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Quantitative evaluation of through-thickness rectangular notch in metal plates based on lamb waves

机译:基于羊羔波的金属板贯穿厚度矩形凹口的定量评价

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摘要

Lamb wave technology is a promising technology in the field of structural health monitoring and can be applied in the detection and monitoring of defects in plate structures. Based on the reconstruction algorithm for the probabilistic inspection of damage (RAPID), a Lamb-based detection and evaluation method of through-thickness rectangular notches in metal plates was proposed in this study. The influences of through-thickness rectangular notch length and the angle between sensing path and notch length direction on signals were further explored through simulations and experiments. Then a damage index calculation method which focuses on both phase and amplitude difference between detected signals and baseline signals was proposed. Based on the damage index difference between two vertically crossed sensing paths which pass through the notch in a sensor network, the notch direction identification method was proposed. In addition, the notch length was determined based on the damage index distribution along sensing paths. The experimental results showed that the image reconstructed with the proposed method could reflect the information for the evaluation of notches.
机译:LAMB波浪技术是结构健康监测领域的有希望的技术,可用于检测和监测板结构的缺陷。基于对损伤(快速)概率检测的重建算法,在本研究中提出了一种基于lem厚度矩形凹口的基于兰姆的检测和评价方法。通过仿真和实验进一步探索了通过厚度矩形凹口长度和感测路径与凹口长度方向之间的角度的影响。然后,提出了一种损伤指数计算方法,其专注于检测到的信号和基线信号之间的相位和幅度差。基于通过传感器网络中通过凹口的两个垂直交叉感测路径之间的损伤指数差,提出了凹口方向识别方法。另外,沿沿感测路径的损伤指数分布确定凹口长度。实验结果表明,用所提出的方法重建的图像可以反映出缺口评估的信息。

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