Clamped-Free Non Homogeneous Magneto Electro Elastic Plate of Polygonal Cross-Sections with Hydrostatic Stress and Gravity

G. Sujitha, R. Selvamani
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Abstract

In this article, the influence of hydrostatic stress and gravity on a clamped- free non homogeneous magneto electro elastic plate of polygonal cross sections is studied using linear theory of elasticity. The equations of motion based on two-dimensional theory of elasticity are applied under the plane strain assumption of prestressed and gravitated magneto electro elastic plate of polygonal cross-sections composed of non homogeneous isotropic material. The frequency equations are obtained by satisfying the boundary conditions along the irregular surface of the polygonal plate using Fourier expansion collocation method. The complex roots of the frequency equations are obtained by secant method. The numerical computations are carried out for triangular, square, pentagon and hexagon cross sectional plates. Graphical representation is given for the various physical variables via gravity and different edge boundaries and its characteristics are discussed. This result can be applied for optimum design of concrete plates with polygonal cross sections.
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具有静水应力和重力的多边形截面无夹紧非均匀磁电弹性板
本文应用线性弹性理论,研究了静水应力和重力对无夹紧多边形截面非均匀磁电弹性板的影响。在非均质各向同性材料构成的多边形截面预应力重力磁电弹性板的平面应变假设下,应用基于二维弹性理论的运动方程。采用傅里叶展开配点法,在满足多边形板不规则表面边界条件的情况下,得到了频率方程。用割线法求出频率方程的复根。对三角形、方形、五边形和六边形截面板进行了数值计算。给出了各种物理变量通过重力和不同边缘边界的图形表示,并讨论了其特征。该结果可用于多边形截面混凝土板的优化设计。
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