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Nonlocal postbuckling analysis of graphene sheets with initial imperfection based on first order shear deformation theory

机译:基于一阶剪切变形理论的初始缺陷石墨烯片的非局部后屈曲分析

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In this paper, the first order shear deformation theory (FSDT) is used to investigate the postbuckling behavior of orthotropic single-layered graphene sheet (SLGS) under in-plane loadings. Nonlocal elasticity theory and von-Karman nonlinear model in combination with the isogeometric analysis (IGA) have been applied to study the postbuckling characteristics of SLGSs. In contrast to the classical model, the nonlocal continuum model developed in this work considers the size-effects on the postbuckling characteristics of SLGSs. FSDT takes into account effects of shear deformations through-the-thickness of plate. Geometric imperfection which is defined as a very small transverse displacement of the mid-plane is applied on undeformed nanoplate to create initial deviation in graphene sheet from being perfectly flat. Nonlinear governing equations of motion for SLGS are derived from the principle of virtual work and a variational formulation. At the end, the results are presented as the postbuckling equilibrium paths of SLGS. The influence of various parameters such as edge length, nonlocal parameter, compression ratio, boundary conditions and aspect ratio on the postbuckling path is investigated. The results of this work show the high accuracy of nonlocal FSDT-based analysis for postbuckling behavior of graphene sheets.
机译:本文采用一阶剪切变形理论(FSDT)研究正交各向异性单层石墨烯片(SLGS)在平面载荷下的后屈曲行为。非局部弹性理论和von-Karman非线性模型与等几何分析(IGA)相结合已用于研究SLGS的后屈曲特性。与经典模型相比,本文中开发的非局部连续模型考虑了大小对SLGS后屈曲特性的影响。 FSDT考虑了整个板厚度的剪切变形的影响。定义为中平面非常小的横向位移的几何缺陷会被施加到未变形的纳米板上,从而在石墨烯片中产生从完全平坦开始的初始偏差。 SLGS的非线性运动控制方程式是根据虚拟功原理和变分公式得出的。最后,结果表示为SLGS的后屈曲平衡路径。研究了诸如边长,非局部参数,压缩比,边界条件和长宽比等各种参数对后屈曲路径的影响。这项工作的结果表明,基于非局部FSDT的石墨烯片的后屈曲行为分析具有很高的准确性。

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