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Gravity load effects on the behaviour of reinforced concrete beam critical zones subjected to cyclic loads

机译:重力荷载对循环荷载作用下钢筋混凝土梁临界区性能的影响

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摘要

The aim of the present study was to proceed to a numerical analysis of the gravity load effects on the behaviour of reinforced concrete beam critical zones when subjected to cyclic loads. A parametric study to assess the influence of different levels of gravity load on RC beam critical zones subjected to cyclic loading was carried out. For this purpose, assuming the level of gravity load as a variable parameter, a nonlinear numerical model of a beam-column connection, previously calibrated with experimental data, was used. In order to evaluate the gravity load effects in the global response, a numerical study of a RC frame system is also presented. The numerical results are analysed in terms of global hysteretic response, accumulated energy dissipation and equivalent viscous damping ratio. In this numerical study, it was observed that the hysteretic response depends on the load path. In the presence of higher gravity load levels, the structure hysteretic behaviour exhibits higher damage levels, associated to a failure mechanism corresponding to the formation of four span plastic hinges. Thus, the proper test procedure should involve the imposition of a reverse cyclic displacement history starting each cycle from the gravity load effects.
机译:本研究的目的是对承受周期性荷载时重力荷载对钢筋混凝土梁临界区性能的影响进行数值分析。进行了参数研究,以评估不同水平的重力载荷对承受周期性载荷的RC梁临界区的影响。为此,假设重力载荷的大小为可变参数,则使用事先用实验数据校准过的梁柱连接的非线性数值模型。为了评估重力响应在整体响应中的作用,还对钢筋混凝土框架系统进行了数值研究。根据整体滞后响应,累积能量耗散和等效粘性阻尼比对数值结果进行了分析。在此数值研究中,观察到滞后响应取决于负载路径。在较高的重力载荷水平下,结构的滞后行为表现出较高的破坏水平,这与对应于四跨度塑料铰链形成的失效机理有关。因此,适当的测试程序应包括从重力荷载作用开始的每个循环开始施加反向循环位移历史。

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