不同穿孔形式冷弯薄壁钢板剪力墙的抗震性能

IF 1.4 4区 工程技术 Q3 ENGINEERING, CIVIL
H. Ahmadi, M. Sheidaii, S. Tariverdilo, A. Formisano, G. Matteis
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引用次数: 0

摘要

薄穿孔钢板剪力墙(SPSWs)是最常见的地震消能系统之一,用于保护SPSWs的主要边界构件在高风险区域免受致命的断裂。本文报道了不同孔型在循环荷载作用下的循环性能。实验结果表明,圆孔穿孔方式的改变会导致腹板上断裂倾向的位置发生变化,特别是在板-架相互作用下。基于此,利用ABAQUS软件对试件的循环响应进行有限元模拟。同样,提出了通过拓扑优化(TO)获得新的穿孔模式的穿孔剪力板。结果表明,采用TO孔模式的试件的极限抗剪强度高于其他试件。此外,采用板-框架相互作用(PFI)方法的理论方程预测了考虑试件的抗剪强度和初始刚度。理论结果表明,所提出的折减系数关系不能准确地预测所考虑的穿孔剪力板的抗剪强度和初始刚度。因此,在得到的实验和数值结果的基础上,理论方程应采用降阶系数。最后,根据本文的研究结果,可以用PFI方法预测这几种类型的穿孔剪力板的抗剪强度和初始刚度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seismic behavior of thin cold-formed steel plate shear walls with different perforation patterns
Thin perforated Steel Plate Shear Walls (SPSWs) are among the most common types of seismic energy dissipation systems to protect the main boundary components of SPSWs from fatal fractures in the high-risk zones. In this paper, the cyclic behavior of the different circular hole patterns under cyclic loading is reported. Based on the experimental results, it can be concluded that a change in the perforation pattern of the circular holes leads to a change in the locations of the fracture tendency over the web plate, especially at the plate-frame interactions. Accordingly, the cyclic responses of the tested specimens were simulated by finite element method using the ABAQUS package. Likewise, perforated shear panels with a new perforation pattern obtained by implementing Topology Optimization (TO) were proposed. It was found that the ultimate shear strength of the specimen with the proposed TO perforation pattern was higher than that of the other specimens. In addition, theoretical equations using the Plate-Frame Interaction (PFI) method were used to predict the shear strength and initial stiffness of the considered specimens. The theoretical results showed that the proposed reduced coefficients relationships cannot accurately predict the shear strength and initial stiffness of the considered perforated shear panels. Therefore, the reduced coefficients should be adopted in the theoretical equations based on the obtained experimental and numerical results. Finally, with the results of this study, the shear strength and initial stiffness of these types of perforated shear panels can be predicted by PFI method.
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来源期刊
Earthquakes and Structures
Earthquakes and Structures ENGINEERING, CIVIL-ENGINEERING, GEOLOGICAL
CiteScore
2.90
自引率
20.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The Earthquakes and Structures, An International Journal, focuses on the effects of earthquakes on civil engineering structures. The journal will serve as a powerful repository of technical information and will provide a highimpact publication platform for the global community of researchers in the traditional, as well as emerging, subdisciplines of the broader earthquake engineering field. Specifically, some of the major topics covered by the Journal include: .. characterization of strong ground motions, .. quantification of earthquake demand and structural capacity, .. design of earthquake resistant structures and foundations, .. experimental and computational methods, .. seismic regulations and building codes, .. seismic hazard assessment, .. seismic risk mitigation, .. site effects and soil-structure interaction, .. assessment, repair and strengthening of existing structures, including historic structures and monuments, and .. emerging technologies including passive control technologies, structural monitoring systems, and cyberinfrastructure tools for seismic data management, experimental applications, early warning and response
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