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Design of Steel Plate Shear Walls Considering Boundary Frame Moment Resisting Action

机译:考虑边界框架弯矩作用的钢板剪力墙设计

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摘要

Conventional design of steel plate shear walls (SPSWs) assumes that 100% of the story shear is resisted by each infill panel. Following this approach, strength provided by the boundary frame moment resisting action, which provides the SPSW with overstrength, is neglected. While this design assumption has a positive impact on seismic performance of SPSWs, no analytical work has been done to quantify the magnitude of this overstrength in general terms. Such preliminary work is conducted in this paper. Based on plastic analysis of SPSWs, this paper investigates the relative and respective contributions of boundary frame moment resisting action and infill panel tension field action to the overall plastic strength of SPSWs, followed by a proposed procedure to make use of the strength provided by the boundary frame moment resisting action. Procedures for design of SPSWs having weak infill panels are also developed in this paper. Then, results from a series of time history analyses using validated models are presented to compare the seismic performances of SPSWs designed using different design assumptions. Future work needed to provide greater insight on SPSW designs is also identified.
机译:钢板剪力墙(SPSW)的常规设计假定每个填充面板抵抗100%的楼层剪力。按照这种方法,可以忽略由边界框架抗力矩作用提供的强度,该强度为SPSW提供了超强度。尽管此设计假设对SPSW的抗震性能具有积极影响,但尚未进行任何分析工作来量化这种超强度的大小。本文进行了此类初步工作。基于SPSWs的塑性分析,本文研究了边界框架抗弯作用和填充面板张力场作用对SPSWs整体塑性强度的相对和各自贡献,然后提出了利用边界提供的强度的拟议程序抵抗力矩的动作。本文还开发了具有弱填充面板的SPSW的设计程序。然后,提出了使用经过验证的模型进行的一系列时程分析的结果,以比较使用不同设计假设设计的SPSW的抗震性能。还确定了需要进一步了解SPSW设计的未来工作。

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