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Synthesis of silica cryogel-glass fiber blanket by vacuum drying

机译:真空干燥法合成二氧化硅冰凝胶玻璃纤维毯

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Silica cryogel-glass fiber composites with a high specific surface area and high mesoporosity were fabricated via a simple still original drying technique. By applying vacuum at ambient temperature, the system evolution has been monitored and represented in the water phase diagram. The ratio of solvent/silica loading significantly affected the porous structure and thermal insulating properties of the blanket. From the results of BET surface area, apparent density and porosity studies, the microstructures and specific surface areas of the composites were greatly affected by changing the silica amount in the sol. The microstructure of silica cryogel blanket exhibits a porous structure consisting of glass fibers of diameter similar to 7 mu m interconnected with solid silica clusters (5-20 mu m). Silica cryogel-glass fiber blankets with low densities from 0.13-0.24 g/cm(3) and thermal conductivity as low as 0.02-0.035 W/mK were obtained using this cost effective, hazardous free and time saving method. The pH of the silica sol influenced the gelling property and the thermal conductivity of the composites. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过简单的原始干燥技术制备了具有高比表面积和高介孔率的二氧化硅冰凝胶-玻璃纤维复合材料。通过在环境温度下施加真空,可以监视系统的演变并在水相图中显示。溶剂/二氧化硅的负载比显着影响橡皮布的多孔结构和绝热性能。根据BET表面积,表观密度和孔隙率研究的结果,改变溶胶中的二氧化硅含量会极大地影响复合材料的微观结构和比表面积。二氧化硅冷冻凝胶毯的微观结构显示出一种多孔结构,该结构由直径类似于7μm的玻璃纤维与固体二氧化硅簇(5-20​​μm)互连而成。使用这种经济高效,无危险且省时的方法,可获得密度低至0.13-0.24 g / cm(3)且导热率低至0.02-0.035 W / mK的硅胶低温凝胶玻璃纤维毯。硅溶胶的pH值影响复合材料的胶凝性能和热导率。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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