气凝胶
材料科学
复合材料
收缩率
耐久性
抗压强度
复合数
抗弯强度
热导率
脆性
胶凝的
水泥
作者
Pinghua Zhu,Shuqi Yu,Cheng Cheng,Shanyu Zhao,Haixun Xu
出处
期刊:Advances in Cement Research
[Thomas Telford Ltd.]
日期:2020-12-01
卷期号:32 (12): 527-536
被引量:14
标识
DOI:10.1680/jadcr.18.00145
摘要
Owing to its exceptional physical properties, silica aerogel is regarded as an attractive candidate material for building insulation applications; however, the widespread adoption of silica aerogel is limited by its inherently brittle nature and related sub-micrometre dust release. In this paper, the poor mechanical properties of silica aerogel were improved by combining the silica phase and cementitious materials to reach engineering strong composites and maintain relatively low thermal conductivity. The mechanical properties, durability (freeze–thaw resistance, water resistance and drying shrinkage) and thermal conductivity of the silica aerogel–cement composites were comprehensively studied. The composites show improved mechanical properties as compared to pure silica aerogel, but this decreases with the increase of silica aerogel content. With respect to the durability, surprisingly, the silica aerogel can efficiently improve the frost and water resistance of the composite, which might be benefited by the strong hydrophobicity of the silica aerogel. The optimal performance of the composite is observed at 60 vol.% aerogel loading. The thermal conductivity, compressive strength, flexural strength and bonding force are 0·065 W/(m/K), 3·81 MPa, 2·23 MPa and 0·27 MPa, respectively, and the drying shrinkage of the composite is only 0·12% after 90 d.
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