insulation materials with high performance. (C) 2019 Published by Elsevier B.V.
机译:无机绝热材料是不可燃的,廉价的且耐久的,因此可以有效地避免有机材料的这种缺点。然而,物理性质,例如热导率和表观密度,通常不如有机绝热材料好。在目前的工作中,我们结合室温泡沫法和简单的热处理方法,设计合成了一种具有令人赞叹的三层多孔结构的新型无机保温材料。最终产品包含三层孔隙,其范围为数百微米,数微米至数十微米以及亚微米至数微米。与未经热处理的产品相比,这种无机绝热材料的表观密度为0.148 g.cm(-3),下降了15%,抗压强度为0.30 MPa。导热系数达到0.047 W.m(-1).K-1,降低了10%,软化系数(样品在饱和条件下与干燥条件下的强度比)从0提高到了80%。因此,这项工作不仅提供了一种新型的具有分层孔隙的保温材料,而且对设计高性能的无机保温材料具有重要意义。 (C)2019由Elsevier B.V.发布

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