Depth Evaluation of Subsurface Defects in Lead Seal Based on Accumulated Value Feature from Pulsed Eddy Current Signals

Qianqiu Shao, Songhai Fan, Fenglian Liu
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Abstract

The lead seal is one of the piezoelectric cable components that is prone to failure. In this paper, the accumulated value of pulsed eddy current signals was utilized to characterize the subsurface defect depth of the lead seal for the safety of the lead seal in service. The characterization method of the defect depth was analyzed by the finite element model. The simulation results showed that the accumulated value feature had a linear relationship with the subsurface defect depth in a semilogarithmic coordinate system, and the linear fitting coefficient was 0.9982. The experimental results showed that the accuracy of the accumulated value feature in characterizing the subsurface defect depth was better than that of the peak value feature. Specifically, the maximum relative errors of the measurements were 12.51% and 9.07%, while the average relative errors were 5.83% and 8.00%, respectively.
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基于脉冲涡流信号累积值特征的铅封地下缺陷深度评估
引线密封件是压电电缆组件中容易发生故障的组件之一。本文利用脉冲涡流信号的累积值来表征引线密封件的地下缺陷深度,以确保引线密封件在使用中的安全性。缺陷深度的表征方法由有限元模型进行分析。模拟结果表明,在半对数坐标系中,累积值特征与地下缺陷深度呈线性关系,线性拟合系数为 0.9982。实验结果表明,累积值特征在表征地下缺陷深度方面的准确性优于峰值特征。具体而言,测量结果的最大相对误差为 12.51% 和 9.07%,平均相对误差分别为 5.83% 和 8.00%。
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