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Seismic behavior of steel plate shear wall with reduced boundary beam section

机译:边界梁截面减小的钢板剪力墙的抗震性能

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In this paper a steel plate shear walls (SPSWs) with specific type of reduced beam section is proposed. The perimeter framing configuration around the steel plate shear wall plays an important role in the ductility of system. In order to prevent brittle failure of beam-column connection, the beam section is weakened with different methods. The methods included the reduction of the beam section with circular and elliptical web openings, vertical slots in the web and also the reduction of the beam flange. The nonlinear finite element analysis results showed that the model with slots in the beam web has the best performance in terms of ductility, energy absorption, stiffness and shear strength than the other proposed models. Parametric study is carried on the geometry of the slots and some design limitations proposed on the size and location of slots, based on the analysis results. The analysis results on different models showed that the slotted beam models could reach to an average story drift of 4%, which is a high value for a steel shear wall system. The results showed that most effective parameter is the length of slotted region. The use of proposed slotted beam model in shear walls with different story height to length ratios are studied, and concluded that decreasing the height to length ratio of the wall results in decrease of ductility. Push-over analysis is also carried on a four-story steel plate shear wall system with and without slots in the beam. Results showed that in the slotted beam model the plastic strain can be fully distributed among the steel plate shear wall and the slotted part of the beam web, the connections remaining elastic, at 4% story drift.
机译:本文提出了一种具有特定类型的减小梁截面的钢板剪力墙(SPSW)。钢板剪力墙周围的周边框架构型在系统的延展性中起着重要作用。为了防止梁柱连接的脆性破坏,用不同的方法来削弱梁的截面。该方法包括减小具有圆形和椭圆形腹板开口的梁截面,腹板中的垂直缝隙以及减小梁的凸缘。非线性有限元分析结果表明,在梁腹中带有缝隙的模型在延性,能量吸收,刚度和抗剪强度方面比其他提出的模型具有最佳性能。对槽的几何形状进行参数研究,并根据分析结果对槽的尺寸和位置提出一些设计限制。不同模型的分析结果表明,开槽梁模型的平均层间位移可以达到4%,这对于钢剪力墙系统来说是一个很高的值。结果表明,最有效的参数是开槽区域的长度。研究了在不同层高与长度之比的剪力墙中所提出的缝隙梁模型的使用,并得出结论,降低墙的高度与长度之比会导致延性的降低。推覆分析还可以在四层钢板剪力墙系统中进行,梁系统中有无槽。结果表明,在开槽梁模型中,塑性应变可以完全分布在钢板剪力墙和梁腹板的开槽部分之间,连接保持弹性,层位移为4%。

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