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A two-stage approach for quantitative damage imaging in metallic plates using Lamb waves

机译:使用兰姆波在金属板中定量损伤成像的两阶段方法

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摘要

This paper proposes a two-stage imaging approach for quantitative inspection of damages in metallic plates using the fundamental anti-symmetric mode of (A zero) Lamb wave. The proposed approach employs a number of transducers to transmit and receive A zero Lamb wave pulses, and hence, to sequentially scan the plate structures before and after the presence of damage. The approach is applied to image the corrosion damages, which are simplified as a reduction of plate thickness in this study. In stage-one of the proposed approach a damage location image is reconstructed by analyzing the cross-correlation of the wavelet coefficient calculated from the excitation pulse and scattered wave signals for each transducer pairs to determine the damage location. In stage-two the Lamb wave diffraction tomography is then used to reconstruct a thickness reduction image for evaluating the size and depth of the damage. Finite element simulations are carried out to provide a comprehensive verification of the proposed imaging approach. A number of numerical case studies considering a circular transducer network with eight transducers are used to identify the damages with different locations, sizes and thicknesses. The results show that the proposed methodology is able to accurately identify the damage locations with inaccuracy of the order of few millimeters of a circular inspection area of 100mm2 and provide a reasonable estimation of the size and depth of the damages.
机译:本文提出了一种两阶段成像方法,使用(A零)兰姆波的基本反对称模式对金属板中的损伤进行定量检查。所提出的方法采用许多换能器来发送和接收零兰姆波脉冲,因此,在存在损坏之前和之后依次扫描板结构。该方法用于对腐蚀破坏进行成像,在本研究中简化为减小板厚。在提出的方法的第一阶段中,通过分析从每个换能器对的激励脉冲和散射波信号计算出的小波系数的互相关来确定损伤位置,从而重建损伤位置图像。然后在第二阶段中,将兰姆波衍射层析成像技术用于重建厚度减小图像,以评估损伤的大小和深度。进行有限元模拟以提供对所提出的成像方法的全面验证。考虑到具有八个换能器的圆形换能器网络的许多数值案例研究被用来识别具有不同位置,大小和厚度的损坏。结果表明,所提出的方法能够以100mm2的圆形检查区域的几毫米量级的误差准确地识别损坏的位置,并提供对损坏的大小和深度的合理估计。

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    Ng C.T.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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