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Hysteresis modelling of reinforced concrete columns under pure cyclic torsional loading

机译:钢筋混凝土柱在纯循环荷载作用下的滞后模型

摘要

It has been observed in the past that, the reinforced concrete (RC) bridge columns are very often subjected to torsional moment in addition to flexure and shear during seismic vibration. Ignoring torsion in the design can trigger unexpected shear failure of the columns (Farhey et al. 1993). Performance based seismic design is a popular design philosophy which calls for accurate prediction of the hysteresis behavior of structural elements to ensure safe and economical design under earthquake loading. However, very few investigations in the past focused on the development of analytical models to accurately predict the response of RC members under cyclic torsion. Previously developed hysteresis models are not readily applicable for torsional loading owing to significant pinching and stiffness degradation associated with torsion (Wang et al. 2014). The present study proposes an improved polygonal hysteresis model which can accurately predict the hysteretic behavior of RC circular and square columns under torsion. The primary curve is obtained from mechanics based softened truss model for torsion. The proposed model is validated with test data of two circular and two square columns. A good correlation is observed between the predicted and measured torque-twist behavior and dissipated energy.
机译:过去已经观察到,钢筋混凝土(RC)桥柱在地震振动过程中,除了挠曲和剪切作用之外,还经常遭受扭转力矩。忽略设计中的扭转会触发圆柱的意外剪切破坏(Farhey等,1993)。基于性能的抗震设计是一种流行的设计理念,要求准确预测结构元件的滞后行为,以确保在地震荷载下进行安全,经济的设计。但是,过去很少有研究侧重于分析模型的开发,以准确预测钢筋混凝土构件在周期性扭转下的响应。先前开发的磁滞模型由于与扭转相关的明显收缩和刚度下降而不适用于扭转载荷(Wang等人,2014)。本研究提出了一种改进的多边形滞后模型,该模型可以准确地预测钢筋混凝土圆柱和方柱在扭转作用下的滞后行为。主曲线是从基于力学的扭转软化桁架模型获得的。利用两个圆形和两个方形柱的测试数据验证了所提出的模型。在预测和测量的扭矩扭转行为与耗散的能量之间观察到良好的相关性。

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