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A new approach for bending analysis of bilayer conical graphene panels considering nonlinear van der Waals force

机译:考虑非线性范德华力的双层锥形石墨烯板弯曲分析的新方法

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摘要

In the present study, the effects of nonlinear van der Waals forces on the bending analysis of orthotropic bilayer conical graphene panels are investigated. In order to model the nano-sized panels, the first-order shear deformation shell theory is used to obtain the governing equations by applying energy method in nonlocal form. Semi-analytical polynomial method (SAPM) is utilized to solve the resulting nonlinear governing equations. Due to cover a wide range of geometric shapes, the geometry is considered as a conical panel, so the results can be simulated for cylindrical panels, annular sectors, and even rectangular plates. The van der Waals force between upper and lower layers of graphene panel is simulated by an extension spring with the linear and nonlinear stiffness. It is easy to obtain the results of single-layer panels by eliminating the van der Waals force, and also for macroscopic plates, with neglecting the nonlocal effects. Finally, the affecting parameters on the results are examined in detail such as the plate size, orthotropic effects of material, nonlocal effects, van der Waals force including its nonlinear term and various types of boundary conditions, even the free edges.
机译:在本研究中,研究了非线性范德华力对正交各向异性双层圆锥形石墨烯面板弯曲分析的影响。为了对纳米尺寸的面板进行建模,采用一阶剪切变形壳理论通过采用非局部形式的能量方法获得控制方程。使用半解析多项式方法(SAPM)来求解所得的非线性控制方程。由于涵盖了广泛的几何形状,因此该几何被认为是圆锥形面板,因此可以对圆柱面板,环形扇形甚至矩形面板进行仿真。通过具有线性和非线性刚度的拉伸弹簧模拟石墨烯面板上下层之间的范德华力。通过消除范德华力以及不考虑非局部效应的宏观板,很容易获得单层板的结果。最后,详细检查了影响结果的参数,例如板尺寸,材料的正交各向异性效应,非局部效应,范德华力(包括其非线性项)以及各种类型的边界条件,甚至是自由边缘。

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