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A simple inverse analysis method for eddy current-based measurement of through-thickness conductivity of carbon fiber composites

机译:基于碳纤维复合材料的副厚度电导率的基于涡流测量的简单逆分析方法

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摘要

A simple inverse analysis method is proposed to measure the through-thickness conductivity of carbon fiber reinforced plastic (CFRP) laminates using eddy current testing. Finite element analyses were performed to investigate the relationship between the eddy current sensor signal and the anisotropic conductivity of a cross-ply CFRP. It was found that the resistive component of the impedance of the eddy current sensor changed with the through-thickness conductivity of CFRP, while the conductivity in the transverse direction had almost no influence on the sensor impedance. Using this characteristic and the conductivity in the fiber direction determined by fiber volume fraction, the through-thickness conductivity of a CFRP laminate was estimated from the resistive component of the impedance of the eddy current sensor. Experimental studies showed that the through-thickness conductivity estimated by the proposed eddy current testing method was in good agreement with that measured by the four-probe method. The proposed eddy current method enables fast and non-contact measurement of the through-thickness conductivity of CFRP laminates.
机译:提出了一种简单的逆分析方法来测量使用涡流测试的碳纤维增强塑料(CFRP)层压板的贯穿厚度电导率。进行有限元分析以研究涡流传感器信号与交叉层CFRP的各向异性电导率之间的关系。发现涡流传感器的阻抗的电阻分量随CFRP的贯穿厚度导电性而改变,而横向的电导率几乎没有对传感器阻抗影响。利用纤维体积分数确定的光纤方向上的这种特性和电导率,CFRP层压板的贯穿厚度导电率从涡流传感器的阻抗的阻抗的电阻分量估计。实验研究表明,由所提出的涡流试验方法估计的贯穿厚度电导率与四个探针方法测量的良好一致。所提出的涡流方法可以快速和非接触的CFRP层压板的贯穿厚度导电性的测量。

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