材料科学
气凝胶
碳化硅
热导率
复合材料
煅烧
抗压强度
介孔材料
微观结构
硅
热冲击
碳热反应
复合数
碳化物
冶金
催化作用
生物化学
化学
作者
Zhimin An,Rubing Zhang,Daining Fang
标识
DOI:10.1016/j.ceramint.2019.02.216
摘要
The monolithic silicon carbide (SiC) aerogels were converted from catechol-formaldehyde/silicon composite (CF/SiO2) aerogels through carbothermal reduction and calcination. In the process of preparing the CF/SiO2 aerogel, a new method was proposed to produce more silicon carbide and enhanced the mechanical properties of the SiC aerogel. This method was realized by adding an alkaline silica sol as supplemental silicon source. The principle process of CF/SiO2 aerogels converting to SiC aerogels was discussed based on experiment and results analysis, while the microstructure, mechanical properties, and thermal properties of the prepared SiC aerogels were investigated. The results show that the as-synthesized SiC aerogels consist of β-SiC and a small amount of α-SiC nanocrystalline. It possessed a mesoporous structure and a low thermal conductivity 0.049 W/(m∙K), a relatively high compressive strength 1.32 MPa, and a relatively high specific surface area 162 m2/g. Due to their outstanding thermal and mechanical properties, the prepared SiC aerogels present potential applications in thermal insulation field, such as space shuttles and aerospace carrier thermal protection materials.
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