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Numerical time-domain simulation of wave propagation and scattering in acoustic microscopy for subsurface defect characterization

机译:声波显微镜中波传播和散射的时域数值模拟,用于表征地下缺陷

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A numerical model of an acoustic microscope based on the elastodynamic finite integration technique (EFIT) is presented. It allows time-domain simulations of elastic wave propagation in both, fluids and solids, and includes focusing of the incident wave field as well as scattering at defects and the fluid-solid interface taking mode converted echoes and leaky Rayleigh waves into account. The simulations can be performed for different frequencies and materials and can be used for the continuous and time-resolved mode as well as for transmission and reflection microscopy. The simulation results can be represented by time-domain signals and wave front snapshots. The formation of V(r,z) curves is also possible. In the present paper the simulations are applied to the problem of vertical cracks and spherical inclusions in a solid substrate as well as for subsurface characterization of thin coatings.
机译:提出了基于弹性动力学有限积分技术(EFIT)的声学显微镜数值模型。它允许对弹性波在流体和固体中的传播进行时域仿真,并且包括聚焦入射波场以及缺陷处的散射以及考虑模式转换回波和泄漏瑞利波的流固界面。可以针对不同的频率和材料执行仿真,并且可以将其用于连续和时间分辨模式以及透射和反射显微镜。仿真结果可以通过时域信号和波前快照来表示。 V(r,z)曲线的形成也是可能的。在本文中,模拟应用于固体基材中的垂直裂纹和球形夹杂物问题以及薄涂层的表面下表征。

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