The mechanical behavior of dove tail profiled steel concrete composite shear walls under axial compression

Zhenfeng Huang, Zhixiong Sun, Sumei Zhang, Lanhui Guo
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Abstract

This paper presents an experiment on the dove tail profiled steel concrete composite shear wall (DSCW) under axial compression. Four DSCWs specimens were designed and constructed in order to test and obtain the deformation behavior, failure modes, bearing capacity, stiffness changes, etc. The results indicate that the failure process of all 4 specimens is initialed from steel sheets local buckling to the final concrete crushing. The steel and concrete can work consistently because the dove-tail-shaped ribs of the sheets have a good anchoring effect on the concrete. Based on the experiment result and analysis, a simplified formula for DSCWs was suggested to calculate the axial compressive strength with consideration of the influence of local buckling of steel sheets.This paper presents an experiment on the dove tail profiled steel concrete composite shear wall (DSCW) under axial compression. Four DSCWs specimens were designed and constructed in order to test and obtain the deformation behavior, failure modes, bearing capacity, stiffness changes, etc. The results indicate that the failure process of all 4 specimens is initialed from steel sheets local buckling to the final concrete crushing. The steel and concrete can work consistently because the dove-tail-shaped ribs of the sheets have a good anchoring effect on the concrete. Based on the experiment result and analysis, a simplified formula for DSCWs was suggested to calculate the axial compressive strength with consideration of the influence of local buckling of steel sheets.
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鸽子尾型钢-混凝土组合剪力墙轴压受力性能研究
本文对鸽子尾型钢-混凝土组合剪力墙进行了轴压试验研究。设计并制作了4个DSCWs试件,测试并获得了其变形行为、破坏模式、承载力、刚度变化等。结果表明:4个试件的破坏过程都是从钢板局部屈曲到混凝土最终破碎开始的。由于钢板的鸽子尾形肋对混凝土具有良好的锚固作用,使钢板与混凝土能够协调工作。根据试验结果和分析,提出了考虑钢板局部屈曲影响的dscw轴向抗压强度的简化计算公式。本文对鸽子尾型钢-混凝土组合剪力墙进行了轴压试验研究。设计并制作了4个DSCWs试件,测试并获得了其变形行为、破坏模式、承载力、刚度变化等。结果表明:4个试件的破坏过程都是从钢板局部屈曲到混凝土最终破碎开始的。由于钢板的鸽子尾形肋对混凝土具有良好的锚固作用,使钢板与混凝土能够协调工作。根据试验结果和分析,提出了考虑钢板局部屈曲影响的dscw轴向抗压强度的简化计算公式。
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