Multiscale hybrid CNT and CF reinforced PEEK composites with enhanced EMI properties

IF 4.2 3区 材料科学 Q2 MATERIALS SCIENCE, COMPOSITES
Shouyi Cao, Y. Tao, H. Li, M. Ren, Jinliang Sun
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引用次数: 7

Abstract

Abstract Due to ever increasing use of telecommunication and electronic devices in offshore and stealth technology sectors, developing highly-efficient electromagnetic interference (EMI) shielding materials with good thermal resistance are urgently required. In this paper, the effect of MWCNTs incorporation on the mechanical, interlaminar bonding and EMI performance of MWCNT/CF/PEEK composites were firstly studied. The introduction of interlaminar MWCNTs did not affect the tensile strength and modulus significantly at low loadings whilst slight decrease in them was seen beyond a MWCNT content of 2.5 g/m2 due to the presence of CNT clusters. Improvement in the flexural strength and modulus as well as interlaminar bonding were achieved, reaching the peak values at an interlaminar MWCNT content of 1.5 g/m2. This is because the existence of inter-ply CNTs improves the stiffness and strength of the interlaminar region in shear when the material is subjected to bending moment. EMI shielding effectiveness of the laminates was markedly enhanced by 76% at an interlaminar CNT content as low as 2.5 g/m2 (equivalent to 0.53 wt.%). For the first time, this work has demonstrated the effectiveness and high efficiency of utilizing a multilayer structural design with the CNTs spray coated at the interlaminar region to improve the EMI shielding performance of CF/PEEK composites. Graphical Abstract
具有增强电磁干扰性能的多尺度杂化碳纳米管和CF增强PEEK复合材料
摘要随着海上和隐身技术领域对通信和电子设备的使用日益增加,迫切需要开发具有良好热阻的高效电磁干扰屏蔽材料。本文首先研究了MWCNTs掺入对MWCNT/CF/PEEK复合材料力学性能、层间键合性能和电磁干扰性能的影响。在低负荷下,层间MWCNTs的引入对拉伸强度和模量没有显著影响,而当MWCNTs含量超过2.5 g/m2时,由于碳纳米管簇的存在,它们会略有下降。在抗弯强度和模量以及层间键合方面均有改善,在层间MWCNT含量为1.5 g/m2时达到峰值。这是因为夹层CNTs的存在提高了材料在受弯矩作用时剪切层间区的刚度和强度。当层间碳纳米管含量低至2.5 g/m2(相当于0.53 wt.%)时,层板的EMI屏蔽效率显著提高了76%。本研究首次证明了利用多层结构设计在层间区域喷涂碳纳米管来提高CF/PEEK复合材料的EMI屏蔽性能的有效性和高效率。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nanocomposites
Nanocomposites Multiple-
CiteScore
7.40
自引率
15.20%
发文量
18
审稿时长
16 weeks
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