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The mathematical modeling for bulk acoustic wave propagation velocities in transversely isotropic piezoelectric materials

机译:横向各向同性压电材料散装声波传播速度的数学建模

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摘要

The objective of this paper is to study the bulk acoustic wave (BAW) propagation velocities in transversely isotropic piezoelectric materials, aluminum nitride, zinc oxide, cadmium sulfide and cadmium selenide. The bulk acoustic wave velocities are computed for each direction by solving the Christoffel's equation based on the theory of acoustic waves in anisotropic solids exhibiting piezoelectricity. These values are calculated numerically and implemented on a computer by Bisection Method Iterations Technique (BMIT). The modification of the bulk acoustic wave velocities caused by the piezoelectric effect are graphically compared with the velocities in the corresponding non-piezoelectric materials. The results obtained in this study can be applied to signal processing, sound systems and wireless communication in addition to the improvement of surface acoustic wave (SAW) devices and military defense equipment.
机译:本文的目的是研究横向各向同性压电材料,氮化铝,氧化锌,硫化镉和硒化镉的散装声波(BAW)传播速度。 通过基于表现出压电的各向异性固体中的声波理论来解决Christoffel的等式来为每个方向计算体积声波速度。 这些值通过双分方法迭代技术(BMIT)在数值上进行数字和在计算机上实现。 用相应的非压电材料中的速度将由压电效应引起的体积声波速度的改变与相应的非压电材料中的速度进行了图示。 除了表面声波(锯)设备和军事防御设备的改进之外,该研究中获得的结果还可以应用于信号处理,声音系统和无线通信。

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