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An enhanced Lamb wave virtual time reversal technique for damage detection with transducer transfer function compensation

机译:具有换能器传递函数补偿的损伤检测增强的羊羔波虚拟时间逆转技术

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摘要

The Lamb wave time reversal method has widely been investigated as a baseline-free damage detection technique for structural health monitoring. Due to the mode tuning effects from the transducer-wave interactions, even for a pristine wave path, the reconstructed signal waveform may differ much from the original excitation waveform. Consequently, it becomes difficult to distinguish the differences between undamaged and damaged wave paths. This article presents an enhanced Lamb wave virtual time reversal (VTR) algorithm with transducer transfer function compensation to eliminate the transducer influence for dispersive, multimodal Lamb waves. This VTR procedure builds upon a complete 2D analytical model for Lamb wave generation, propagation, and reception. The analytical solution shows that, with the transducer transfer function compensation, a perfect reconstruction of the original excitation waveform can be achieved for both symmetric and antisymmetric Lamb modes. In addition, finite element modeling and experimental validations are further performed to verify the enhanced time reversal procedure. Finally, a time reversal tomography experiment is conducted with a piezoelectric transducer array for structural damage imaging. The enhanced VTR method can achieve more accurate and robust damage imaging results. The paper finishes with discussion, concluding remarks, and suggestions for future work.
机译:兰姆波浪时间反转方法广泛研究了结构健康监测的基线损伤检测技术。由于换能器波相互作用的模式调谐效应,即使对于原始波路,也可以从原始激励波形中的重建信号波形不同。因此,难以区分未损坏和损坏的波路之间的差异。本文介绍了具有换能器传递函数补偿的增强型兰姆波虚拟时间反转(VTR)算法,以消除分散器的换能器影响,多峰值羔羊波。该VTR过程在完整的2D分析模型上构建了LAMB波浪生成,传播和接收。分析解决方案表明,随着换能器传递函数补偿,可以针对对称和反对称羊肉模式实现原始激励波形的完美重建。另外,进一步执行有限元建模和实验验证以验证增强的时间逆转程序。最后,使用压电传感器阵列进行时间反转断层扫描实验,用于结构损伤成像。增强的VTR方法可以实现更准确和强大的损坏成像结果。本文随着讨论,结束言论和未来工作的建议完成。

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