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Synthesis of multifunctional foam-like isotropic high volume fraction SiC nanowires preform via a simple method

机译:通过简单方法合成多功能泡沫样各向同性高体积分数SiC纳米线预制件

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摘要

Lightweight, pure, foam-like and macro-structured ceramic nanowires preform with a certain structural strength and good electromagnetic functional performance can be used as the skeleton of new isotropic ceramic matrix composites (CMCs) to improve its comprehensive performance. With this aim, silicon carbide (SiC) nano materials are promising candidates. However, little is studied at present regarding pure SiC nanowires as the preform for structural and functional CMCs. In this study, an isotropic SiC nanowire preform with a cross-linked structure among the nanowires was designed and prepared via an in-situ synthesis method, based on the carbon template. As prepared SiC nanowires with high purity can spontaneously and uniformly distribute in three dimensions. Furthermore, the crystallinity, and volume fraction of the nanowires preform can be flexibly adjusted. SiC nanowires preform has a low-density (0.1 g cm(-3)) and rigid structure, which can be attributed to high volume fraction (26.05%) of nanowires and the crossing and connection among nanowires. Importantly, owing to its unique structure, the maximum stress of the SiC nanowires preform reaches 34 KPa. The prepared SiC nanowire preform achieved full absorption in the X-band, and the specific microwave absorption performance exceeded 45.18 dB cm(-2) g(-1). The preform exhibits also excellent thermal stability and thermal insulation performance. These make it a particularly promising preform of CMCs combining structure and functional performance.
机译:轻质、纯净、泡沫状、宏观结构的陶瓷纳米线预制件具有一定的结构强度和良好的电磁功能性能,可以作为新型各向同性陶瓷基复合材料(CMC)的骨架,提高其综合性能。基于这一目标,碳化硅(SiC)纳米材料是很有前途的候选材料。然而,目前关于纯SiC纳米线作为结构和功能CMC预制件的研究很少。在本研究中,基于碳模板,通过原位合成方法设计并制备了一种在纳米线之间具有交联结构的各向同性SiC纳米线预制件。所制备的高纯度SiC纳米线可以自发地、均匀地分布在三维空间。此外,纳米线预制件的结晶度和体积分数可以灵活调整。SiC纳米线预制件具有低密度(0.1gcm(-3))和刚性结构,这可以归因于纳米线的高体积分数(26.05%)以及纳米线之间的交叉和连接。重要的是,由于其独特的结构,SiC纳米线预制件的最大应力达到34 KPa。制备的SiC纳米线预成型体在X波段实现了全吸收,比微波吸收性能超过45.18db-cm(-2)g(-1)。预制件还具有优异的热稳定性和隔热性能。这使得它成为一种结合了结构和功能性能的CMC预制件。

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