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Nonlinear analysis of size-dependent annular sector and rectangular microplates under transverse loading and resting on foundations based on the modified couple stress theory

机译:基于修正耦合应力理论的横向荷载作用下基于尺寸的环形扇形和矩形微板非线性分析

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摘要

The nonlinear behavior of annular sector microplates remains poorly understood. In this study, a non-classical model for nonlinear bending analysis of annular sector microplates under transverse mechanical loading is developed based on the modified couple stress theory and the first-order shear deformation theory with von Karman nonlinearity. The model captures the size effect by a material length scale parameter. Using the principle of minimum total potential energy, the equilibrium equations and boundary conditions are obtained. The equilibrium equations are discretized according to the generalized differential quadrature method and are solved using the Newton's technique. By a proper change in the geometric parameters of annular sector plates, the results are extended to nonlinear analysis of square microplates under transverse loading. It is assumed that the microplates are resting on the nonlinear elastic foundations. The present results are verified by comparison with existing results in the literature. The effects of nonlinearity, length scale parameter, foundation parameters and geometric parameters on deflections of annular sector and square microplates subjected to distributed transverse loading are studied.
机译:环形扇形微板的非线性行为仍然知之甚少。在这项研究中,基于修正的耦合应力理论和具有冯·卡曼非线性的一阶剪切变形理论,建立了一个非经典模型,用于在横向机械载荷下对环形扇形微板进行非线性弯曲分析。该模型通过材料长度比例参数捕获尺寸效果。利用最小总势能原理,得到了平衡方程和边界条件。平衡方程根据广义微分正交方法离散化,并使用牛顿技术求解。通过适当改变环形扇形板的几何参数,将结果扩展到横向载荷下方形微板的非线性分析。假定微板位于非线性弹性基础上。通过与文献中的现有结果进行比较来验证当前结果。研究了非线性,长度尺度参数,基础参数和几何参数对承受横向分布载荷的环形扇形和方形微板挠度的影响。

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