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(SiC-Si3N4)(w)/SiBCN composite ceramics with tunable electromagnetic properties

机译:(SiC-Si3N4)(W)/ SIBCN复合陶瓷,具有可调谐电磁特性

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摘要

In this study, composite ceramics with tunable electromagnetic properties were developed based on SiC-Si3N4 hybrids. First, SiC-Si3N4 whisker preforms with various SiC whisker (SiCw) concentrations were prepared by the nitridation of Si in SiCw-Si powder compacts. The in-situ-grown Si3N4 whiskers (Si3N4w) were dispersed uniformly in the voids inside the interconnected network formed by SiCw. The whisker reinforcements effectively toughened the SiBCN matrix through interface debonding, crack deflection and whisker pullout mechanisms. The electromagnetic properties of the composite ceramics can be tuned by adjusting the composition of (SiC-Si3N4)(w) preforms. The composite ceramic with 31.9 vol% SiCw exhibited the broadest effective absorption bandwidth (EAB) of 2.9 GHz in X band. Furthermore, a multilayer radar absorbing structure (RAS) composed of ceramic composites with gradient electromagnetic parameters was constructed to further improve the absorption properties. By adjusting the structure of the RAS, the resulting EAB of the RAS covered the entire X band. (C) 2019 Elsevier B.V. All rights reserved.
机译:在该研究中,基于SiC-Si3N4杂交种开发了具有可调谐电磁特性的复合陶瓷。首先,通过SiCW-Si粉末压块中的Si氮化制备具有各种SiC晶须(SiCW)浓度的SiC-Si3N4晶须预制件。原位生长的Si3N4晶须(Si3N4W)均匀地分散在由SiCW形成的互连网络内的空隙中。晶须增强器通过接口剥离,裂缝偏转和晶须拉出机制有效地增强了SIBCN矩阵。通过调节(SiC-Si3N4)(W)预成型件的组合物可以调节复合陶瓷的电磁特性。 31.9 Vol%SICW的复合陶瓷在X波段中展示了2.9 GHz的最广泛有效吸收带宽(EAB)。此外,构建由具有梯度电磁参数的陶瓷复合材料组成的多层雷达吸收结构(RA)以进一步改善吸收性能。通过调整RA的结构,RAS的产生EAB覆盖了整个X频带。 (c)2019 Elsevier B.v.保留所有权利。

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