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Enhancement of sensitivity to delamination in eddy current testing of carbon fiber composites by varying probe geometry

机译:通过改变探针的几何形状来增强碳纤维复合材料涡流测试中分层的敏感性

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摘要

An eddy current testing method is proposed to improve the sensitivity to delamination in carbon fiber reinforced plastics (CFRPs). The distributions of the eddy current density and magnetic field are investigated using finite element method analyses to identify the effect of delamination on the electromagnetic field. The change of the magnetic field induced by delamination is calculated and it is found that a distinct improvement of the sensitivity to delamination can be achieved by optimizing the distance between the tangential driver and pickup coils. Experiments performed for cross-ply CFRP samples verify that the sensitivity of the eddy current sensor can be improved such that the signal change caused by delamination is not masked by the signal changes caused by the electrical conductivity variation in CFRP. Embedded delamination with a length and width of 10 mm are clearly visualized using the proposed eddy current method.
机译:提出了一种涡流测试方法,以提高碳纤维增强塑料(CFRPs)对分层的敏感性。使用有限元方法分析调查涡流密度和磁场的分布,以确定分层对电磁场的影响。计算了由分层引起的磁场变化,发现可以通过优化切向驱动器和拾取线圈之间的距离来实现对分层敏感性的明显改善。对交叉CFRP样品进行的实验证明,涡流传感器的灵敏度可以提高,从而使分层引起的信号变化不会被CFRP中电导率变化引起的信号变化所掩盖。使用建议的涡流方法,可以清晰地看到长度和宽度为10 mm的嵌入式分层。

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