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Seismic behavior of special truss moment frame with double hollow structural sections as chord members

机译:双重空心结构截面作为弦杆的特殊桁架弯矩框架的抗震性能

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Research work carried out on steel special truss moment frames (STMFs) with double-angle sections as chord members during the 1990s led to the formulation of design code provisions. Further research results using double-channel specimens resulted in a modified equation for the expected vertical shear strength of the central special segments, V-ne, and has been incorporated into the current AISC Seismic Provisions for Structural Steel Buildings. Double hollow structural sections (double-HSS) have the advantages of minimizing lateral torsional buckling and maximizing compactness in the flanges as compared to single HSS with the same flexural capacity. In this research, double-HSS members were proposed for the chord and web members of STMFs instead of double-angle, double-channel, or single-HSS. Double-HSS can effectively delay flange local buckling and enhance rotational ductility due to reduced width-to-thickness ratio (bit) without increasing the wall thickness of the members. A full-scale STMF subassemblage with double-HSS as truss members was tested under large displacement reversals to simulate a severe earthquake ground motion. Testing results indicate that using double-HSS truss members is a viable alternative for STMFs in high seismic regions. Plastic hinge models are also suggested for computer analysis and design of non-yielding members outside of the special segments. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在1990年代期间对具有双角截面的钢制特殊桁架弯矩框架(STMF)作为弦杆构件的研究工作导致制定了设计规范。使用双通道标本的进一步研究结果得出了一个修正公式,用于计算中央特殊分段的预期垂直抗剪强度V-ne,并已纳入当前的AISC结构钢建筑物抗震规定中。与具有相同抗弯能力的单个HSS相比,双空心结构型材(double-HSS)的优点是使横向扭转屈曲最小化,并使法兰的紧凑性最大化。在这项研究中,建议为STMF的弦和腹板成员使用双HSS成员,而不是双角度,双通道或单HSS。 Double-HSS由于减小了宽度与厚度的比(位),因此可以有效地延迟法兰的局部屈曲并增强旋转延展性,而无需增加构件的壁厚。在大位移反转下,以双重HSS作为桁架构件的全尺寸STMF子组件进行了测试,以模拟严重的地震地面运动。测试结果表明,在高地震地区,使用双HSS桁架构件替代STMF是可行的选择。还建议使用塑料铰链模型进行计算机分析,并设计特殊部分之外的非屈服构件。 (C)2016 Elsevier Ltd.保留所有权利。

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