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Hygrothermal effects on static stability of embedded single-layer graphene sheets based on nonlocal strain gradient elasticity theory

机译:基于非局部应变梯度弹性理论的湿热对嵌入单层石墨烯片静态稳定性的影响

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摘要

This article develops a nonlocal strain gradient plate model for buckling analysis of graphene sheets under hygrothermal environments. For more accurate analysis of graphene sheets, the proposed theory contains two scale parameters related to the nonlocal and strain gradient effects. Graphene sheet is modeled via a two-variable shear deformation plate theory needless of shear correction factors. Governing equations of a nonlocal strain gradient graphene sheet on elastic substrate are derived via Hamilton?s principle. Galerkin?s method is implemented to solve the governing equations for different boundary conditions. Effects of different factors such as moisture concentration rise, temperature rise, nonlocal parameter, length scale parameter, elastic foundation and geometrical parameters on buckling characteristics a graphene sheets are examined.
机译:本文开发了一种非局部应变梯度板模型,用于在湿热环境下对石墨烯片进行屈曲分析。为了更精确地分析石墨烯片,提出的理论包含了两个与非局部和应变梯度效应相关的尺度参数。石墨烯片材是通过二变量剪切变形板理论建模的,不需要剪切校正因子。通过汉密尔顿原理推导了弹性基底上非局部应变梯度石墨烯片的控制方程。实施Galerkin方法来求解不同边界条件下的控制方程。考察了诸如水分浓度升高,温度升高,非局部参数,长度比例参数,弹性基础和几何参数等不同因素对石墨烯片的屈曲特性的影响。

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