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Detection of delamination defects inside carbon fiber reinforced plastic laminates by measuring eddy-current loss

机译:通过测量涡流损失检测碳纤维增强塑料层压板内的分层缺陷

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摘要

Carbon fiber reinforced plastics are likely to experience delamination due to the heterogeneity and anisotropy of the materials. However, the through-thickness conductivity of CFRPs is low, resulting in a weak output signal and large amounts of noise interference of eddy current testing in the detection of delamination. Based on the eddy-current loss theory, a method is proposed to detect delamination inside CFRPs. The method consists of an absolute probe with an 8-shaped coil and a unique signal extraction technique using eddy-current loss. The 8-shaped coil of the proposed probe enables the probe to generate a sufficiently strong vertical eddy-current component at its geometric center. The eddy-current loss on CFRPs is extracted by the parallel inductorcapacitor resonance circuit and micro-power detection module. The experiments show that the sensitivity of the vertical 8-shaped probe to the delamination detection is higher than that of the circular and square probes. Compared with ECT, the proposed method by measuring eddy-current loss for delamination has a lower frequency and less noise. In addition, this paper further explores the application of the proposed method in automatic defect detection. The results show that the proposed method can be effectively applied to the automatic detection and visualization of delamination inside CFRPs.
机译:由于材料的异质性和各向异性,碳纤维增强塑料可能会受到分层。然而,CFRP的贯穿厚度电导率低,导致较弱的输出信号和涡流测试中的大量噪声干扰在检测中检测分层。基于涡流损耗理论,提出了一种方法检测CFRP内部分层。该方法包括具有8形线圈的绝对探针和使用涡流损耗的唯一信号提取技术。所提出的探针的8形线圈使探针能够在其几何中心产生足够强的垂直涡流组分。 CFRPS上的涡流损耗由并联电感器谐振电路和微功率检测模块提取。实验表明,垂直8形探针对分层检测的灵敏度高于圆形和方形探针的灵敏度。与ECT相比,通过测量分层的涡流损耗来进行所提出的方法具有较低的频率和较少的噪声。此外,本文还探讨了所提出的方法在自动缺陷检测中的应用。结果表明,该方法可以有效地应用于CFRP内部分层的自动检测和可视化。

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