Abstract
This paper investigates the propagation of Rayleigh surface waves in structures with randomly distributed surface micro-cracks using numerical simulations. The results revealed a significant ultrasonic nonlinear effect caused by the surface micro-cracks, which is mainly represented by a second harmonic with even more distinct third/quadruple harmonics. Based on statistical analysis from the numerous results of random micro-crack models, it is clearly found that the acoustic nonlinear parameter increases linearly with micro-crack density, the proportion of surface cracks, the size of micro-crack zone, and the excitation frequency. This study theoretically reveals that nonlinear Rayleigh surface waves are feasible for use in quantitatively identifying the physical characteristics of surface micro-cracks in structures.
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Ding, X., Li, F., Zhao, Y., Xu, Y., Hu, N., Cao, P., & Deng, M. (2018). Generation mechanism of nonlinear Rayleigh surface waves for randomly distributed surface micro-cracks. Materials, 11(4). https://doi.org/10.3390/ma11040644
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