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Multi-Mode Electromagnetic Ultrasonic Lamb Wave Tomography Imaging for Variable-Depth Defects in Metal Plates

机译:用于金属板中可变深度缺陷的多模式电磁超声Lamb波层析成像

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摘要

This paper proposes a new cross-hole tomography imaging (CTI) method for variable-depth defects in metal plates based on multi-mode electromagnetic ultrasonic Lamb waves (LWs). The dispersion characteristics determine that different modes of LWs are sensitive to different thicknesses of metal plates. In this work, the sensitivities to thickness variation of A0- and S0-mode LWs are theoretically studied. The principles and procedures for the cooperation of A0- and S0-mode LW CTI are proposed. Moreover, the experimental LW imaging system on an aluminum plate with a variable-depth defect is set up, based on A0- and S0-mode EMAT (electromagnetic acoustic transducer) arrays. For comparison, the traditional single-mode LW CTI method is used in the same experimental platform. The imaging results show that the computed thickness distribution by the proposed multi-mode method more accurately reflects the actual thickness variation of the defect, while neither the S0 nor the A0 single-mode method was able to distinguish thickness variation in the defect region. Moreover, the quantification of the defect’s thickness variation is more accurate with the multi-mode method. Therefore, theoretical and practical results prove that the variable-depth defect in metal plates can be successfully quantified and visualized by the proposed multi-mode electromagnetic ultrasonic LW CTI method.
机译:提出了一种基于多模电磁超声兰姆波(LWs)的金属板变深缺陷跨孔层析成像(CTI)新方法。色散特性决定了不同模式的长波对金属板的不同厚度敏感。在这项工作中,从理论上研究了A0型和S0型LW对厚度变化的敏感性。提出了A0和S0模式LW CTI协作的原理和程序。此外,基于A0和S0模式EMAT(电磁声换能器)阵列,在具有可变深度缺陷的铝板上建立了实验性LW成像系统。为了进行比较,在同一实验平台上使用了传统的单模LW CTI方法。成像结果表明,所提出的多模方法计算出的厚度分布更准确地反映了缺陷的实际厚度变化,而S0和A0单模方法均无法区分缺陷区域的厚度变化。此外,使用多模式方法可以更准确地量化缺陷的厚度变化。因此,理论和实践结果证明,所提出的多模电​​磁超声LW CTI方法可以成功地量化和可视化金属板中的深度可变缺陷。

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