An Experimental and Numerical Parametric Study on a Novel T-Shaped Steel–Concrete Composite Shear Wall

Xuan Mo, Zhijun Yuan, Yigang Jia, Liangjian Lu, Xianglan Wei, Naiwen Ke
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Abstract

In this paper, a novel T-shaped steel–concrete composite shear wall (TSCCW) is proposed. Low-cycle reciprocating tests were carried out on the TSCCW to investigate its performance in terms of its damage characteristics, hysteretic properties, energy dissipation capacity, stiffness degradation and ductility. A numerical model was established on the basis of the tests, and the correctness of the numerical model was verified. Afterwards, parameters such as shear span ratio, axial load ratio, rebar diameter, steel thickness, concrete strength grade and axial compression position were analyzed. The results show that the shear span ratio has a great influence on the performance of the TSCCW. A reduction in the shear span ratio from 2.1 to 1 reduces its stiffness by 333%. An increase in the axial load ratio will increase the load carrying capacity and stiffness of the TSCCW, and the deformation capacity will first increase and then decrease; it is recommended that the axial load ratio should be taken as 0.4. Increasing the steel thickness will improve the load carrying capacity, stiffness, deformation capacity and energy dissipation capacity of the TSCCW to a certain extent. Increasing the reinforcement diameter has less effect on the seismic performance of the TSCCW.
新型 T 形钢-混凝土复合剪力墙的实验和数值参数研究
本文提出了一种新型 T 形钢-混凝土复合剪力墙(TSCCW)。对 TSCCW 进行了低循环往复试验,以研究其在损伤特征、滞后特性、耗能能力、刚度退化和延性等方面的性能。在试验的基础上建立了数值模型,并验证了数值模型的正确性。随后,对剪跨比、轴荷比、钢筋直径、钢材厚度、混凝土强度等级和轴向压缩位置等参数进行了分析。结果表明,剪跨比对 TSCCW 的性能影响很大。剪跨比从 2.1 减小到 1,其刚度降低了 333%。轴向荷载比的增大会提高 TSCCW 的承载能力和刚度,而变形能力则会先增大后减小;建议轴向荷载比取 0.4。增加钢筋厚度可在一定程度上提高 TSCCW 的承载能力、刚度、变形能力和耗能能力。增加钢筋直径对 TSCCW 抗震性能的影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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