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首页> 外文期刊>International Journal of Mechanical Sciences >Love-type waves in a piezoelectric-viscoelastic bimaterial composite structure due to an impulsive point source
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Love-type waves in a piezoelectric-viscoelastic bimaterial composite structure due to an impulsive point source

机译:由于冲动点源,Love-Type波在压电 - 粘弹性双材料复合结构中

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The analysis of wave propagation phenomenon piezoelectric-viscoelastic composites still remains an unexplored field of research. The usage of a passive polymer (Epoxy) with active piezoelectric ceramic causes viscoelasticity in the piezoelectric material which results into a piezoelectric-viscoelastic composite. The present study aims to analyze the propagation behavior of Love-type wave in an exponentially graded piezoelectric-viscoelastic material (EGPVM) stratum lying over a functionally graded piezoelectric-viscoelastic material (FGPVM) substrate due to an impulsive point source at its interfacial surface. The electro-visco-mechanical field equations are laid down for the piezoelectric-viscoelastic medium. The analytical solution procedure involves the use of suitable Green's function and admissible boundary conditions. The established frequency equation is in complex form; of which the real expression imparts the frequency curve and imaginary expression gives the attenuation curve of Love-type wave. To depict the results numerically, two distinct piezoelectric-viscoelastic materials (EpoxyBNICLBT and Epoxy-KNLNTS ceramics) for EGPVM stratum and FGPVM substrate are taken into account. The phase velocity profile and attenuation coefficient profile of Love-type wave is portrayed graphically. Diagnostic results are simulated numerically which forefronts the effect of distinct parameters. The study manifests the impact of the material medium parameters, viz. piezoelectric constants, dielectric constants, piezoelectric loss moduli, dielectric loss moduli, exponential gradient parameter and magnifying gradient parameters on the phase velocity and attenuation coefficient of Love-type wave. For sake of validation, the obtained results are matched with the classical one, as a special case of the problem. The outcomes of the study may find its worth in better and optimum design of surface acoustic wave devices and Love wave sensors, keeping efficiency at its premium.
机译:波传播现象的分析压电粘弹性复合材料仍然是未开发的研究领域。具有有源压电陶瓷的无源聚合物(环氧树脂)的用途导致压电材料中的粘弹性,这导致压电粘弹性复合材料。本研究旨在分析由于其界面表面处的脉冲点源在功能上渐进的压电 - 粘弹性材料(EGPVM)层中的逐渐渐进的压电 - 粘弹性材料(FGPVM)衬底的繁殖型波的传播行为。为压电粘弹性介质铺设电粘合机械场方程。分析解决方案程序涉及使用合适的绿色功能和可允许的边界条件。建立的频率方程处于复杂的形式;其中真实表达赋予频率曲线和虚数表达给出了爱型波的衰减曲线。为了在数值上描绘结果,考虑用于EGPVM层和FGPVM底物的两个不同的压电粘弹性材料(EPOxybniclBT和环氧树脂knlnts陶瓷)。图形上描绘了爱型波的相位速度曲线和衰减系数轮廓。诊断结果在数值上模拟,最前沿参数的效果。该研究表明了材料介质参数,viz的影响。压电常数,介电常数,压电损耗模量,介电损耗模量,指数梯度参数和放大梯度参数对爱型波的相速度和衰减系数。为了验证,获得的结果与经典的结果相匹配,作为问题的特殊情况。该研究的结果可以在更好地和最佳的表面声波设备和爱波传感器设计中找到其价值,保持效率在溢价上。

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