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Effects of non-ideal structures and high temperatures on the insulation properties of aerogel-based composite materials

机译:非理想结构和高温对气凝胶基复合材料绝缘性能的影响

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摘要

The multi-scale, temperature related structural characteristics of aerogel-based composite insulation materials that contain nano-scale aerogels, as well as micron-scale fibers, opacifiers and cracks were evaluated using various instruments for 300 to 1423 K. The structural tests were used to develop a three-dimensional multi-scale microstructure model to investigate the effects of non-ideal structures and high temperatures on the insulation performance of aeogel-based composite materials. The predictions agree well with experimental with literature. The model, thus provides theoretic guidelines for manufacturing with optimal parameters, such as the type, loading, and distribution of fibers and opacifiers. The structural analysis shows that the insulation performance of the composite materials degrades significantly with the deformation of the pore structure at high temperatures conditions.
机译:使用300到1423 K的各种仪器评估了包含纳米级气凝胶以及微米级纤维,遮光剂和裂纹的气凝胶基复合绝缘材料的多尺度,与温度相关的结构特征。使用了结构测试建立三维多尺度微观结构模型,以研究非理想结构和高温对气凝胶基复合材料绝缘性能的影响。这些预测与文献中的实验非常吻合。因此,该模型为制造提供了最佳参数的理论指导,例如纤维和遮光剂的类型,负载和分布。结构分析表明,在高温条件下,复合材料的保温性能会随着孔隙结构的变形而显着降低。

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