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An iterative finite difference scheme for buckling of graphene beam subject to axial compressive load

机译:轴向压缩载荷作用下石墨烯梁屈曲的迭代有限差分法

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In this paper buckling loads and modes of an Euler beam made of graphene are considered. An eigenvalue problem is formulated with an additional parameter representing material's elastoplasticity. Analytical approximate solution using the perturbation method is presented. This approximate solution is used as a basis for an iterative finite difference scheme to develop a more accurate solution. Deflection at points along the beam are calculated using this iterative finite difference scheme. Convergence with good accuracy is achieved.
机译:在本文中,考虑了由石墨烯制成的欧拉梁的屈曲载荷和模态。特征值问题由表示材料弹塑性的附加参数来表示。提出了使用摄动法的解析近似解。该近似解用作迭代有限差分方案的基础,以开发更精确的解。使用该迭代有限差分方案可计算沿梁点的挠度。实现了具有良好准确性的收敛。

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