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Microstructures and EMI shielding properties of composite ceramics reinforced with carbon nanowires and nanowires-nanotubes hybrid

机译:用碳纳米线和纳米线加固复合陶瓷和纳米线 - 纳米管杂种的组织和EMI屏蔽性能

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摘要

Carbon/ceramic composites are promising candidates as electromagnetic interference (EMI) shielding materials used at various harsh environments. The aim of present work is to prepare and investigate two kinds of composite ceramics reinforced with carbon nanowires (CNWs) and nanowires-nanotubes (CNWs-CNTs) hybrid, respectively. Results indicate that CNWs is highly curved and multi-defected, and CNWs-CNTs hybrid shows the best crystal structure at an optimal catalyst concentration of 5 wt%. When CNWs accounts for 5.15 wt%, the total shielding effectiveness (SE) of CNWs/Si3N4 reaches 25.0 dB with absorbed SE of 21.3 dB, meaning that 99.7% incident signal can be blocked, while it reaches 25.4 dB for CNWs-CNTs/Si3N4 as the carbon loading only increasing to 3.91 wt%. By contrast, CNWs/Si3N4 exhibits better electromagnetic attenuation capability with stronger absorption, mainly due to the unique microstructure of CNWs. Both of two composite ceramics have great potential to be designed as structural and multi-functional materials.
机译:碳/陶瓷复合材料是在各种恶劣环境中使用的电磁干扰(EMI)屏蔽材料的候选物。目前工作的目的是准备和研究分别用碳纳米线(CNW)和纳米线 - 纳米管(CNWS-CNT)杂种增强的两种复合陶瓷。结果表明,CNWS是高弯曲和多偏转的,并且CNWS-CNTS杂种以5wt%的最佳催化剂浓度显示最佳的晶体结构。当CNWS占5.15wt%时,CNWS / Si3N4的总屏蔽效果(SE)达到25.0dB的21.3 dB,这意味着可以阻止99.7%的入射信号,而CNWS-CNTS / SI3N4达到25.4dB由于碳荷载仅增加到3.91wt%。相比之下,CNWS / SI3N4具有更好的电磁衰减能力,吸收较强,主要是由于CNW的独特组织。两种复合陶瓷两者都具有很大的潜力,可以设计为结构和多功能材料。

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