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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Numerical analysis of the acoustic signature of a surface-breaking crack
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Numerical analysis of the acoustic signature of a surface-breaking crack

机译:表面破裂裂纹声学特征的数值分析

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The boundary element method is used to calculate the acoustic signature, produced by a line focus scanning acoustic microscope, of an elastic object containing a surface-breaking crack. The acoustic signature has a vertical (z) and horizontal (x) dependence. A model of the microscope developed earlier is used and extended to take account of the crack. The mathematical formulation of the scattering problem for the cracked object leads to hypersingular integral equations. A suitable technique is employed to solve such equations by the boundary element method. An electromechanical reciprocity identity is used to relate the received voltage to the acoustic wavefields collected by the lens. The acoustic wavefield scattered from the cracked object is investigated, and curves are presented that display the acoustic signature, as functions of (x,z), for cracks of various depths and orientations. A method to measure the depth of a surface-breaking crack using the acoustic signature is suggested.
机译:边界元法用于计算由线聚焦扫描声学显微镜产生的包含表面破裂裂纹的弹性物体的声学特征。声学特征具有垂直(z)和水平(x)依赖性。使用了先前开发的显微镜模型,并将其扩展以考虑到裂纹。裂纹物体散射问题的数学公式导致了超奇异积分方程。采用合适的技术通过边界元法求解这些方程。机电可逆性用于将接收到的电压与透镜收集的声波场相关。研究了从破裂物体散射的声波场,并给出了曲线,这些曲线显示了针对(x,z)函数的各种深度和方向的裂纹的声学特征。提出了一种使用声学特征来测量表面裂纹深度的方法。

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