Hong Jun, Xu Ping
Interdisciplinary Graduate School of Science and Technology, Shinshu University, Ueda 386-8567, Japan.
Materials (Basel). 2021 Apr 11;14(8):1907. doi: 10.3390/ma14081907.
Carbon fiber-reinforced polymer (CFRP) composites have excellent mechanical properties and electromagnetic interference (EMI) shielding performance. Recently, their EMI shielding performance has also attracted great attention in many industrial fields to resolve electromagnetic pollution. The present paper mainly investigated the EMI shielding anisotropy of CFRP materials using a specified set-up of free-space measurement. The electrical conductivity of unidirectional CFRP composites was identified to vary with the fiber orientation angles, and the formula was proposed to predict the results consistent with the experimental. The obvious EMI shielding anisotropy of unidirectional CFRP composites was clarified by free-space measurement. The theoretical formula can predict the EMI shielding value at different carbon fiber orientation angles, and the predicted results were highly consistent with the experimental results. A comparison of the free-space measurement and the coaxial transmission line method was also conducted, which indicated that special attention should be paid to the influence of the anisotropy of CFRP composites on the shielding results. With those results, the mechanism of EMI shielding anisotropy of CFRP composites is clarified, which will provide an effective design of EMI shielding products with a designable shielding direction and frequency.
碳纤维增强聚合物(CFRP)复合材料具有优异的机械性能和电磁干扰(EMI)屏蔽性能。近年来,其EMI屏蔽性能在许多工业领域也备受关注,以解决电磁污染问题。本文主要采用特定的自由空间测量装置研究了CFRP材料的EMI屏蔽各向异性。确定了单向CFRP复合材料的电导率随纤维取向角而变化,并提出了预测与实验结果一致的公式。通过自由空间测量明确了单向CFRP复合材料明显的EMI屏蔽各向异性。该理论公式可以预测不同碳纤维取向角下的EMI屏蔽值,预测结果与实验结果高度一致。还对自由空间测量和同轴传输线方法进行了比较,结果表明应特别注意CFRP复合材料各向异性对屏蔽结果的影响。基于这些结果,阐明了CFRP复合材料EMI屏蔽各向异性的机理,这将为具有可设计屏蔽方向和频率的EMI屏蔽产品提供有效的设计方法。