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Experimental behavior of T-shaped concrete-filled steel tubular columns under diagonal cyclic loading

机译:斜循环载荷下T形混凝土钢管柱的实验行为

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T-shaped concrete-filled steel tubular (CFST) columns have the advantage of avoiding protrusion from walls and can be used as edge columns. The practical structures may be subjected to the earthquake action from different directions, but little attention has been paid to the behavior of T-shaped CFST columns under diagonal cydic loading. A total of 14 T-shaped CFST columns were tested under constant axial load and lateral cyclic loading. The main variables explored in the test were loading angle, axial load level, concrete compressive strength and section form. The failure mode, lateral load-lateral displacement hysteretic curves, envelope curves, stiffness degradation, ductility, cumulative energy dissipation, deformation and bending moment-curvature curves were investigated. The results show that the hysteretic curves are generally plump and the displacement ductility coefficients are over 3 for the specimens with the axial load levels of less than 0.5. The specimens at 45 degrees and 90 degrees have dose envelope curves, while the specimens at 0 degrees exhibit slightly lower lateral ultimate strength and better ductility. The existing codes such as Eurocode 4, AISC 360-10 and DBJ/T 13-51-2010 give obviously higher predictions of initial section flexural stiffness for stiffened specimens without an axial load and conservative predictions for most multi-cell specimens. Furthermore, the existing codes overestimate the serviceability-level section flexural stiffness for most specimens. (C) 2020 Elsevier Ltd. All rights reserved.
机译:T形混凝土填充钢管(CFST)柱具有避免墙壁突出的优点,可用作边缘柱。实际结构可以从不同方向进行地震作用,但是在对角枯燥的载荷下已经注意到T形CFST柱的行为很少。在恒定的轴向载荷和横向环状载荷下测试总共14个T形CFST柱。测试中探索的主要变量是装载角度,轴向载荷水平,混凝土抗压强度和截面形式。研究了失效模式,横向载荷横向位移滞回曲线,包络曲线,刚度降解,延展性,累积能量耗散,变形和弯曲力矩曲率曲线。结果表明,滞后曲线通常是丰满的,并且轴向载荷水平小于0.5的样品的位移延展性系数超过3。试样为45度和90度具有剂量包络曲线,而样品在0度下表现出略微较低的侧向极限强度和更好的延展性。现有代码,如EUROCODE 4,AISC 360-10和DBJ / T 13-51-2010明显更高的初始剖面弯曲刚度的预测,对于大多数多细胞样本,没有轴向载荷和保守预测。此外,现有的代码高估最多的MOTEMIMENS的弯曲刚度。 (c)2020 elestvier有限公司保留所有权利。

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