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Three-dimensional finite element analysis of circular reinforced concrete column confined with FRP using plasticity model

机译:圆形钢筋混凝土柱用塑性模型与FRP限制的三维有限元分析

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A prediction of reinforced concrete column capacity confined with FRP remains one of the challenging research area. One of the challenges are the inaccuracy of the effective confinement area of the concrete core which is used to estimate the reinforced concrete (RC) columns capacity. Considering these challenges, the use of plasticity model to predict the behavior of FRP wrapped RC column is a very attractive solution. In this study, a three dimensional non-linear finite element analysis based on plasticity formulation is presented. The proposed flow rule is able to automatically adjust the dilation rate of concrete from the state of active to passive confinement and vice versa. The flow rule has a specific dilation rate formulation that includes the lateral modulus (El) parameter to observe the confinement effectiveness. This study focuses on the modelling of circular reinforced concrete column confined with FRP using FEM. The steel rebar is modelled as a truss element with elastic-perfectly plastic material behavior. Both the concrete and FRP elements are modelled as 8-noded hexahedral element. FRP elements are considered as transversally isotropic material with determined fibers orientation. The non-linear analysis performed using the finite element code developed by the authors. For comparisons, a validation of the predicted stress-strain responses with the experimental results are presented.
机译:预测FRP限制的钢筋混凝土柱容量仍然是一个具有挑战性的研究区之一。其中一个挑战是混凝土芯的有效限制面积的不准确,用于估计钢筋混凝土(RC)柱容量。考虑到这些挑战,使用可塑性模型来预测FRP包装RC色谱柱的行为是一个非常有吸引力的解决方案。在该研究中,提出了一种基于可塑性制剂的三维非线性有限元分析。所提出的流量规则能够自动从主动禁闭状态自动调整混凝土的扩张速率,反之亦然。流量规则具有特定的扩张速率制剂,其包括横向模量(EL)参数来观察限制效果。本研究重点研究了使用FEM掺入FRP的圆形钢筋混凝土柱的建模。钢筋钢筋采用桁架元件,具有弹性 - 完美的塑料材料行为。混凝土和FRP元素都被建模为8点发表的六面向元素。 FRP元素被认为是具有确定纤维取向的横向各向同性的材料。使用作者开发的有限元代码执行的非线性分析。为了比较,提出了对实验结果的预测应力应变响应的验证。

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