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Lift-off effect reduction based on the dynamic trajectories of the received-signal fast Fourier transform in pulsed eddy current testing

机译:基于脉冲涡流测试中接收信号快速傅里叶变换动态轨迹的提离效应降低

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摘要

Reduction of interferences such as the lift-off effect in pulsed eddy current (PEC) testing has been difficult. A new approach based on the dynamic trajectories of the fast Fourier transform (FFT) of the received signals is presented in this paper for reducing the lift-off effect in PEC. The PEC probe scans the surface of the test sample and a set of received signals for a corresponding set of scanning points is stored. FFT is performed on all these stored signals, and the real and imaginary parts for a particular FFT harmonic of all the stored scanning points are plotted in a complex plane to form a dynamic trajectory. The defect trajectory can be recognized from the lift-off trajectory by observing the angle between them, as in conventional eddy current testing. By moving the defect trajectory in the complex plane for each harmonic to a zero-lift-off point and performing an inverse fast Fourier transform (IFFT) based on the new trajectories for all the harmonics, the traditional PEC time domain differential signals for a defect can be reconstructed. Then, the acquired results are amplified with a coefficient related to the inspection settings and final differential signals closely approximating the original defect differential signals without lift-off are obtained. Experimental results demonstrate that the proposed method is highly effective, particularly for the simultaneous inspection of internal and surface defects, although the location of the defect in the depth direction is unknown before inspection.
机译:减少诸如涡流(PEC)测试中的剥离效应之类的干扰一直很困难。提出了一种基于接收信号快速傅立叶变换(FFT)动态轨迹的新方法,以减少PEC中的提离效应。 PEC探针扫描测试样品的表面,并存储一组对应的扫描点的接收信号。对所有这些存储的信号执行FFT,并将所有存储的扫描点的特定FFT谐波的实部和虚部绘制在复杂平面上以形成动态轨迹。与常规涡流测试一样,可以通过观察脱模轨迹之间的夹角,从脱模轨迹中识别出缺陷轨迹。通过将复数平面中每个谐波的缺陷轨迹移至零提离点并基于所有谐波的新轨迹执行快速傅里叶逆变换(IFFT),可对缺陷进行传统的PEC时域差分信号可以重建。然后,利用与检查设置有关的系数来放大所获得的结果,并且获得接近原始缺陷差分信号而没有剥离的最终差分信号。实验结果表明,尽管缺陷在深度方向上的位置在检查之前是未知的,但是该方法非常有效,特别是对于内部和表面缺陷的同时检查。

著录项

  • 来源
    《NDT & E international》 |2017年第4期|85-92|共8页
  • 作者单位

    Key Laboratory of Nondestructive Testing (Ministry of Education), Nanchang Hongkong University, Nanchang 330063, China,School of Measuring and Optical Engineering, Nanchang Hangkong University, No. 696 Fenghenandadao, Nanchang 330063, China;

    Key Laboratory of Nondestructive Testing (Ministry of Education), Nanchang Hongkong University, Nanchang 330063, China;

    Key Laboratory of Nondestructive Testing (Ministry of Education), Nanchang Hongkong University, Nanchang 330063, China;

    Key Laboratory of Nondestructive Testing (Ministry of Education), Nanchang Hongkong University, Nanchang 330063, China;

    Key Laboratory of Nondestructive Testing (Ministry of Education), Nanchang Hongkong University, Nanchang 330063, China;

    Key Laboratory of Nondestructive Testing (Ministry of Education), Nanchang Hongkong University, Nanchang 330063, China;

    Key Laboratory of Nondestructive Testing (Ministry of Education), Nanchang Hongkong University, Nanchang 330063, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pulsed eddy current; Fast Fourier transform; Dynamic trajectory; Lift-off effect;

    机译:脉冲涡流;快速傅立叶变换;动态轨迹剥离效果;

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