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Vibration analysis of magneto-electro-elastic heterogeneous porous material plates resting on elastic foundations

机译:弹性地基上的磁电弹性非均质多孔材料板的振动分析

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This paper proposes a four-variable shear deformation refined plate theory for free vibration analysis of embedded smart plates made of porous magneto-electro-elastic functionally graded (MEE-FG) materials. Magneto-electro-elastic properties of FG 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. The governing differential equations and boundary conditions of embedded porous FG 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. Influences of several important parameters such as material graduation exponent, porosity volume fraction, magnetic potential, electric voltage, various boundary conditions, elastic foundation parameters and plate side-to-thickness ratio on natural frequencies of embedded porous MEE-FG plate are investigated and discussed in detail. It is concluded that these parameters play significant roles on the dynamic behavior of porous MEE-FG plates resting on elastic foundation. Presented numerical results can serve as benchmarks for future analyses of MEE-FG plates with porosity phases.
机译:本文提出了一种四变量剪切变形精化板理论,用于对由多孔磁电电功能梯度材料(MEE-FG)制成的嵌入式智能板的自由振动进行分析。 FG板的磁电弹性特性应沿厚度方向变化,并通过修正的幂律法则进行估算,在该法则中,近似均匀和不均匀类型的孔隙率。基于四变量切向指数精细化理论,基于哈密顿原理,避免了使用剪切校正因子,利用汉密尔顿原理推导了磁场作用下嵌入式多孔FG板的控制微分方程和边界条件。采用解析解法获得了假定为具有各种边界条件的电磁场的嵌入式多孔FG板的固有频率。研究并讨论了材料分度指数,孔隙率,磁势,电压,各种边界条件,弹性地基参数和板厚比等几个重要参数对嵌入式多孔MEE-FG板固有频率的影响。详细。结论是,这些参数对基于弹性基础的多孔MEE-FG板的动力学行为起着重要作用。提出的数值结果可作为将来对具有孔隙相的MEE-FG板进行分析的基准。

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