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首页> 外文期刊>Acta Mechanica >On dispersion relations of Rayleigh waves in a functionally graded piezoelectric material (FGPM) half-space
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On dispersion relations of Rayleigh waves in a functionally graded piezoelectric material (FGPM) half-space

机译:关于功能梯度压电材料(FGPM)半空间中瑞利波的色散关系

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For propagation of Rayleigh surface waves in a transversely isotropic graded piezoelectric half-space with material properties varying continuously along depth direction, the Wentzel–Kramers–Brillouin (WKB) technique is employed for the asymptotic analytical derivations. The phase velocity equations for both the electrically open and shorted cases at the free surface are obtained. Influences of piezoelectric material parameters graded variations on Rayleigh wave dispersion relations, particles’ displacements magnitude and corresponding decay properties are discussed. Results obtained indicate that coupled Rayleigh waves can propagate at the surface of the graded piezoelectric half-space, and their dispersion relations and the particles displacements ellipticity at the free surface are dependent upon the graded variation tendency of the material parameters. By the Rayleigh surface waves phase velocities relative changing values combined with the relationship between the wave number and the material graded coefficient, a theoretical foundation can be provided for the graded material characterization by experimental measurement.
机译:对于瑞利表面波在横向各向同性的梯度压电半空间中传播,其材料特性沿深度方向连续变化,采用Wentzel–Kramers–Brillouin(WKB)技术进行渐近分析。获得了在自由表面上电断开和短路情况的相速度方程。讨论了压电材料参数梯度变化对瑞利波频散关系,粒子位移大小和相应衰减特性的影响。获得的结果表明,耦合的瑞利波可以在梯度压电半空间的表面传播,并且它们的色散关系和自由表面的颗粒位移椭圆率取决于材料参数的梯度变化趋势。通过瑞利面波的相速度相对变化值,结合波数与材料分级系数之间的关系,可以为通过实验测量表征材料的分级提供理论基础。

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