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Nonlinear Lamb wave based DORT method for detection of fatigue cracks

机译:基于非线性Lamb波的DORT疲劳裂纹检测方法

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This research reports a selective detecting and focusing approach for fatigue cracks through use of decomposition of the time reversal operator (DORT) in combination with nonlinear Lamb waves. In the proposed approach, the time reversal operator (TRO) is only decomposed at the second-harmonic frequency, which has been widely utilized in recent years to evaluate micro-damage, rather than the fundamental frequency in the traditional DORT method. Further, an imaging algorithm based on the total focus method is introduced to locate nonlinear scatterers. The proposed approach is experimentally investigated to locate two fatigue cracks with different fatigue cycles in an aluminum plate with a set of surface bounded piezoelectric (PZT) transducers. The results show that the significant eigenvalues are related to the fatigue cycles of fatigue cracks when the TRO is decomposed at the second-harmonic frequency, and the number of significant eigenvalues is exactly equal to the number of fatigue cracks. The two fatigue cracks are selectively located accurately and are also distinguished from linear scatterer by use of the proposed method.
机译:这项研究报告了通过使用时间反转算子(DORT)的分解与非线性Lamb波的组合,对疲劳裂纹进行选择性检测和聚焦的方法。在提出的方法中,时间反转算子(TRO)仅在二次谐波频率下分解,近年来它已被广泛用于评估微损伤,而不是传统DORT方法中的基本频率。此外,介绍了一种基于全聚焦方法的成像算法来定位非线性散射体。对提出的方法进行了实验研究,以找到带有一组表面有界压电(PZT)换能器的铝板中具有不同疲劳周期的两个疲劳裂纹。结果表明,当TRO在第二谐波频率下分解时,有效特征值与疲劳裂纹的疲劳周期有关,有效特征值的数量恰好等于疲劳裂纹的数量。通过使用所提出的方法,可以精确地选择性地定位两个疲劳裂纹,并且还可以与线性散射体区分开。

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