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首页> 外文期刊>Journal of Constructional Steel Research >Experimental study on continuous energy-dissipative steel columns under cyclic loading
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Experimental study on continuous energy-dissipative steel columns under cyclic loading

机译:循环荷载下连续耗能钢柱的试验研究

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This paper proposes a continuous energy-dissipative column (CEDC) system to improve the seismic resilience of framed structures. The CEDC system consists of two steel boundary columns connected by a series of replaceable steel strip dissipators (RSSD). The dual columns are continuous along the height of buildings and are connected by a rigid link at each storey level. The CEDC system is designed as a dual-function structural component under earthquake where inelastic deformation concentrates in the RSSDs, while the boundary columns remain elastic and sustain the gravity loads. Three full-scale cyclic loading tests are carried out to investigate the seismic behavior of CEDC systems and replaceability of RSSDs. The specimens differ in the distance between the dual columns, thickness and number of RSSDs, and loading schemes. The experimental results show that the proposed CEDC system has good load-bearing capacity and energy dissipation capacity. The equivalent damping ratios of all the specimens reach 0.4 for a storey drift ratio of 1/30. It was found that the boundary columns are in elastic when the steel strips first yield. The failure of CEDC systems is due to the ductile rupture of RSSDs rather than lateral or lateral-torsion buckling in them. Finite element models of CEDC systems are established and validated against experimental results. Parametric studies are carried out to investigate the effect of axial loads in the boundary columns on the seismic behavior of CEDC systems. The numerical results show that the ultimate capacity and post-yield stiffness of CEDC systems reduces as the axial load ratio increases due to the second order effect of gravity load. A simplified method to determine the design axial load ratio of CEDC under gravity loads is proposed and validated. (C) 2017 Elsevier Ltd, All rights reserved.
机译:本文提出了一种连续耗能柱(CEDC)系统,以提高框架结构的抗震能力。 CEDC系统由两个钢边界柱组成,这些柱由一系列可更换的钢带耗散器(RSSD)连接。双柱在建筑物的高度上是连续的,并且在每一层都通过刚性连杆连接。 CEDC系统设计为地震作用下的双重功能结构组件,其中非弹性变形集中在RSSD中,而边界柱保持弹性并承受重力载荷。进行了三个全面的循环载荷测试,以研究CEDC系统的抗震性能和RSSD的可替换性。样品在双列之间的距离,RSSD的厚度和数量以及加载方案方面有所不同。实验结果表明,所提出的CEDC系统具有良好的承载能力和消能能力。对于1/30的楼层漂移率,所有试样的等效阻尼比均达到0.4。发现当钢带第一次屈服时,边界柱是弹性的。 CEDC系统的失败是由于RSSD的延性破裂,而不是其中的横向或横向扭转屈曲。建立了CEDC系统的有限元模型,并针对实验结果进行了验证。进行了参数研究,以研究边界柱上的轴向载荷对CEDC系统地震行为的影响。数值结果表明,由于轴向载荷比的增加,由于重力载荷的二次效应,CEDC系统的极限承载力和屈服后刚度减小。提出并验证了确定重力作用下CEDC设计轴向载荷比的简化方法。 (C)2017 Elsevier Ltd,保留所有权利。

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