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Experimental and numerical investigation of low-yield-strength (LYS) steel plate shear walls under cyclic loading

机译:反复荷载下低屈服强度钢板剪力墙的试验与数值研究

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Steel plate shear walls (SPSWs) are lateral load resisting systems with a significant energy dissipation potential under cyclic loading. This research performed experimental and numerical investigation of the cyclic behavior of low-yield-strength (LYS) SPSW. Two specimens with 1:3 scale three-story single-bay SPSW with unstiffened infill plates were tested using cyclic loading. The steel plate shear walls had two types of moment-resistant and pinned beam-to-column connections. Also, low-yield-strength (LYS) and high-yield-strength (HYS) steel were used for the infill plates and boundary frames, respectively. The results indicated that the test specimens had good stiffness, high ductility, significant energy dissipation, and stable cyclic behavior. Also, the results revealed that the type of beam-to-column connection affects ductility, strength, and energy dissipation and has a negligible effect on the initial stiffness. In addition, the nonlinear finite element (FE) models were developed to predict the hysteresis behavior of SPSWs. In the FE models, the nonlinear behavior of geometric and materials, large deformations, and initial geometric imperfections were considered. The nonlinear FE models of SPSWs were verified against experimental results. The hysteresis curves, failure modes, and base shear capacity FE models were compared with the experimental results. The numerical investigation showed that the cyclic behavior of the SPSW could be simulated using a simplified FE model. It is demonstrated that rigid and pinned beam-column connection can influence the strength performance and total energy dissipation of an SPSW system and material properties of the infill plate components, especially LYS steel, can further advance the impact of such connection.
机译:钢板剪力墙(SPSW)是抗侧向载荷的系统,在循环载荷下具有显着的耗能潜力。本研究对低屈服强度(LYS)SPSW的循环行为进行了实验和数值研究。使用循环加载测试了两个具有1:3比例三层单托架SPSW且带有未加固填充板的标本。钢板剪力墙有两种类型的抗弯矩和钉扎梁到柱连接。同样,低屈服强度(LYS)和高屈服强度(HYS)钢分别用于填充板和边界框架。结果表明,试样具有良好的刚度,高延展性,显着的能量耗散和稳定的循环行为。而且,结果表明,梁对柱连接的类型会影响延性,强度和能量耗散,并且对初始刚度的影响可忽略不计。此外,开发了非线性有限元(FE)模型来预测SPSW的滞后行为。在有限元模型中,考虑了几何和材料的非线性行为,大变形和初始几何缺陷。针对实验结果验证了SPSWs的非线性有限元模型。将磁滞曲线,破坏模式和基础剪力有限元模型与实验结果进行了比较。数值研究表明,可以使用简化的有限元模型模拟SPSW的循环行为。结果表明,刚性和固定的梁柱连接可以影响SPSW系统的强度性能和总能量耗散,并且填充板组件(尤其是LYS钢)的材料性能可以进一步提高这种连接的影响。

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