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Seismic behavior of double steel plate-HSC composite walls

机译:双层钢板-HSC复合墙的抗震性能

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Double steel plate-high strength concrete composite wall (DSP-HSCW) is a new lateral force-resisting system, with concrete filled steel tube (CFST) column as boundary element. The wall combines the favorable strength and stiffness characteristics of high performance concrete (HSC) with the ductility of the steel plate. A series of tests were conducted to investigate the response of the DSP-HSCW system under cyclic loading. The parameters investigated in the tests included the axial-load ratio (applied axial load to bearing capacity) and the ratio of the tie bar spacing to steel plate thickness. The test results showed that unlike conventional HSC walls, the wall specimens exhibited high strength as well as excellent deformation capacity. The wall specimens with large height-to-width ratio showed flexure-dominated behavior through cantilever action. The primary failure mode is axial-flexural mode, which is characterized by local buckling of the steel plates followed by compressive crushing of concrete at the wall bottom. The axial-load ratio has a significant effect on the strength and deformation capacity of DSP-HSCW system. To enhance deformation capacity to meet a specific demand, the ratio of the tie bar spacing to steel plate thickness should be reduced. The paper adds to existing research database on the performance of DSP-HSCW under lateral demands and provide valuable insight on the performance of such system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:双层钢板-高强度混凝土复合墙(DSP-HSCW)是一种新型的横向抗力体系,以钢管混凝土(CFST)柱为边界元素。墙结合了高性能混凝土(HSC)的良好强度和刚度特性以及钢板的延展性。进行了一系列测试以研究DSP-HSCW系统在循环负载下的响应。测试中研究的参数包括轴向载荷比(施加的轴向载荷与承载力)以及拉杆间距与钢板厚度的比值。测试结果表明,与传统的HSC墙不同,墙样品显示出高强度以及出色的变形能力。高与宽之比大的墙试样通过悬臂作用表现出弯曲为主的行为。主要的破坏模式是轴向弯曲模式,其特征是钢板局部屈曲,然后在墙体底部压碎混凝土。轴向载荷比对DSP-HSCW系统的强度和变形能力有重要影响。为了提高变形能力以满足特定需求,应减小拉杆间距与钢板厚度的比率。该文件增加了有关横向需求下DSP-HSCW性能的现有研究数据库,并提供了有关该系统性能的宝贵见解。 (C)2015 Elsevier Ltd.保留所有权利。

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