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纤维毡复合SiO_2气凝胶常压干燥法制备超低导热系数保温隔热材料 被引量:6

The thermal insulation material with ultra-low thermal conductivity made by using fiber felt to compound with SiO_2 aerogels and ambient pressure drying
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摘要 SiO2气凝胶由于其独特的纳米多孔结构及超低的导热系数引起人们广泛关注。以纤维毡为基材与SiO2气凝胶复合,经表面修饰和常压干燥制成的超低导热系数保温隔热材料,既保留了纯气凝胶独特的纳米孔结构及超低的导热系数,又大幅度提高了机械强度,扩展了其在保温隔热领域的应用。该材料常温常压下导热系数小于0.025W/(m·K),抗压强度大于2MPa,是一种新颖的优质保温隔热材料。 SiO2 aerogels because of its unique nano-porous structure and ultra-low thermal conductivity causes widespread concern. Make thermal insulation material with ultra-low thermal condtretivity by using fiber felt as the substrate to compound with SiO2 aerogels and drying at ambient pressure with surface modification. The material not only retains the unique nano-pore structure and ultra-low thermal con- ductivity of the pure aerogels, but also significantly increased the mechanical strength. It expands the applications in the field of the thermal insulation material. Under the normal temperature and pressure, the thermal conductivity is less than 0. 025 W/( m· K) and the compressive strength is more than 2 MPa. It is a novel high-quality thermal insulation material.
出处 《产业用纺织品》 北大核心 2009年第11期9-12,共4页 Technical Textiles
关键词 纤维毡 常压干燥 纳米SiO2气凝胶 超低导热系数 保温隔热材料 fiber felt, ambient pressure drying, SiO2 nano-porous aerogels, ultra-low thermal conductivity, thermalinsulation material
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参考文献5

  • 1HRUBESH L W. Aerogel applications [ J ]. Journal of Non-Crystalline Solids, 1998 ( 225 ) : 335-342. 被引量:1
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二级参考文献7

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