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A refined nonlocal isogeometric model for multilayer functionally graded graphene platelet-reinforced composite nanoplates

机译:多层功能梯质石墨烯血压复合材料纳孔板的一种精制的非局部异构型模型

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摘要

This article presents an effective and simple approach based on the four-variable refined plate theory (RPT) and isogeometric analysis (IGA) for bending and free vibration analyses of multilayer functionally graded graphene platelet-reinforced composite (FG GPLRC) nanoplates. The Eringen's nonlocal elasticity theory is employed to take account of the size-dependent effect of nanoplates. Different distribution patterns of graphene platelets (GPLs) including uniform and non-uniform in the polymer matrix are considered. Governing equations of FG GPLRC nanoplates are then deduced from the principle of virtual work and resolved utilizing NURBS basis functions in the IGA framework. Accordingly, the requirement of third-order derivatives of approximate variables in the nonlocal formulation is fulfilled. Obtained outcomes indicate that the GPLs reinforcement can dramatically improve the stiffness of nanoplates, and GPLs rich at the bottom and the top of the nanoplate can be considered as the best reinforcing effect. Several new results are also considered as benchmark solutions for further studies on the FG GPLRC nanoplates.
机译:本文提出了一种基于四变量精制板理论(RPT)和异诊测分析(IgA)的有效且简单的方法,用于多层功能梯形石墨烯血小板复合材料(FG GPLRC)纳米板的弯曲和自由振动分析。 eringen的非局部弹性理论用于考虑纳米板的尺寸依赖性效果。考虑了包括聚合物基质中均匀和不均匀的石墨烯血小板(GPLS)的不同分布图。然后从虚拟工作原理推导出FG GPLRC纳米板的控制方程,并在IGA框架中解决了NURBS基本函数的解决。因此,满足了非局部制剂中近似变量的三阶衍生物的要求。获得的结果表明,GPLS增强可以显着改善纳米板的刚度,并且可以认为含有含有底部的GPLS和纳米板的顶部可以被认为是最佳的增强效果。几种新结果也被认为是用于进一步研究FG GPLRC纳米板的基准解决方案。

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