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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A direct chemical vapor infiltration route for a carbon nanotube/silicon carbide thermal protection system
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A direct chemical vapor infiltration route for a carbon nanotube/silicon carbide thermal protection system

机译:用于碳纳米管/碳化硅热保护系统的直接化学蒸汽渗透路径

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摘要

Sandwich-structured carbon nanotube/silicon carbide (CNT/SiC) sponges were fabricated by direct chemical vapor infiltration (CVI) of SiC matrix into the inner network of CNT sponges without altering the original sponge morphology. The thermal conductivity of the sandwich-structured material from 25 degrees C to 1200 degrees C was established in the range of 2.3-4.3 W/mK range. The values were much lower than the pure SiC, which indicates that the material can efficiently dissipate heat along the SiC coating. Based on the design of the sandwich structure produced by direct CVI process, large fiber preforms combined with one-dimensional nano-materials that aid the reduction of surface pore size will be an inspired idea for the design of sandwich-structured large fiber composites. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过将SiC基质的直接化学蒸汽渗透(CVI)直接化学蒸气渗透(CNT / SiC)碳化硅(CNT / SiC)海绵到CNT海绵的内部网络而不改变原始海绵形态,制造夹层结构碳纳米管/碳化硅(CNT / SIC)海绵。 在2.3-4.3W / mk范围内建立25℃至1200℃的夹层结构材料的导热率。 这些值远低于纯SiC,这表明该材料可以有效地沿着SiC涂层散发热量。 基于直接CVI工艺生产的夹层结构的设计,大的纤维预制件与一维纳米材料结合,帮助降低表面孔径,这是夹层结构大纤维复合材料设计的启发思想。 (c)2018年elestvier b.v.保留所有权利。

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