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Effects of upgrading temperature on electromagnetic shielding properties of three-dimensional graphene/SiBCN/SiC ceramic composites

机译:升级温度对三维石墨烯/ SIFCN / SIC陶瓷复合材料电磁屏蔽性能的影响

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摘要

SiC coating is introduced using MTS-H-2-Ar system via chemical vapor deposition technology. SER and SET of the composites increased from 7.5 dB to 18.9 dB-9.1 dB and 20.8 dB, respectively, due to the deposition of SiC coating. The influence of oxidation temperature on microstructure and electromagnetic interference shielding performance has been systematically investigated. The morphology of GF/SiBCN/SiC composite remained unchanged after oxidation at 900 degrees C. However, condensed particles which distributed around cauliflower-like structure disappeared and were replaced by some small particles with increasing temperature. The GF/SiBCN/SiC ceramic composites exhibited mass loss after oxidation at 900 degrees C initially and saw a slight mass gain afterwards. Graphene layers kept their integral structure and SET retention rate of 97% and 93% have been recorded after oxidation at 900 degrees C and 1100 degrees C for 10 h, respectively.
机译:使用MTS-H-2-AR系统通过化学气相沉积技术引入SiC涂层。 由于SiC涂层的沉积,Ser和一组复合材料分别从7.5 dB增加到18.9dB-9.1dB和20.8dB。 系统研究了氧化温度对微观结构和电磁干扰屏蔽性能的影响。 在900℃的氧化后,GF / SIBCN / SiC复合材料的形态保持不变。然而,分布在花椰菜样结构周围的冷凝颗粒消失,并被一些小颗粒替换,随着温度的增加而取代。 GF / SIBCN / SiC陶瓷复合材料最初在900摄氏度下氧化后表现出质量损失,然后锯出略微质量增益。 石墨烯层保持其整体结构,并分别在900℃和1100℃下氧化10小时后记录97%和93%的设定保持率。

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