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A novel shear deformation theory for buckling analysis of single layer graphene sheet based on nonlocal elasticity theory

机译:基于非局部弹性理论的单层石墨烯片屈曲分析的新剪切变形理论

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In this paper, a novel simple shear deformation theory for buckling analysis of single layer graphene sheet is formulated using the nonlocal differential constitutive relations of Eringen. The present theory involves only three unknown and three governing equation as in the classical plate theory, but it is capable of accurately capturing shear deformation effects, instead of five as in the well-known first shear deformation theory (FSDT) and higher-order shear deformation theory (HSDT). A shear correction factor is, therefore, not required. Nonlocal elasticity theory is employed to investigate effects of small scale on buckling of the rectangular nano-plate. The equations of motion of the nonlocal theories are derived and solved via Navier's procedure for all edges simply supported boundary conditions. The results are verified with the known results in the literature. The influences played by Effects of nonlocal parameter, length, thickness of the graphene sheets and shear deformation effect on the critical buckling load are studied. Verification studies show that the proposed theory is not only accurate and simple in solving the buckling nanoplates, but also comparable with the other higher-order shear deformation theories which contain more number of unknowns.
机译:本文利用Eringen的非局部微分本构关系,提出了一种新颖的简单剪切变形理论,用于单层石墨烯片的屈曲分析。本理论仅涉及三个未知量和三个控制方程,就像经典板理论中一样,但是它能够准确地捕获剪切变形效应,而不是众所周知的第一剪切变形理论(FSDT)和高阶剪切中的五个控制方程。变形理论(HSDT)。因此,不需要剪切校正因子。非局部弹性理论被用来研究小尺寸对矩形纳米板屈曲的影响。对于所有边缘简单支持的边界条件,通过Navier程序推导并求解了非局部理论的运动方程。结果用文献中的已知结果验证。研究了非局部参数,石墨烯片的长度,厚度以及剪切变形对临界屈曲载荷的影响。验证研究表明,所提出的理论不仅在求解屈曲纳米板上是准确而简单的,而且可以与包含更多未知数的其他高阶剪切变形理论相提并论。

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