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Nonlinear bending analysis of orthotropic nanoscale plates in an elastic matrix based on nonlocal continuum mechanics

机译:基于非局部连续介质力学的正交各向异性纳米板在弹性矩阵中的非线性弯曲分析

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In this paper, nonlinear bending behavior of the orthotropic single layered graphene sheet (SLGS) subjected to a transverse uniform load and resting on an elastic matrix as Pasternak foundation model is investigated using the nonlocal elasticity theory. The nanoplate equilibrium equations are derived in terms of the generalized displacements based on first-order shear deformation theory (FSDT) using the nonlocal differential constitutive relations of Eringen and the von Karman nonlinear strains. The differential quadrature (DQ) discretized form of the governing equations with the various types of boundary conditions are derived. The Newton-Raphson iterative scheme is employed to solve the resulting system of nonlinear algebraic equations. Numerical results obtained by the present theory are compared with available solutions in the literature and those developed by finite difference method (FDM) and dynamic relaxation method (DRM) in this work. Excellent agreement between the results of different solution method and presented results is observed. Finally, effects of small scale parameter, width ratio, thickness of plate, elastic foundation properties, load value, boundary conditions and nonlinearity are studied for both nonlocal FSDT and classical plate theory (CPT) in detail.
机译:本文利用非局部弹性理论研究了正交各向异性正交各向异性单层石墨烯薄板(SLGS)在横向均匀载荷作用下并基于弹性矩阵的非线性弯曲行为。基于一阶剪切变形理论(FSDT),使用Eringen和von Karman非线性应变的非局部微分本构关系,根据广义位移导出了纳米板平衡方程。推导了具有各种边界条件的控制方程的微分正交(DQ)离散形式。牛顿-拉夫森迭代方案用于求解非线性代数方程组的结果。通过本理论获得的数值结果与文献中的可用解决方案进行了比较,并通过有限差分法(FDM)和动态松弛法(DRM)进行了研究。观察到不同解决方法的结果与给出的结果之间的极好的一致性。最后,详细研究了非局部FSDT和经典板理论(CPT)的小比例参数,宽度比,板厚,弹性基础特性,载荷值,边界条件和非线性的影响。

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