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A layered cylindrical quadrilateral shell element for nonlinear analysis of RC plate structures

机译:用于RC板结构非线性分析的层状圆柱四边形壳单元

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摘要

This paper proposes a simple and accurate 4-node, 24-DOF layered quadrilateral flat plate/shell element, and an efficient nonlinear finite element analysis procedure, for the geometric and material nonlinear analysis of reinforced concrete cylindrical shell and slab structures. The model combines a 4-node quadrilateral membrane element with drilling or rotational degrees of freedom, and a refined non-conforming 4-node 12-DOF quadrilateral plate bending element RPQ4, so that displacement compatibility along the interelement boundary is satisfied in an average sense. The element modelling consists of a layered system of fully bonded concrete and equivalent smeared steel reinforcement layers, and coupled membrane and bending effects are included. The modelling accounts for geometric non-linearity with large displacements (but moderate rotations) as well as short-term material nonlinearity that incorporates tension, cracking and tension stiffening of the concrete, biaxial compression and compression yielding of the concrete and yielding of the steel. An updated Lagrangian approach is employed to solve the nonlinear finite element stiffness equations. Numerical examples of two reinforced concrete slabs and of a shallow reinforced concrete arch are presented to demonstrate the accuracy and scope of the layered element formulation.
机译:本文提出了一种简单,准确的4节点,24自由度分层四边形平板/壳单元,以及一种有效的非线性有限元分析程序,用于钢筋混凝土圆柱壳和平板结构的几何和材料非线性分析。该模型将具有钻孔或旋转自由度的4节点四边形膜单元与精致的不合格4节点12自由度四边形板弯曲单元RPQ4结合在一起,从而在平均意义上满足了沿元素边界的位移兼容性。元素建模由完全粘结的混凝土和等效的涂抹钢增强层的分层系统组成,并包括耦合的膜和弯曲效果。该模型考虑了具有大位移(但旋转中等)的几何非线性以及短期材料非线性,该非线性包括混凝土的拉伸,开裂和拉伸刚度,混凝土的双轴压缩和压缩屈服以及钢材的屈服。采用更新的拉格朗日方法来求解非线性有限元刚度方程。给出了两个钢筋混凝土平板和一个浅钢筋混凝土拱门的数值实例,以证明分层元素公式的准确性和范围。

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