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Experimental characterisation and evaluation of the thermo-physical properties of expanded perlite - fumed silica composite for effective vacuum insulation panel (VIP) core

机译:用于有效真空绝热板(VIP)芯的膨胀珍珠岩-气相法二氧化硅复合材料的热物理性质的实验表征和评估

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摘要

The thermo-physical properties of expanded perlite-fumed silica composites were experimentally investigated as an alternative lower cost material for vacuum insulation panel (VIP) core using expanded perlite as a cheaper substitute of fumed silica. Pore size analysis was carried out using nitrogen sorption technique, Mercury Intrusion Porosimetry and Transmission Electron Microscopy and average pore size was estimated to be in the range of 50 - 150 nm. VIP core board samples measuring 100 mm×100 mm and consisting of varying proportions of expanded perlite, fumed silica, silicon carbide and polyester fibre in the composite were prepared. The centre of panel thermal conductivity of the core board containing expanded perlite mass proportion of 60% was measured as 53 mWm-1K-1 at atmospheric pressure and 28 mWm-1K-1 when expanded perlite content was reduced to 30%. The centre of panel thermal conductivity with 30% expanded perlite content was measured as 7.6 mWm-1K-1 at 0.5 mbar pressure. Radiative conductivity of the composite with expanded perlite mass of 30% was measured to be 0.3 - 1 mWm-1K-1 at 300 K and gaseous thermal conductivity 0.016 mWm-1K-1 at 1 mbar, a reduction of 8.3 mWm-1K-1 from the value of gaseous thermal conductivity at 1 atm pressure. Opacifying properties of expanded perlite were quantified and are reported. A VIP core cost reduction potential of 20% was calculated through the use of expanded perlite in VIP core.
机译:实验研究了膨胀珍珠岩-气相法二氧化硅复合材料的热物理性质,它是膨胀珍珠岩作为气相二氧化硅的较便宜替代品,是真空隔热板(VIP)芯材的替代低成本材料。使用氮气吸附技术,水银压入孔率法和透射电子显微镜进行孔径分析,估计平均孔径在50-150 nm范围内。制备尺寸为100 mm×100 mm的VIP芯板样品,该样品由复合材料中不同比例的膨胀珍珠岩,气相二氧化硅,碳化硅和聚酯纤维组成。含有60%的膨胀珍珠岩质量比例的芯板的面板热导率中心在大气压下被测量为53mWm-1K-1,而当膨胀珍珠岩含量减少到30%时,其中心导热率为28mWm-1K-1。在0.5 mbar压力下测得的珍珠岩含量增加30%的面板导热中心为7.6 mWm-1K-1。膨胀珍珠岩质量为30%的复合材料的辐射电导率在300 K下测得为0.3-1 mWm-1K-1,在1 mbar下的气态热导率为0.016 mWm-1K-1,降低了8.3 mWm-1K-1从1 atm压力下的气态热导率值得出。定量并报道了膨胀珍珠岩的遮光性。通过在VIP核心中使用膨胀珍珠岩,可以算出VIP核心成本降低20%的潜力。

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