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Experimental study on seismic behaviour of an innovative composite shear wall

机译:新型复合剪力墙抗震性能的试验研究

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To improve the strength and ductility of the core walls in high-rise buildings which would be subjected to combined high axial compressive force and bending moment during the earthquake, an innovative concrete filled double-skin steel-plate composite (CFDSC) wall is proposed. The CFDSC wall is composed of the concrete filled double-skin steel-plate wall body with transverse stiffeners, vertical diaphragms and distributed batten plates welding on the internal surface of the double steel plates, and the concrete filled steel tube (CFST) columns including a pair of CFST columns positioned at the end of the cross section as boundary elements and an additional one located in the central section of the wall. Five CFDSC wall specimens were tested under constant axial compressive force and lateral reversed cyclic loading to investigate the seismic behaviour of the wall considering the effect of axial force ratio and shear span ratio. The favourable seismic performance of the CFDSC walls was demonstrated in the test. No serious pinching effect was observed on the hysteresis curves of all the specimens. The drift ratios corresponding to the ultimate stage were recorded as being in the range from 1/67 to 1/30 and the ductility coefficients were varied from 4.50 to 8.22. The experimental results manifest that the CFDSC walls have great energy dissipation capacity. Formulae for calculating the lateral load-carrying capacity of the CFDSC wall, taking the confinement effects from steel plates into account, were proposed. The results calculated by the proposed method show good agreement with the experimental results. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了提高高层建筑核心墙的强度和延展性,在地震过程中承受较高的轴向压缩力和弯矩,高层建筑物的核心墙将被提出,提出了一种创新的混凝土填充双层钢板复合墙。 CFDSC墙是由填充有双层加强筋,竖向隔板和分布在板的内表面上的分布板条的双层混凝土钢板壁主体以及包括以下结构的钢管混凝土柱(CFST)组成:一对CFST柱位于边界的末端,作为边界元素,另外一对位于壁的中心。考虑了轴向力比和剪切跨度比的影响,在恒定的轴向压缩力和横向反向循环荷载下对5个CFDSC墙体样本​​进行了测试,以研究墙体的抗震性能。试验证明了CFDSC墙的良好抗震性能。在所有样品的磁滞曲线上均未观察到严重的挤压效应。记录了与最终阶段相对应的漂移比,范围为1/67至1/30,延性系数在4.50至8.22之间变化。实验结果表明,CFDSC墙具有很大的耗能能力。提出了考虑钢板的约束效应的CFDSC墙的侧向承载力计算公式。该方法计算结果与实验结果吻合良好。 (C)2018 Elsevier Ltd.保留所有权利。

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