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Reduced Link Sections for Improving the Ductility of Eccentrically Braced Frame Link-to-Column Connections

机译:减少了连杆截面,以提高偏心支撑框架连杆到柱连接的延展性

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Eccentrically braced frames (EBFs) are desirable seismic load resisting systems as they combine the high elastic stiffness of concentrically braced frames with the ductility and stable energy dissipation of moment resisting frames. EBFs with links attached to the columns are particularly appealing for architectural flexibility as they provide multiple locations for placement of doors and hallways. However, previous research has shown that link-to-column connections are prone to failure at low drift levels, due to their susceptibility to fracture at the link flange-to-column welds. This paper investigates the application of the reduced beam section concept for links in eccentrically braced frames to enhance the ductility of link-to-column connections. A design procedure for link section reduction is proposed and preliminary finite-element analyses are conducted on a shear link with various reduced section geometries. A parametric study performed on an array of links having various cross sections and lengths suggests that the reduced link section may substantially reduce the plastic flange strains at the link ends, which can improve the fracture life. The reduction in plastic flange strains is found to be significant for all links, with larger reductions for intermediate and flexural links. Furthermore, the detrimental kinking deformation of the flanges, caused by the large rotation demands in shear links, is moved away from the column face when reduced sections were used. While the analysis results show promise, experimental verification is recommended before the proposed design procedure can be implemented in practice.
机译:偏心支撑框架(EBF)是理想的抗地震载荷系统,因为它们将同心支撑框架的高弹性刚度与抗弯框架的延展性和稳定的能量耗散结合在一起。带有连接到立柱的EBF尤其具有建筑灵活性,因为它们为门和走廊的放置提供了多个位置。但是,以前的研究表明,由于在链节法兰-柱焊缝处容易断裂,因此链节-柱连接在低漂移水平下易于失效。本文研究了减小梁截面概念在偏心支撑框架中的链接的应用,以提高链接到列的连接的延展性。提出了一种减少链节截面的设计程序,并对具有各种减小截面几何形状的剪切链节进行了初步的有限元分析。对具有不同横截面和长度的链节阵列进行的参数研究表明,减小的链节截面可以显着降低链节端部的塑料法兰应变,从而可以延长断裂寿命。发现塑料法兰应变的减小对于所有链节都是显着的,而对于中间链节和挠曲链节则更大。此外,当使用减小的截面时,由于剪切连杆中的较大旋转需求而导致的凸缘的有害的扭结变形被移离柱面。尽管分析结果显示出希望,但建议在建议的设计程序可以在实践中实施之前进行实验验证。

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