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Subassembly testing and modeling of self-centering steel plate shear walls

机译:自定心钢板剪力墙的子装配测试和建模

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Experimental and numerical studies have shown self-centering steel plate shear walls (SC-SPSWs) to exhibit enhanced performance including recentering during extreme loading, making them a viable lateral load resisting system for high seismic regions capable of reducing structural repair costs and loss of building functionality after an earthquake. SC-SPSWs utilize thin steel web plates to provide lateral load resistance and energy dissipation, while rocking post-tensioned (PT) beam-to-column connections recen-ter the building and, if properly designed, eliminate costly damage to the boundary frame. A series of quasi-static cyclic tests have been conducted on SC-SPSW subassemblages. The purpose of these tests is to better understand SC-SPSW and component behavior and the impact of certain web plate and PT connection parameters on performance. This paper presents the results from the test program and also compares the experimental results to those of simple numerical models.
机译:实验和数值研究表明,自定心钢板剪力墙(SC-SPSWs)表现出增强的性能,包括在极端载荷期间的偏心,使其成为适用于高地震地区的可行的侧向载荷系统,能够降低结构维修成本和建筑物损失地震后的功能。 SC-SPSW使用薄钢板来提供横向负载阻力和能量耗散,同时摇晃后张紧(PT)的梁到柱连接可以重新确定建筑物的位置,并且,如果设计合理,则可以消除对边界框架造成的昂贵破坏。已经对SC-SPSW子组件进行了一系列准静态循环测试。这些测试的目的是为了更好地理解SC-SPSW和组件的行为以及某些腹板和PT连接参数对性能的影响。本文介绍了测试程序的结果,并将实验结果与简单的数值模型进行了比较。

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