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Design and optimization of core/shell structures as highly efficient opacifiers for silica aerogels as high-temperature thermal insulation

机译:芯/壳结构的设计与优化,作为硅气凝胶的高效透明度为高温保温

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摘要

Opacifiers are usually doped in the silica aerogels to reduce the radiative heat transfer at high temperature. However, the doped opacifiers will enhance the heat conduction in the solid phase and increase the density of silica aerogels dramatically. For developing lightweight and efficient opacifiers, in this paper, different types of core/shell opacifiers are designed, and their extinction performance is investigated, theoretically. Then the optimal temperature-dependent particle size and doping amount of these opacifiers are obtained by maximizing the Rosseland mean extinction coefficient and minimizing the total thermal conductivity of silica aerogel composite. The results show that the hollow carbon black opacifiers might greatly reduce the densities of the opacifier-doped silica aerogels without deteriorating appreciably their insulating capability, and the carbon/SiC, carbon/TiO2 and carbon/Al2O3 core/shell opacifiers exhibit excellent extinction performance and would be strong candidates for high temperature due to their high extinction performance, low density and high-temperature stability. Finally, a core/shell opacifier-gradient-doped silica aerogel based on the optimal opacifier types and doping amount is designed, which significantly improves the insulating performance and reduces the density of silica aerogel composite. The results of this paper present important references for the process design and improvement of comprehensive performance of opacifier-doped silica aerogels.
机译:遮光剂通常掺杂在二氧化硅气凝胶中,以降低高温下的辐射热传递。然而,掺杂的遮光剂将增强固相中的热传导,从而显着增加二氧化硅气凝胶的密度。为了开发轻质和有效的遮光剂,在本文中,设计了不同类型的芯/壳遮光剂,从理论上调查了它们的消光性能。然后通过最大化rosseland意味着消光系数并最小化二氧化硅气凝胶复合材料的总导热率来获得这些遮光剂的最佳温度依赖性粒度和掺杂量。结果表明,中空炭黑透析器可能大大降低了掺杂的掺杂二氧化硅气凝胶的密度,而不会显着,它们的绝缘能力和碳/ SiC,碳/ TiO2和碳/ Al2O3核/壳Opacifers表现出优异的消光性能由于它们的高消光性能,低密度和高温稳定性,高温将是强烈的候选人。最后,设计了一种基于最佳遮光剂类型和掺杂量的芯/壳遮光剂梯度掺杂的二氧化硅气凝胶,这显着提高了绝缘性能并降低了二氧化硅气凝胶复合材料的密度。本文的结果显示了对掺杂透明器掺杂二氧化硅气凝胶的过程设计和综合性能的重要参考。

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