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制備條件對硅酸鈣復合納米孔超級絕熱材料熱導率的影響

Effect of preparation condition on the thermal conductivity of xonotlite-silica aerogel nanoporous super insulation materials

  • 摘要: 為解決SiO2氣凝膠質脆和硬硅鈣石熱導率偏高的問題,以正硅酸乙酯為硅源采用溶膠-凝膠法制備SiO2氣凝膠先驅體,而后將其與硬硅鈣石復合經超臨界干燥制備了硅酸鈣復合納米孔超級絕熱材料.采用瞬時熱帶法測試樣品常溫下1.01×105~1×10-2Pa范圍內的熱導率,研究了制備條件對復合材料熱導率的影響.結果表明,復合材料熱導率隨硬硅鈣石體積質量的減小以及復合增重率的增加而降低,但隨氣凝膠體積質量的增大先降低后升高.

     

    Abstract: To solve the problems of the low strength of silica aerogel and the high thermal conductivity of xonotlite, silica sol was prepared with TEOS through sol-gel process, and then xonotlite-silica aerogel nanoporous super insulation materials dried by supercritical drying technique were prepared with silica sol compounded into xonotlite. A transient hot-apparatus was used to measure the thermal conductivity of samples at normal temperature in an environmental pressure range of 1.01×105~1×10-2 Pa, and the effect of preparation condition on the thermal conductivity of the composite materials was studied. It is indicated that the thermal conductivity of the composite materials decrease with decreasing unit weight of xonotlite and increasing composite mass growth rate, but they experience the changeable process from decrease to increase with increasing unit weight of silica aerogel.

     

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