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Large Deflection Static Analysis of A Cantilever Beam Subjected to A Point Load

机译:点载荷作用下悬臂梁的大挠度静力分析

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This work presents geometrically non-linear static analysis of a cantilever beam subjected to a non-follower transversal point load at the free end of the beam. The material of the beam is assumed as isotropic and hyperelastic. In this study, finite element model of the beam is constructed by using total Lagrangian finite element model of two dimensional continua for a twelve-node quadratic element. The considered highly nonlinear problem is solved by using incremental displacement-based finite element method in connection with Newton-Raphson iteration method. In the study, the effect of the large deflections and rotations on the displacements and the normal stress and the shear stress distributions through the thickness of the beam is investigated in detail. With the variation of the ratio of Lenght/height, the results of the total Lagrangian finite element model of two dimensional continua for a twelve-node quadratic element are compared with the results of SAP2000 packet program. Also, a few of the obtained results are compared with the previously published results. Numerical results indicate that with decrease the of ratio of lenght/height, using the total Lagrangian finite element model of two dimensional continua plays very important role in the static responses of the beam in geometrically non-linear static analysis.
机译:这项工作提出了悬臂梁在其自由端承受非跟随横向载荷的几何非线性静力分析。梁的材料被假定为各向同性和超弹性。在这项研究中,通过使用十二节点二次元的二维连续性的总拉格朗日有限元模型来构建梁的有限元模型。通过使用基于增量位移的有限元方法和Newton-Raphson迭代方法,可以解决所考虑的高度非线性问题。在研究中,详细研究了大挠度和旋转对梁厚度方向上位移,法向应力和剪应力分布的影响。随着长度/高度比的变化,将十二节点二次元的二维连续性总拉格朗日有限元模型的结果与SAP2000数据包程序的结果进行了比较。另外,将一些获得的结果与以前发布的结果进行比较。数值结果表明,随着长度/高度比的减小,二维连续谱的总拉格朗日有限元模型在几何非线性静力分析中对梁的静响应起着非常重要的作用。

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