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Meshfree radial point interpolation method for the vibration and buckling analysis of FG-GPLRC perforated plates under an in-plane loading

机译:网上载荷下FG-GPLRC穿孔板振动和屈曲分析的网状径向点插值方法

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摘要

A meshfree radial point interpolation method (RPIM) based on a higher-order shear deformation theory (HSDT) is here developed to investigate the free vibration and buckling behavior of multilayer functionally graded graphene platelets reinforced composite (FG-GPLRC) perforated plates under an in-plane edge loading. The non-uniform initial stresses in the multilayer FG-GPLRC perforated plates are evaluated accurately by solving the equilibrium equations derived from the same approach. The mixed collocation-Lagrange multiplayer technique is employed to enforce the various boundary conditions. The multilayer FG-GPLRC plates are built up as perfectly-bonded composite layers reinforced with a uniform distribution of graphene platelets (GPLs), randomly oriented. Perforated plates with three different cut-out shapes are analyzed. Several numerical examples are provided to demonstrate the high performance, the fast convergence rate and the high accuracy of the proposed method. Then, we study the influence of different GPLs distribution patterns, GPLs weight fraction, shape and size of cut-outs on the free vibration and buckling behavior of the multilayer FG-GPLRC perforated plates under an in-plane edge loading.
机译:基于高阶剪切变形理论(HSDT)的网上辐射点插值方法(RPIM)在此开发用于研究多层功能渐进的石墨烯血小板增强复合材料(FG-GPLRC)穿孔板的自由振动和屈曲行为-plane边缘加载。通过求解来自相同方法的平衡方程,精确地评估多层FG-GPLRC穿孔板中的不均匀初始应力。使用混合搭配拉格朗日多人技术来强制实施各种边界条件。多层FG-GPLRC板基于随机取向的石墨烯血小板(GPLS)均匀分布的完美粘合的复合层。分析了具有三种不同切除形状的穿孔板。提供了几个数值示例以展示高性能,快速收敛速率和所提出的方法的高精度。然后,我们研究不同GPLS分布图案,GPLS重量分数,形状和尺寸的影响对在面内边缘负载下的多层FG-GPLRC穿孔板的自由振动和屈曲行为上的影响。

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