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Seismic behaviour of innovative composite walls with high-strength manufactured sand concrete

机译:高强度人造砂混凝土的新型复合墙的抗震性能

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Reinforced concrete (RC) walls have been widely used in tall building construction to resist lateral loads. However, RC walls behave low ductility and limited deformation capacity under high axial force ratio. Due to the brittle behaviour of high-strength concrete, it was seldom used in RC walls though it has a vast of merits compared with normal-strength concrete. To further push up the limit of concrete strength, i.e., beyond 80 MPa in practical wall construction and to figure out a possible alternative of river sand due to the sustainability and environmental friendly requirement, an innovative wall, namely ring-stirrup concrete-filled-steel-tube (CFST) composite wall with high-strength manufactured sand concrete is proposed. The proposed composite wall consists of two CFST columns embedded at each boundary element and several stirrups in the form of continuous ring along the entire section. A series of quasi-static tests based on orthogonal experimental design method (Taguchi method) are conducted to investigate the seismic behaviour of the composite walls. The experimental parameters are axial force ratio, steel ratio in CFST columns and volume ring-stirrup ratio. From the experimental tests, it is concluded that the proposed confining schemes are highly effective in improving the seismic behaviour of the walls. Moreover, the effects of these three parameters on the peak strength, ductility and energy dissipation capacity of the walls have been investigated. Finally, a design approach considering the confinement effect of CFST columns is proposed and verified to evaluate the lateral load-carrying capacity of the proposed walls.
机译:钢筋混凝土(RC)墙已广泛用于高层建筑中,以抵抗侧向载荷。但是,RC壁在高轴向力比下表现出较低的延展性和有限的变形能力。由于高强度混凝土的脆性,尽管它与普通强度混凝土相比具有很多优点,但很少用于钢筋混凝土墙。为了进一步提高混凝土强度的极限值,即在实际墙体施工中超过80 MPa,并由于可持续性和环保要求,找出可能的河砂替代品,采用了创新型墙体,即环箍筋混凝土填充墙,提出了高强度人造砂混凝土钢管复合墙。拟议的复合墙包括两个CFST柱,每个柱都嵌有CFST柱,沿整个截面呈连续环形式的几个箍筋。进行了一系列基于正交试验设计方法(田口法)的准静态试验,以研究复合墙的抗震性能。实验参数为轴向力比,CFST柱中的钢比和体积环箍筋比。从实验结果可以得出结论,提出的约束方案在改善墙体的抗震性能方面非常有效。此外,还研究了这三个参数对墙的峰值强度,延展性和能量耗散能力的影响。最后,提出并考虑了CFST柱约束作用的设计方法,并进行了验证,以评估所提议墙体的侧向承载能力。

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