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Nonlinear fibre element modelling of RC bridge piers considering inelastic buckling of reinforcement

机译:考虑钢筋非弹性屈曲的钢筋混凝土桥墩非线性纤维单元建模

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An advanced modelling technique is developed to model the nonlinear cyclic response of circular RC columns using fibre-based section discretisation method. A comparison between different reinforcing steel models is made. Through a comprehensive parametric study the influence of inelastic buckling of vertical reinforcement on the cyclic response of circular RC columns is investigated. The results have been compared and validated against a set of experimental datasets. The proposed calibrated model accounts for the influence of inelastic buckling of vertical reinforcement and interaction of stiffness of horizontal ties reinforcement with vertical reinforcement. The model also accounts for the fracture of vertical bars due to low-cycle high-amplitude fatigue degradation. Therefore, this model is able to predict the nonlinear cyclic response of circular RC columns up to complete collapse. The results show that the existing uniaxial material models of reinforcing bars that are calibrated using stress-strain behaviour of isolated bars cannot represent the behaviour of reinforcing bars inside RC columns. Moreover, it is found that the buckling length of vertical reinforcement has a significant influence on the pinching response of RC columns and also reduces the low-cycle fatigue life of budded reinforcement. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了一种先进的建模技术,以基于纤维的截面离散化方法对圆形RC柱的非线性循环响应进行建模。比较了不同型号的钢筋。通过全面的参数研究,研究了竖向钢筋的非弹性屈曲对圆形RC柱周期响应的影响。已针对一组实验数据集对结果进行了比较和验证。提出的校准模型考虑了竖向钢筋的非弹性屈曲以及水平扎带钢筋与竖向钢筋的刚度相互作用的影响。该模型还考虑了由于低周高幅疲劳退化而导致的垂直钢筋断裂。因此,该模型能够预测圆形RC柱的非线性循环响应,直至完全崩溃。结果表明,现有的单根钢筋模型已通过隔离钢筋的应力-应变行为进行了校准,不能代表钢筋混凝土柱内钢筋的行为。此外,发现竖向钢筋的屈曲长度对RC柱的挤压响应具有显着影响,并且还降低了萌芽钢筋的低周疲劳寿命。 (C)2016 Elsevier Ltd.保留所有权利。

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