On New Dispersive SH-Waves Propagating in Piezoelectromagnetic Plate

A. Zakharenko
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引用次数: 2

Abstract

This theoretical work discovers four new dispersive shear-horizontal (SH) waves propagating in the transversely isotropic piezoelectromagnetic plate of class 6 mm. In this work, the following mechanical, electrical, and magnetic boundary conditions at both the upper and lower free surfaces of the piezoelectromagnetic plate are utilized: the mechanically free surface, continuity of both the electrical and magnetic potentials, and continuity of both the electrical and magnetic inductions. The solutions for the new SH-wave velocities (dispersion relations) are found in explicit forms and then graphically studied. The graphical investigation has soundly illuminated several interesting peculiarities that were also discussed. The piezoelectromagnetic materials, also known as the magnetoelectroelastic media, are famous as smart materials because the electrical subsystem of the materials can interact with the magnetic subsystem via the mechanical subsystem, and vice versa. Therefore, it is very important to know the wave characteristics of such (composite) materials because of possible constitution of new technical devices with a high level of integration. It is obvious that the plate waves can be preferable for further miniaturization of the technical devices and used for the nondestructive testing and evaluation of thin piezoelectromagnetic films.
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新色散sh波在压电电磁板中的传播
本理论工作发现了四种新的色散剪切水平波在横向各向同性6mm级压电板中传播。在这项工作中,利用了压电板上下自由表面的以下机械,电气和磁性边界条件:机械自由表面,电势和磁势的连续性,以及电感应和磁感应的连续性。新sh波速度(色散关系)的解以显式形式得到,然后图解研究。图形调查充分说明了几个有趣的特点,也讨论了。压电材料,也被称为磁电弹性介质,是著名的智能材料,因为材料的电气子系统可以通过机械子系统与磁性子系统相互作用,反之亦然。因此,了解这种(复合)材料的波动特性是非常重要的,因为它可能构成具有高集成度的新技术装置。显然,平板波可以用于进一步小型化的技术装置,并用于压电薄膜的无损检测和评价。
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