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Experimental Study and Numerical Simulation on Steel Plate Shear Walls with Non-uniform Spacing Slits

机译:间距不均匀的钢板剪力墙的试验研究与数值模拟

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摘要

Numerous experimental and finite element studies have shown that steel plate shear walls with slits have several beneficial characteristics, such as good ductility and excellent energy dissipation capacity, which make them a feasible lateral load resisting and energy dissipation system for high-rise buildings in high seismic regions. The width of the flexural links between slits has a significant effect on the mechanical behavior and hysteretic performance of steel plate shear walls with slits. This paper presented two kinds of steel plate shear walls with non-uniform spacing slits (SPWNS) and investigated their performance under low-cycle loading based on tests and finite element software. The study mainly focused on the ultimate bearing capacity, the lateral stiffness, the energy dissipation capacity and the ductility of SPWNS. The results from numerical analysis and test study were compared with each other. The ultimate bearing capacity and the lateral stiffness of traditional steel plate shear walls with uniform spacing slits (SPWUS) were similar to that of SPWNS. In contrast, the ductility and the energy dissipation capacity of SPWUS were much higher.
机译:大量的实验和有限元研究表明,带有缝的钢板剪力墙具有良好的延展性和出色的耗能能力等多个有益特性,使其成为高地震中高层建筑的可行的抗侧向荷载和耗能系统。地区。缝隙之间的挠性连接宽度对带缝隙的钢板剪力墙的力学性能和滞后性能有很大影响。本文介绍了两种不均匀间距缝隙的钢板剪力墙(SPWNS),并通过测试和有限元软件研究了它们在低周荷载下的性能。研究主要集中在SPWNS的极限承载力,侧向刚度,能量耗散能力和延展性上。将数值分析和测试研究的结果相互比较。具有均匀间隔缝的传统钢板剪力墙的极限承载力和侧向刚度与SPWNS相似。相反,SPWUS的延展性和能量消散能力要高得多。

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