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Radiative heat attenuation mechanisms for nanoporous thermal insulating composites

机译:纳米多孔隔热复合材料的辐射热衰减机理

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Nanoporous thermal insulating composites of fumed silica, opacifier, and fiber have been prepared by a dry molding method. SiC is adopted as an opacifier to improve thermal insulating performance at higher temperatures where radiation heat transfer plays an important role in entire heat transfer system. Radiative heat attenuation mechanisms have been illuminated by calculating thermal radiation optical parameters including scattering, absorption, and attenuation factors. The result shows fumed silica has low attenuation factor in infrared wavelength range, only 0.00188 for infrared radiation with a wavelength of 3.14 mu m. The introduction of SiC can remarkably restrain radiative heat transfer, and the maximum attenuation factor reaches up to 5.848 for infrared radiation with a wavelength of 8.646 mu m. The effect of SiC particle size on thermal radiation optical parameters is also studied. The choice of SIC particle size should match up with serving temperature of this insulation. In addition, thermal conductivity measurement has been employed to verify the accuracy of calculation results. Thermal conductivity can significantly decrease from 0.119 to 0.041 W/(m K) at 773 K when 25 wt% SiC (0.877 mu m) is added into the composites. (C) 2016 Elsevier Ltd. All rights reserved.
机译:热解法二氧化硅,遮光剂和纤维的纳米多孔隔热复合材料已通过干法成型法制备。 SiC被用作遮光剂,以提高高温下的隔热性能,其中辐射传热在整个传热系统中起着重要作用。通过计算包括散射,吸收和衰减因子在内的热辐射光学参数,阐明了辐射热衰减机制。结果表明,气相二氧化硅在红外波长范围内具有较低的衰减系数,对于波长为3.14μm的红外辐射而言,仅为0.00188。 SiC的引入可以显着抑制辐射热传递,对于波长为8.646μm的红外辐射,最大衰减系数高达5.848。还研究了SiC粒径对热辐射光学参数的影响。 SIC粒度的选择应与此绝缘材料的使用温度相匹配。另外,已经采用热导率测量来验证计算结果的准确性。当向复合材料中添加25 wt%的SiC(0.877μm)时,在773 K时,热导率可以从0.119 W /(m K)显着降低。 (C)2016 Elsevier Ltd.保留所有权利。

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