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Development of lightweight insulating building materials from perlite wastes

机译:利用珍珠岩废料开发轻质隔热建筑材料

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This paper investigates the development of geopolymer foam boards, using perlite wastes as raw material. This type of lightweight materials combines the geopolymerization technology with the foaming process. The mechanism of foaming is based on the generation of a gas that is retained by the geopolymer matrix in the form of individual or interconnected voids. In this study, the inorganic foaming agent is hydrogen peroxide (H 2 O 2 ), which is added into the initial paste in different quantities by mechanical stirring. The produced porous materials have effective densities between 408–476.5 kg/m 3 , thermal conductivities between 0.076–0.095 W/m.K and different type of microstructure, depending on the concentration of the activator and the foaming agent content. To assess the porosity and the size distribution of the voids, image processing techniques were applied on digital images of the samples. According to these results, the synthesized lightweight materials exhibit similar or even better thermal properties than the current concrete porous materials.
机译:本文研究了以珍珠岩废料为原料的地聚合物泡沫板的开发。这种轻质材料将地聚技术与发泡工艺结合在一起。发泡的机理是基于气体的产生,该气体被地质聚合物基质以单个或相互连接的空隙形式保留。在这项研究中,无机发泡剂是过氧化氢(H 2 O 2),通过机械搅拌将过氧化氢以不同的量添加到初始浆料中。所生产的多孔材料的有效密度在408-476.5 kg / m 3之间,热导率在0.076-0.095 W / m.K之间,并且取决于活化剂的浓度和发泡剂的含量,其微观结构类型也不同。为了评估孔隙的孔隙率和尺寸分布,将图像处理技术应用于样品的数字图像。根据这些结果,合成的轻质材料表现出与当前混凝土多孔材料相似或什至更好的热性能。

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