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首页> 外文期刊>Journal of structural engineering >Nonlinear Seismic Response Analysis of an Innovative Steel-and-Concrete Hybrid Coupled Wall System
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Nonlinear Seismic Response Analysis of an Innovative Steel-and-Concrete Hybrid Coupled Wall System

机译:创新的钢-混凝土混合耦合墙系统的非线性地震响应分析

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This paper studies the seismic response of an innovative hybrid coupled shear wall (HCW) system, obtained through the connection of a reinforced concrete (RC) wall to two steel side columns by means of steel links. This structural solution is conceived to exploit both the stiffness of the RC wall, required to limit building damage under low-intensity earthquakes, and the ductility of the steel links, necessary to dissipate energy under medium-intensity and high-intensity earthquakes. The seismic performance of the proposed HCW system is evaluated through multirecord nonlinear dynamic analysis of a set of case studies designed on the basis of a specific ductile design procedure. The adopted finite-element models are illustrated and validated with experimental tests and more complex three-dimensional numerical models. A selection of results is presented and discussed to highlight the potential of the proposed innovative HCW systems and the possibility to develop a ductile mechanism in which plastic deformations are mainly attained in the steel links, with minor damages in the RC wall.
机译:本文研究了一种创新的混合耦合剪力墙(HCW)系统的地震响应,该系统是通过钢筋连接将钢筋混凝土(RC)墙连接到两个钢制侧柱而获得的。该结构解决方案旨在利用RC墙的刚度(在低强度地震下限制建筑物破坏所需的刚度)以及在中等强度和高强度地震下耗散能量所必需的钢链的延展性。拟议的HCW系统的抗震性能是通过对一组基于特定延性设计程序设计的案例研究的多记录非线性动力学分析进行评估的。所采用的有限元模型通过实验测试和更复杂的三维数值模型进行了说明和验证。提出并讨论了一系列结果,以突出提出的创新HCW系统的潜力以及开发延性机制的可能性,其中主要在钢链节中实现塑性变形,而RC壁的破坏较小。

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