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Numerical Simulation of Nonlinear Lamb Waves Used in a Thin Plate for Detecting Buried Micro-Cracks

机译:薄板中埋藏的微裂纹检测中非线性兰姆波的数值模拟

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摘要

Compared with conventional linear ultrasonic inspection methods, which are sensitive only to severe defects, nonlinear ultrasonic inspection methods are better for revealing micro-cracks in thin plates. However, most nonlinear ultrasonic inspection methods have only been experimentally investigated using bulk or Rayleigh waves. Numerical studies, especially numerical simulations of Lamb ultrasonic waves, have seldom been reported. In this paper, the interaction between nonlinear S0 mode Lamb waves and micro-cracks of various lengths and widths buried in a thin metallic plate was simulated using the finite element method (FEM). The numerical results indicate that after interacting with a micro-crack, a new wave-packet was generated in addition to the S0 mode wave-packet. The second harmonics of the S0 mode Lamb waves and the new wave-packet were caused by nonlinear acoustic effects at the micro-crack. An amplitude ratio indicator is thus proposed for the early detection of buried micro-cracks.
机译:与仅对严重缺陷敏感的常规线性超声检查方法相比,非线性超声检查方法更适合显示薄板中的微裂纹。但是,大多数非线性超声检查方法仅使用体波或瑞利波进行了实验研究。很少报道数值研究,特别是兰姆超声波的数值模拟。在本文中,使用有限元方法模拟了非线性S0模式兰姆波与埋在金属薄板中的各种长度和宽度的微裂纹之间的相互作用。数值结果表明,在与微裂纹相互作用后,除了S0模式波包外,还产生了新的波包。 S0模式兰姆波和新波包的二次谐波是由微裂纹处的非线性声学效应引起的。因此,提出了一种振幅比指示器,用于及早发现掩埋的微裂纹。

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