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Buckling analysis of micro-ano-scale plates based on two-variable refined plate theory incorporating nonlocal scale effects

机译:基于包含非局部尺度效应的二变量精制板理论的微/纳米板屈曲分析

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This article presents the buckling analysis of isotropic nanoplates using the two variable refined plate theory and nonlocal small scale effects. The two variable refined plate theory takes account of transverse shear effects and parabolic distribution of the transverse shear strains through the thickness of the plate, hence it is unnecessary to use shear correction factors. Nonlocal governing equations of motion for the nanoplate are derived from the principle of virtual displacements. The closed-form solution for buckling load of a simply supported rectangular nanoplate subjected to in-plane loading has been obtained by using the Navier's method. Numerical results obtained by the present theory are compared with available exact solutions in the literature. The effect of nonlocal scaling parameter, mode numbers and aspect ratios of the nanoplates on buckling load are investigated and discussed in detail in the present work. It can be concluded that the present theory, which does not require shear correction factor, is not only simple but also comparable to the first-order and higher order shear deformable theory.
机译:本文介绍了使用两个变量精制板理论和非局部小尺度效应的各向同性纳米板的屈曲分析。二次变量精化板理论考虑了横向剪切效应和贯穿板厚度的横向剪切应变的抛物线分布,因此无需使用剪切校正因子。纳米板的非局部控制运动方程式是根据虚拟位移原理导出的。通过使用Navier方法,获得了承受平面内载荷的简单支撑矩形纳米板屈曲载荷的闭合形式解。通过本理论获得的数值结果与文献中可用的精确解进行了比较。在本工作中,研究并讨论了非局部缩放参数,模式数和纳米板的长宽比对屈曲载荷的影响。可以得出结论,不需要剪切校正因子的本理论不仅简单,而且可以与一阶和更高阶剪切变形理论相比较。

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