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首页> 外文期刊>Journal of structural engineering >Capacity Design of Intermediate Horizontal Boundary Elements of Steel Plate Shear Walls
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Capacity Design of Intermediate Horizontal Boundary Elements of Steel Plate Shear Walls

机译:钢板剪力墙中间水平边界单元的承载力设计

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摘要

Consistent with capacity design principles and requirements of ductile behavior, the 2005 AISC and 2001 CSA seismic design codes require that the intermediate horizontal boundary elements (HBEs) of steel plate shear walls (SPSWs) be designed to remain essentially elastic with the exception of plastic hinges at their ends when the infill plates fully yield under seismic loading. However, the unexpected failure observed during the tests on a full-scale two-story SPSW suggested that the current design approach does not necessarily lead to an intermediate HBE with the expected performance. This paper presents analytical models for estimating the design forces for intermediate HBEs to reliably achieve capacity design. Those models combine the assumed plastic mechanism with a linear beam model of intermediate HBE considering fully yielded infill panels and are able to prevent in-span plastic hinges. Design forces predicted using the proposed models are compared with those from nonlinear finite element analysis. Good agreement is observed. Finally, the proposed models are also used to explain the observed premature failure of intermediate HBE.
机译:根据容量设计原则和延性要求,2005 AISC和2001 CSA抗震设计规范要求将钢板剪力墙(SPSW)的中间水平边界元素(HBE)设计为保持基本弹性,但塑料铰链除外当填充板在地震荷载作用下完全屈服时,在其末端。但是,在全尺寸两层SPSW上的测试过程中观察到的意外故障表明,当前的设计方法不一定会导致具有预期性能的中间HBE。本文介绍了用于估计中间HBE的设计力以可靠地实现容量设计的分析模型。这些模型考虑了完全屈服的填充面板,将假定的塑性机制与中间HBE的线性梁模型结合在一起,并且能够防止跨距塑性铰链。使用所提出的模型预测的设计力与非线性有限元分析的设计力进行了比较。观察到良好的一致性。最后,提出的模型还用于解释观察到的中间HBE的过早失效。

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