Structural Engineering and Mechanics
Volume 72, Number 1, 2019, pages 113-129
DOI: 10.12989/sem.2019.72.1.113
Assessment of porosity influence on dynamic characteristics of smart heterogeneous magneto-electro-elastic plates
Farzad Ebrahimi, Ali Jafari and Vinyas Mahesh
Abstract
A four-variable shear deformation refined plate theory has been proposed for dynamic characteristics of smart plates made of porous magneto-electro-elastic functionally graded (MEE-FG) materials with various boundary conditions by using an analytical method. Magneto-electro-elastic properties of FGM plate are supposed to vary through the thickness direction and are estimated through the modified power-law rule in which the porosities with even and uneven type are approximated. Pores possibly occur inside functionally graded materials (FGMs) due the result of technical problems that lead to creation of micro-voids in these materials. The variation of pores along the thickness direction influences the mechanical properties. The governing differential equations and boundary conditions of embedded porous FGM plate under magneto-electrical field are derived through Hamilton\'s principle based on a four-variable tangential-exponential refined theory which avoids the use of shear correction factors. An analytical solution procedure is used to achieve the natural frequencies of embedded porous FG plate supposed to magneto-electrical field with various boundary condition. A parametric study is led to carry out the effects of material graduation exponent, coefficient of porosity, magnetic potential, electric voltage, elastic foundation parameters, various boundary conditions and plate side-to-thickness ratio on natural frequencies of the porous MEE-FG plate. It is concluded that these parameters play significant roles on the dynamic behavior of porous MEE-FG plates. Presented numerical results can serve as benchmarks for future analyses of MEE-FG plates with porosity phases.
Key Words
Magneto-electro-elastic FG plate; Porous materials; Free vibration; Refined plate theory
Address
Farzad Ebrahimi, Ali Jafari: Department of Mechanical Engineering, Faculty of Engineering, Imam Khomeini International University, Qazvin, Iran
Vinyas Mahesh:Department of Mechanical Engineering, Nitte Meenakshi Institute of Technology, Bangalore, India