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An innovative seismic-resistant steel frame with reinforced concrete infill walls

机译:创新的抗震钢框架,带有钢筋混凝土填充墙

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摘要

Steel frames with reinforced concrete infill walls (SRCW) are an interesting seismic-resistant structural solution. However, an effective seismic design of SRCWs is not easy due to the current lack of specific capacity design rules that allow controlling the formation of a proper energy dissipating mechanism. In order to overcome such an issue, a ductile design procedure is presented in this paper. The proposed procedure leads to innovative SRCW systems where energy dissipation is expected to take place only in the vertical elements of the steel frame, which are subjected mainly to axial forces. The non-ductile components, i.e. reinforced concrete wall and steel-to-concrete connections, are expected to suffer negligible damage. Accordingly, the system is designed to control the formation of diagonal struts in the infill walls and behaves as a lattice brace instead of a shear wall. Experimental test results and nonlinear finite element analyses are illustrated to support the developed ductile design approach and highlight the advantages of SRCWs. (C) 2017 Elsevier Ltd. All rights reserved.
机译:具有钢筋混凝土填充墙(SRCW)的钢框架是一种有趣的抗震结构解决方案。然而,由于当前缺乏允许控制适当的能量耗散机制的形成的特定容量设计规则,因此对SRCW进行有效的地震设计并不容易。为了克服这个问题,本文提出了一种延性设计程序。所提出的程序导致了创新的SRCW系统,其中能量耗散预计仅发生在钢框架的垂直单元中,而垂直单元主要承受轴向力。非延性部件,即钢筋混凝土墙和钢与混凝土的连接,预计将受到的损坏很小。因此,该系统被设计为控制填充壁中对角撑杆的形成,并且表现为格子支撑而不是剪力墙。说明了实验测试结果和非线性有限元分析,以支持已开发的延性设计方法并突出SRCW的优势。 (C)2017 Elsevier Ltd.保留所有权利。

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