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首页> 外文期刊>Journal of structural engineering >Experimental Investigation of SPSW Web Plate Stress Field Development and Vertical Boundary Element Demand
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Experimental Investigation of SPSW Web Plate Stress Field Development and Vertical Boundary Element Demand

机译:SPSW腹板应力场发展及垂直边界元需求的试验研究

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Steel plate shear walls (SPSW) are an efficient but largely underutilized building lateral force resisting system. The system consists of a moment frame (the boundary frame) with slender steel web plates that are welded or bolted inside the boundary frame, forming a diaphragm. The resulting structure resembles a vertical plate girder. The system resists lateral load primarily through tension field action of the postbuckled web plate. The magnitude and orientation of this tension field is governed by the relative stiffness of the web plate and boundary frame. The 2010 Seismic Provisions currently require that the tension field inclination angle be either 40° or computed using a closed-form equation derived from elastic analysis. It is demonstrated through experimentation and finite-element analyses that the tension field inclination may migrate, from an initially low angle under an elastic postbuckled state, toward 45° as the plate is loaded plastically. The resulting flexural demand on the vertical boundary elements is consistent with this change for both monotonic and cyclic loading. Through a series of small-scale experiments, slender A1008 steel web plates were loaded inside a square reusable pin-connected frame. The aim of this study was to examine the interaction of the web plate with the boundary frame members and the development and change in the web plate tension field orientation. This paper presents the results of the experiments and some of the numerical simulations that were used to study the migration of the tension field orientation angle, and extend the results to a variety of SPSW configurations.
机译:钢板剪力墙(SPSW)是一种有效的但未充分利用的建筑物横向抗力系统。该系统由一个力矩框架(边界框架)和细长的钢腹板组成,这些钢板通过焊接或螺栓连接在边界框架内,从而形成隔膜。所得结构类似于垂直板梁。该系统主要通过后屈曲腹板的张力场作用来抵抗横向载荷。该张力场的大小和方向由腹板和边界框架的相对刚度决定。目前,《 2010年地震规定》要求张力场倾斜角为40°或使用从弹性分析得出的封闭式方程计算。通过实验和有限元分析表明,随着板的塑性加载,张力场的倾斜度可能会在弹性后屈曲状态下从最初的小角度向45°迁移。对于单调和循环载荷,在垂直边界单元上产生的挠曲需求与该变化一致。通过一系列的小规模实验,将细长的A1008钢腹板加载到可重复使用的方形销钉连接框架内。这项研究的目的是检查腹板与边界框架构件的相互作用以及腹板张力场方向的发展和变化。本文介绍了实验结果和一些数值模拟,用于研究张力场取向角的迁移,并将结果扩展到各种SP​​SW配置。

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