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A layered shear-flexural plate/shell element using Timoshenko beam functions for nonlinear analysis of reinforced concrete plates

机译:使用Timoshenko梁函数的层状剪切挠曲板/壳单元,用于钢筋混凝土板的非线性分析

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摘要

Based on Mindlin-Reissner thick plate theory and Timoshenko's composite beam functions, a unified displacement-based finite element formulation of a 4-node, 24-DOF rectangular layered plate element is developed in this paper for the nonlinear finite element analysis of thin to moderately thick isotropic plates and reinforced concrete slabs. Timoshenko's composite beam functions that have been successfully used in other applications are extended for the analysis of reinforced concrete slabs, being used herein to represent the bending behaviour of the proposed layered plate element. Shear deformation effects are included in the model and the notorious problem of shear-locking is avoided naturally since the deflection and rotation functions for the element boundary obtained from Timoshenko's composite beam functions converge theoretically to the thin plate solution when the plate thickness becomes very small. The convenient in-plane displacement functions for a quadrilateral plane element with drilling degrees of freedom are used for the in-plane displacements of the element. Both geometric nonlinearity and material nonlinearity, which incorporates tension, compression, concrete cracking and tension stiffening, are included in the model. A Total Lagrangian approach is employed to formulate the element for incorporation into a nonlinear finite element solution algorithm. Numerical examples of linear and geometric nonlinear analysis of thin to moderately thick isotropic plates and of reinforced concrete slabs are shown to demonstrate the efficacy of the proposed element.
机译:基于Mindlin-Reissner厚板理论和Timoshenko的复合梁函数,本文开发了一种基于位移的基于有限元的4节点,24自由度矩形层状板单元的有限元公式,用于薄到中度的非线性有限元分析厚的各向同性板和钢筋混凝土板。已在其他应用中成功使用的Timoshenko的复合梁功能扩展到了钢筋混凝土板的分析,在此用于表示所提出的层状板单元的弯曲行为。该模型包括剪切变形效应,并且当板厚变得非常小时,由于从Timoshenko的复合梁函数获得的元素边界的偏转和旋转函数理论上会收敛到薄板解,因此自然避免了臭名昭著的剪切锁定问题。具有钻削自由度的四边形平面元件的方便的平面内位移功能用于该元件的平面内位移。该模型包括几何非线性和材料非线性,其中包括张力,压缩,混凝土开裂和张力刚度。采用总拉格朗日方法来制定要纳入非线性有限元求解算法的元素。数值示例显示了从薄到中等厚度的各向同性板以及钢筋混凝土板的线性和几何非线性分析,以证明所提出的单元的有效性。

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