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A refined Lamb wave time-reversal method with enhanced sensitivity for damage detection in isotropic plates

机译:用于各向同性板中损伤检测的灵敏度更高的改进兰姆波时间逆转方法

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In this work, we critically examine the effectiveness of the time-reversed Lamb wave based baseline-free damage detection technique for notch-type damage in isotropic plates, through finite element (FE) simulation of an integrated actuator-plate-sensor system. The FE simulation has been verified with experiments. We show that the single-mode tuning, hitherto recommended for improving performance of the time-reversal process (TRP) based technique, does not generally lead to the best reconstruction of the original input signal. The results of the TRP in the presence of notch-type damage show that the damage indices (DIs) computed using the conventional main wave packet of the reconstructed signal do not show any significant change with an increase in damage size, which is consistent with some recently reported experimental results by other groups. A new method of computing the DIs with extended signal length is proposed, which shows excellent sensitivity to damage, and also ensures a low threshold for the undamaged case, when used at the best reconstruction frequency. The same refined DIs, however, are not effective, when used at the so called sweet spot frequency exciting a single mode. Refined DIs based on correlation and similarity of the reconstructed signal reflect the true severity of damage.
机译:在这项工作中,我们通过集成的执行器-板式传感器系统的有限元(FE)仿真,严格检验了基于时间逆向Lamb波的无基线损伤检测技术对各向同性板中缺口类型损伤的有效性。有限元仿真已通过实验验证。我们表明,迄今为止建议用于改进基于时间反转过程(TRP)的技术的性能的单模调谐通常不会导致对原始输入信号的最佳重构。陷波型损伤存在下的TRP结果表明,使用常规主波包对重建信号进行计算的损伤指数(DI)不会随损伤大小的增加而显示任何显着变化,这与某些最近报道了其他小组的实验结果。提出了一种计算具有扩展信号长度的DI的新方法,该方法显示出极佳的损伤敏感性,并且当以最佳重建频率使用时,还可以确保未损坏情况的阈值较低。但是,当以所谓的最佳频率激励单个模式时,相同的精制DI无效。基于重构信号的相关性和相似性的精确DI反映了损坏的真实严重程度。

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