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Experimental Study on Seismic Performance of Mid-rise Composite Shear Walls with CFT Columns and Embedded Steel Plate

机译:用CFT柱和嵌入式钢板中升复合剪力墙抗震性能的实验研究

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The shear wall with concrete filled steel tube (CFT) columns and steel plate is a new kind of composite shear wall. In order to know its seismic performance and failure mechanism, six 1/5 scale specimens with the same shear span ratio 1.5, including 3 steel plate shear walls (SPSWs) with CFT columns and 3 reinforced concrete shear walls (RCSWs) with CFT columns and embedded steel plate, were tested under cyclic loading. The thickness of the steel plates in the shear walls changed from 2mm, 4mm to 6mm. Based on the experiment, the load-carrying capacity, hysteresis characteristics, ductility, stiffness degradation, energy dissipation and damage characteristics of the specimens were analyzed. Especially, the ratio of height to sectional thickness of the steel plates in the shear wall was considered. The result shows that both the SPSW with CFT columns and the RCSW with CFT columns and embedded steel plate have good seismic performance and are with important practical engineering value.
机译:具有混凝土填充钢管(CFT)柱和钢板的剪力墙是一种新型复合剪力墙。为了了解其地震性能和故障机制,六个1/5刻度标本,具有相同的剪切频率1.5,包括3个钢板剪力墙(SPSW),带有CFT柱和3个钢筋混凝土剪力墙(RCSW),具有CFT柱和CFT柱嵌入式钢板在环状载荷下进行测试。剪力墙中钢板的厚度从2mm,4mm变为6mm。基于实验,分析了载荷能力,滞后特征,延展性,刚度降解,节能和试样的损伤特征。特别地,考虑了剪力墙中钢板的高度与截面厚度的比率。结果表明,带有CFT色谱柱的SPSW和带有CFT柱和嵌入式钢板的RCSW都具有良好的地震性能,并且具有重要的实用工程价值。

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