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Buckling analysis of skew magneto-electro-elastic plates under in-plane loading

机译:面内载荷作用下偏斜磁电弹性板的屈曲分析

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This article deals with the study of buckling behaviour of multilayered skew magneto-electro-elastic plate under uniaxial and biaxial in-plane loadings. The skew edges of the skew magneto-electro-elastic plate are obtained by transforming the local skew coordinate to the global using a transformation matrix. The displacement fields corresponding to the first-order shear deformation theory along with constitutive equations of magneto-electro-elastic materials are used to develop a finite element model. The finite element model encompasses the coupling between electric, magnetic and elastic fields. The in-plane stress distribution within the skew magneto-electro-elastic plate due to the enacted force is considered to be equivalent to the applied in-plane compressive loads in the pre-buckling range. This stress distribution is used to derive the potential energy functional of the skew magneto-electro-elastic plate. The non-dimensional critical buckling load is attained from the solution of the allied linear eigenvalue problem. Influence of skew angle, stacking sequence, span-to-thickness ratio, aspect ratio and boundary condition on the critical buckling load and their corresponding mode shapes is investigated.
机译:本文研究了单轴和双轴面内载荷作用下的多层斜斜磁电弹性板的屈曲行为。通过使用转换矩阵将局部偏斜坐标转换为整体,可以得到偏斜磁电弹性板的偏斜边缘。利用一阶剪切变形理论所对应的位移场以及磁电弹性材料的本构方程来建立有限元模型。有限元模型包含电场,磁场和弹性场之间的耦合。由于作用力而引起的偏斜磁电弹性板内的平面内应力分布被认为等同于在预屈曲范围内施加的平面内压缩载荷。该应力分布用于导出偏斜磁电弹性板的势能函数。从相关的线性特征值问题的解中获得了无量纲的临界屈曲载荷。研究了偏斜角,堆垛顺序,厚度比,宽高比和边界条件对临界屈曲载荷及其相应模态的影响。

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