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Hysteretic behavior of multi-cell L-shaped concrete-filled steel tubular columns at different loading angles

机译:L形钢管混凝土多孔柱在不同荷载角下的滞回性能

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Multi-cell L-shaped concrete-filled steel tubular (CFST) columns have the advantages of avoiding column protrusion, saving room space and good mechanical behavior. They can be used as the corner columns in building structures. In practical engineering, the columns may be subjected to earthquake action from different directions. However, there are few experimental and numerical studies on this kind of columns at different loading angles. This paper presents four tests carried out on multi-cell L-shaped CFST columns subjected to combined constant compression and lateral cyclic loads. The main variables were loading angles (0 degrees, 45 degrees and 135 degrees) and axial load levels (0.25 and 0.5). The failure modes, lateral load - displacement hysteretic curves, envelope curves, stiffness degradation, ductility, energy dissipation, deformation and moment - curvature curves were obtained. A finite element model was developed to simulate the multi-cell L-shaped CFST columns at different loading angles, and the predicted results agreed well with the test results. Moreover, the parametric analysis was conducted to investigate the effects of various parameters on lateral load - displacement curves of the columns under diagonal loading.
机译:L型钢管混凝土多孔柱(CFST)具有避免柱突出,节省空间和良好机械性能的优点。它们可用作建筑结构中的角柱。在实际工程中,圆柱可能会受到来自不同方向的地震作用。但是,很少有人在不同的加载角度下对这种色谱柱进行实验和数值研究。本文介绍了在多单元L形CFST柱上进行的四个试验,这些柱承受了恒定的压缩力和横向循环载荷的共同作用。主要变量是负载角(0度,45度和135度)和轴向负载水平(0.25和0.5)。获得了破坏模式,横向载荷-位移滞后曲线,包络线,刚度降低,延展性,能量耗散,变形和力矩-曲率曲线。建立了有限元模型,以模拟在不同加载角度下的多单元L形CFST柱,预测结果与试验结果吻合良好。此外,进行了参数分析,以研究各种参数对斜向荷载作用下柱的横向荷载-位移曲线的影响。

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