材料科学
压电
板块理论
边值问题
偏转(物理)
有限元法
多孔性
轴对称性
板材弯曲
材料性能
结构工程
复合材料
机械
弯曲
物理
数学分析
数学
工程类
经典力学
作者
Aditya Harsha,Pawan Kumar
标识
DOI:10.1016/j.finmec.2022.100112
摘要
This paper describes the bending and deflection analysis of the three-layered functionally graded porous piezoelectric plates resting on the elastic foundation subjected to thermal and electrical loading with boundary constraints. The porous plate's thermomechanical properties vary modified power law in bi-directional, i.e. axially and transversely. The plate formulation is deduced using the modified first-order shear deformation theory with Hamilton's principle and solved through nine nodes higher nodes finite element methods with modified iterative methods. Comparison and convergence of the present model are validated with the existing literature. The effects of the parameters such as thickness ratio, porous exponents, bidirectional volume fraction exponents, thermal loading, voltage, elastic foundations and boundary conditions on the static response have been discussed in detail. The results are more useful for designing the porous smart structures application and show a higher capability in bidirectional behavior than unidirectional behaviors.
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