热弹性阻尼
材料科学
级配
多孔性
压电
边值问题
振动
非线性系统
材料性能
复合材料
热的
机械
数学分析
声学
数学
物理
热力学
计算机科学
量子力学
计算机视觉
作者
Mohammad Reza Barati,Ashraf M. Zenkour
标识
DOI:10.1177/1077546316672788
摘要
In this article, electro-thermo-mechanical vibrational behavior of functionally graded piezoelectric (FGP) plates with porosities is explored via a refined four-variable plate theory for the first time. Uniform, linear and nonlinear temperature changes are considered in this study. Electro-elastic material properties of porous FGP plate vary across the thickness based on modified power-law model. The governing equations derived from Hamilton’s principle are solved analytically. The exactness of solution is confirmed by comparing obtained results with those provided in the literature. Influences of applied voltage, porosity distribution, thermal loadings, material gradation, plate geometrical parameters and boundary conditions on the vibrational behavior of FGP plates are discussed. These results can be applied for accurate design of smart structures made of functionally graded piezoelectric materials by considering porosity distribution.
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