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Porosity influence on structural behaviour of skew functionally graded magneto-electro-elastic plate

机译:孔隙度对倾斜功能梯度磁电弹性板结构性能的影响

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摘要

This article presents a finite element (FE) formulation to assess the influence of porosity on the static responses and free vibration of functionally graded skew magneto-electro-elastic (FGSMEE) plate. The porosity is accounted for local density using modified power law. The skew edges of the plate are achieved by implementing transformation matrix. The coupled constitutive relations establish the different couplings associated with MEE materials. The displacements, potentials, and stresses for the porous skew plate are established through static analysis. The influence of porosity on the natural frequency of the skew plate is investigated via free vibration analysis. The influence of different porosity distributions on various skew angles of the FGSMEE plate has been studied. The effect of porosity volume, skew angle, and geometrical parameters such as aspect ratio, thickness ratio, and boundary conditions on the porous FGSMEE plate is investigated.
机译:本文提出了一种有限元(FE)公式,以评估孔隙度对功能梯度偏斜磁电弹性(FGSMEE)板的静态响应和自由振动的影响。孔隙率是使用修正的幂定律解释局部密度的。板的偏斜边缘通过实现变换矩阵来实现。耦合的本构关系建立了与MEE材料关联的不同耦合。通过静态分析确定了多孔斜板的位移,电势和应力。通过自由振动分析研究了孔隙度对斜板固有频率的影响。研究了不同孔隙率分布对FGSMEE板各种倾斜角的影响。研究了孔隙率,倾斜角和几何参数(如长宽比,厚度比和边界条件)对多孔FGSMEE板的影响。

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