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The Computation of Complex Dispersion and Properties of Evanescent Lamb Wave in Functionally Graded Piezoelectric-Piezomagnetic Plates

机译:功能梯度压电-压电板的复数色散和of逝兰姆波特性的计算

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摘要

Functionally graded piezoelectric-piezomagnetic material (FGPPM), with a gradual variation of the material properties in the desired direction(s), can improve the conversion of energy among mechanical, electric, and magnetic fields. Full dispersion relations and wave mode shapes are vital to understanding dynamic behaviors of structures made of FGPPM. In this paper, an analytic method based on polynomial expansions is proposed to investigate the complex-valued dispersion and the evanescent Lamb wave in FGPPM plates. Comparisons with other related studies are conducted to validate the correctness of the presented method. Characteristics of the guided wave, including propagating modes and evanescent modes, in various FGPPM plates are studied, and three-dimensional full dispersion and attenuation curves are plotted to gain a deeper insight into the nature of the evanescent wave. The influences of the gradient variation on the dispersion and the magneto-electromechanical coupling factor are illustrated. The displacement amplitude and electric potential and magnetic potential distributions are also discussed in detail. The obtained numerical results could be useful to design and optimize different sensors and transducers made of smart piezoelectric and piezomagnetic materials with high performance by adjusting the gradient property.
机译:功能分级的压电-压电材料(FGPPM)在所需的方向上具有逐渐变化的材料特性,可以改善机械,电场和磁场之间的能量转换。完全的色散关系和波模形状对于理解FGPPM制成的结构的动态行为至关重要。本文提出了一种基于多项式展开的解析方法来研究FGPPM板中的复数值色散和the逝兰姆波。与其他相关研究进行比较以验证所提出方法的正确性。研究了各种FGPPM板中的导波特性,包括传播模和e逝模,并绘制了三维全色散和衰减曲线,以更深入地了解the逝波的性质。说明了梯度变化对色散和电磁耦合系数的影响。还详细讨论了位移幅度以及电势和磁势分布。通过调节梯度特性,获得的数值结果可用于设计和优化由高性能智能压电和压电材料制成的不同传感器和传感器。

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