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Theoretical and experimental investigation of surface acoustic wave propagation on a hollow spherical shell using laser ultrasound

机译:声表面波在中空球壳上激光超声传播的理论和实验研究

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摘要

An analytical model of surface acoustic waves on the surface of a hollow spherical shell generated by a pulsed laser source is proposed using the Legendre polynomials expansion and contour integration method. The model predicts two interesting phenomena. The dispersive characteristic of thick spherical shells is mainly determined by the spherical Rayleigh waves, but the corresponding characteristic of thin spherical shells is dominated by zero-order anti-symmetric plate waves; The hollow spherical spheres with the same ratio of thickness to radius have the same dispersive characteristic. Using laser ultrasound technique, the proposed model is confirmed experimentally on a hollow polymer sphere of mm-sized diameter.
机译:利用勒让德多项式展开和轮廓积分法,提出了脉冲激光源在空心球壳表面产生的表面声波解析模型。该模型预测了两个有趣的现象。厚球形壳的色散特性主要由球形瑞利波决定,而薄球形壳的色散特性主要由零阶反对称板波控制。具有相同的厚度与半径比的空心球形球具有相同的分散特性。使用激光超声技术,在直径为mm的中空聚合物球体上实验确定了该模型。

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