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Seismic behavior of composite shear walls incorporating concrete-filled steel and FRP tubes as boundary elements

机译:以钢管混凝土和FRP管为边界元的复合剪力墙的抗震性能

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A new form of a composite shear wall consisting of a reinforced concrete (RC) wall web and two boundary columns, in the form of square concrete-filled steel tubes (CFST) incorporating a carbon fiber reinforced polymer (CFRP)-confined concrete core, is proposed in this study. To evaluate its seismic performance, the proposed shear wall was tested under constant axial compression force and lateral cyclic loading. Three additional shear walls with different boundary column configurations were also tested: (i) an ordinary shear wall, (ii) a shear wall with CFST boundary columns, and (iii) a shear wall with double-skin CFST boundary columns. The failure mode, load-bearing capacity, ductility, energy dissipation capacity, stiffness degradation, strength degradation, and deformation mode of the four shear walls were thoroughly examined and compared. The results show that the deformation of the proposed shear wall was dominated by bending and that the distribution of axial strain generally satisfied the plane section assumption. The results also show that the seismic performance of the proposed shear wall was superior to that of the ordinary shear wall and the shear wall with CFST boundary columns. The proposed shear wall had the similar load-bearing capacity as the shear wall with double-skin CFST columns, but it had better ductility and larger dissipation capacity. This pilot study demonstrates that the composite shear wall has good potential for improving the performance of buildings constructed in seismic regions.
机译:一种新型的复合剪力墙,由钢筋混凝土(RC)墙腹板和两个边界柱组成,采用方形钢管混凝土(CFST)的形式,并结合了碳纤维增强聚合物(CFRP)约束的混凝土芯,在这项研究中提出。为了评估其抗震性能,建议的剪力墙在恒定的轴向压缩力和横向循环荷载下进行了测试。还测试了三种其他具有不同边界柱构型的剪力墙:(i)普通剪力墙,(ii)具有CFST边界柱的剪力墙,和(iii)具有双层CFST边界柱的剪力墙。彻底检查并比较了四个剪力墙的破坏模式,承载能力,延展性,能量耗散能力,刚度退化,强度退化和变形模式。结果表明,拟议剪力墙的变形主要由弯曲引起,轴向应变的分布通常满足平面截面的假设。结果还表明,所提出的剪力墙的抗震性能优于普通剪力墙和带CFST边界柱的剪力墙。拟议的剪力墙具有与双壁CFST柱剪力墙相似的承载能力,但具有更好的延展性和更大的耗散能力。这项初步研究表明,复合剪力墙具有改善地震地区建筑性能的良好潜力。

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