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Hysteretic behavior of perforated steel plate shear walls with beam-only connected infill plates

机译:具有仅梁连接的填充板的穿孔钢板剪力墙的滞回行为

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摘要

The steel plate shear wall with beam-only connected infill plate (SSW-BO) is an innovative lateral load resisting system consisting of infill plates connected to surrounding beams and separated from the main columns. In this research, the effects of perforation diameter as well as slenderness ratios of infill plates on the hysteresis behavior of SSW-BO systems were studied experimentally. Experimental testing is performed on eight one-sixth scaled one-story SSW-BO specimens with two plate thicknesses and four different circular opening ratios at the center of the panels under fully reversed cyclic quasi-static loading in compliance with the SAC test protocol. Strength, stiffness, ductility and energy absorption were evaluated based on the hysteresis loops. It is found that the systems exhibited stable hysteretic behavior during testing until significant damage in the connection of infill plates to surrounding beams at large drifts. It is also seen that pinching occurred in the hysteresis loops, since the hinge type connections were used as boundaries at four corners of surrounding frames. The strength and initial stiffness degradation of the perforated specimens containing opening ratio of 0.36 compared to the solid one is in the range of 20% to 30% and 40% to 50%, respectively.
机译:钢板剪切墙与仅光束连接的填充板(SSW-BO)是一种创新的横向载荷系统,包括连接到周围梁的填充板并与主柱分离。在本研究中,通过实验研究了穿孔直径对填充板对SSW-BO系统滞后行为的细长比的影响。实验测试在八分之一的缩放一层SSW-Bo标本上进行,在符合SAC测试方案的完全反转的环状准静态加载下,在面板的中心处具有两个板厚度和四个不同的圆形开口比。基于滞后环评估强度,刚度,延展性和能量吸收。结果发现,该系统在测试期间表现出稳定的滞后行为,直到在大漂移下将填充板连接到围绕梁的显着损坏。还可以看出,在滞后环中发生捏合,因为铰链型连接被用作周围框架的四个角的边界。与固体相比,含有0.36的开口比的穿孔样品的强度和初始刚度降低分别为20%至30%,40%至50%。

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