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Strip Model Analysis for Steel Plate Shear Walls in Earthquake Resistant Structures

机译:地震抗性结构中钢板剪力墙的剥离模型分析

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Unstiffened Steel Plate Shear Walls (SPSWs) are very effective structural systems designed to resist lateral forces. SPSW systems consist of thin web plates infilled within frames of steel horizontal and vertical boundary elements. The thin unstiffened web plates are expected to buckle in shear and to develop diagonal tension field after buckling under the action of horizontal loads. For unstiffened steel plates, buckling in shear occurs in the elastic range at low stress levels. This behaviour provides strength, stiffness and ductility and allows to have an appropriate level of energy dissipation through tension yielding of the web plates. This paper assesses the inelastic structural response and behaviour of Steel Plate Shear Wall systems using both a modified strip model approach and a new simplified strip model for only beam connected SPSWs. Both models are developed with plasticity concentrated elements and the performed analyses include the nonlinear behaviour of strips, also considering the compressive forces effects over the strip model elements. This research indicates fundamental aspects of the seismic performance of Steel Plate Shear Wall systems, such as energy dissipation capacity, panel ductility demand, seismic inter-story drift and design load demands in Vertical Boundary Elements (VBE) and Horizontal Boundary Elements (HBE) of the frame. The results obtained from the use of these models are compared with selected experimental and numerical results to enrich the research conclusions.
机译:不稳定的钢板剪切墙(SPSW)是非常有效的结构系统,设计用于抵抗横向力。 SPSW系统由薄纤维板组成,夹在钢水平和垂直边界元件框架内。预期薄的不稳定纤维网板在剪切中弯曲并在水平载荷的作用下弯曲后开发对角线张力场。对于不稳定的钢板,在低应力水平的弹性范围内剪切屈曲。该行为提供强度,刚度和延展性,并且通过幅材的张力产生适当的能量耗散水平。本文评估了使用改进的条带模型方法的钢板剪切墙系统的非弹性结构响应和行为,以及仅用于梁连接SPSW的新型简化的条带模型。两种模型都是用塑性浓缩元件开发的,并且所进行的分析包括条带的非线性行为,也考虑到压缩力对带材模型元件的影响。该研究表明钢板剪力墙系统的地震性能的基本方面,例如能量耗散能力,面板延展性需求,地震际故事界限(垂直边界元件(VBE)和水平边界元素(HBE)的设计负荷需求框架。将从使用这些模型获得的结果与选定的实验和数值结果进行比较,以丰富研究结论。

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