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A new triangular layered plate element for the non-linear analysis of reinforced concrete slabs

机译:钢筋混凝土楼板非线性分析的新型三角形层板单元

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A new 3-node, 18-DOF triangular layered plate element is developed in this paper for the geometric and material non-linear analysis of isotropic plates and reinforced concrete slabs under service loads. The proposed model is a combination of Allman's 3-node, 9-DOF triangular membrane element with drilling degrees of freedom and the refined non-conforming 3-node, 9-DOF triangular plate-bending element RT9 in order to account for the coupling effects between membrane and bending actions. The element is modelled as a layered system of concrete and equivalent smeared steel reinforcement layers, and perfect bond is assumed between the concrete layers and the smeared steel layers. The maximum normal stress criterion is employed to detect cracking of the concrete, and a smeared fixed crack model is assumed. Both geometric non-linearity with large displacements but moderate rotations and material non-linearity, which incorporates tension, compression, concrete cracking and tension stiffening, are included in the model. An updated Lagrangian approach is employed as a solution strategy for the non-linear finite element analysis and a numerical example of reinforced concrete slab is given to demonstrate the efficacy of this robust element.
机译:本文开发了一种新型的三节点,18自由度三角形层状板单元,用于在服务载荷下各向同性板和钢筋混凝土板的几何和材料非线性分析。所提出的模型是结合了具有钻孔自由度的3节点9自由度三角形膜元件和精制的不合格3节点9自由度三角形板弯曲元件RT9的组合,从而考虑了耦合效应在膜和弯曲动作之间。该单元被建模为混凝土和等效涂抹钢加强层的分层系统,并且假定混凝土层与涂抹钢层之间具有完美的结合。采用最大法向应力准则来检测混凝土的开裂,并假定涂上了固定的开裂模型。该模型既包括位移较大但旋转适中的几何非线性,又包括拉伸,压缩,混凝土开裂和拉伸刚度的材料非线性。采用更新的拉格朗日方法作为非线性有限元分析的求解策略,并给出了钢筋混凝土板的数值示例,以证明该鲁棒单元的有效性。

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