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Acoustic wave propagation in functionally graded materials cylindrically: Polynomial approach

机译:圆柱形功能梯度材料中的声波传播:多项式方法

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摘要

A new approach is presented to determine the guided waves in hollow FGM cylinders made up of macroscopically inhomogeneous composite materials. The materials properties, elastic coefficients and mass density, are assumed to vary in the direction of the thickness according to a known radial variation law. The equations of motion are solved numerically by expanding each displacement component using Legendre polynomials and trigonometric functions. Dispersion curves of the guided waves for longitudinal, torsional and flexural modes are calculated and presented. Mechanical displacements, normal stresses and power flow distributions are presented for certain specific modes. This approach could be of use in waveguiding engineering, in non-destructive evaluation to predict which modes could be of interest either in non-destructive testing of FGM structures or, by means of a numerical inversion algorithm, to determine through-thickness gradients in material parameters.
机译:提出了一种新的方法来确定由宏观上不均匀的复合材料制成的空心FGM圆柱中的导波。假定材料特性,弹性系数和质量密度根据已知的径向变化定律在厚度方向上变化。通过使用勒让德多项式和三角函数扩展每个位移分量,可以数值求解运动方程。计算并给出了导波在纵向,扭转和弯曲模式下的色散曲线。针对某些特定模式,给出了机械位移,法向应力和潮流分布。此方法可用于波导工程,无损评估中,以预测在FGM结构的无损测试中可能感兴趣的模式,或者通过数值反演算法确定材料中的厚度梯度参数。

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