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首页> 外文期刊>International journal of steel structures >Seismic Behavior Investigation of the Corrugated Steel Shear Walls Considering Variations of Corrugation Geometrical Characteristics
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Seismic Behavior Investigation of the Corrugated Steel Shear Walls Considering Variations of Corrugation Geometrical Characteristics

机译:考虑波纹几何特性变化的波纹钢剪力墙抗震性能研究

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The corrugated steel plate shear walls have recently been proposed to address the seismic issues associated with simple steel plate shear walls; however, stiffness, strength, and ductility of the corrugated shear walls are significantly affected by varying the corrugation geometry under seismic loading. The present study investigates steel shear walls' models with corrugated or simple infill plates subjected to monotonic and cyclic loads. The performance of the corrugated steel plate is evaluated and then compared to that of the simple steel plates by evaluating the damping ratios and energy dissipation capability. The effect of corrugation profile angle, the existence of an opening, and the corrugation subpanel length are numerically investigated after validation of the finite element modeling methodology. The results demonstrate that incorporating corrugated plates would lead to better seismic damping ratios, specifically in the case of opening existence inside of the infill plate. Specifically, the corrugation angle of 30 degrees decreases the ultimate strength, while increasing the initial stiffness and ductility. In addition, the subpanel length of 100 mm is found to be able to improve the overall performance of shear wall by providing each subpanel appropriate support for the adjacent subpanel, leading to a sufficient buckling resistance performance.
机译:最近提出了波纹钢板剪力墙,以解决与简单钢板剪力墙有关的地震问题。但是,在地震荷载作用下,改变波纹形状会严重影响波纹剪力墙的刚度,强度和延展性。本研究研究了承受单调和周期性载荷的带有波纹板或简单填充板的钢剪力墙模型。评估波纹钢板的性能,然后通过评估阻尼比和能量消散能力,将其与简单钢板的性能进行比较。在验证了有限元建模方法后,通过数值研究了波纹轮廓角,开口的存在以及波纹子面板长度的影响。结果表明,合并波纹板将导致更好的地震阻尼比,特别是在填充板内部存在开口的情况下。具体地,30度的波纹角降低了极限强度,同时增加了初始刚度和延展性。另外,发现100mm的子面板长度能够通过为每个子面板提供对相邻子面板的适当支撑来改善剪力墙的整体性能,从而导致足够的抗屈曲性能。

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