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Stability of extended beam-to-girder shear tab connections under gravity induced shear force

机译:重力引起的剪力作用下梁到梁抗剪拉片连接的稳定性

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Extended shear tab connections are widely used to connect beams to the webs of girders. In the full-depth configuration of extended beam-to-girder shear tabs, the shear plate is typically fillet welded to the web, as well as to the top and bottom flanges of the girder. Due to the extended nature of the shear tab, i.e. the connection to the beam is actually made well outside of the cross-section of the girder, the inelastic stability of this plate must be accounted for in design. A coordinated experimental and numerical investigation of the behaviour and stability requirements of full-depth extended shear tabs is described in the paper. The findings from a detailed finite element (FE) simulation of 3 single-sided beam-to-girder shear tab connections, tested at McGill University, are discussed. Based on the FE analyses, the load transfer mechanism and the buckling capacity of the stiffened portion of the full-depth shear tab were determined. The parameters, which influenced the buckling of the stiffener, were studied; including the depth and thickness of the shear plate, the depth of the girder, the width of the girder flanges, and the flexibility of the girder web. Further FE analyses were completed to determine the buckling capacity of the shear tab with reduced depth of the stiffener. In addition, the load-transfer mechanism and buckling capacity of these shear plates were modeled when they are used in double-sided configurations, i.e. when a beam is placed on both sides of the girder.
机译:扩展的剪力片连接被广泛用于将梁连接到大梁腹板上。在延伸的梁到梁剪力片的全深度配置中,剪力板通常是角焊缝到腹板以及梁的顶部和底部凸缘。由于抗剪舌片的延伸特性,即与梁的连接实际上在大梁的横截面之外进行得很好,因此在设计中必须考虑该板的无弹性稳定性。本文描述了对全深度扩展剪力片的性能和稳定性要求的协调实验和数值研究。讨论了在麦吉尔大学测试的3个单侧梁到梁抗剪凸舌连接的详细有限元(FE)模拟的结果。在有限元分析的基础上,确定了全深度剪力片加筋部分的荷载传递机理和屈曲能力。研究了影响加劲肋屈曲的参数。包括剪切板的深度和厚度,大梁的深度,大梁翼缘的宽度以及大梁腹板的柔韧性。完成了进一步的有限元分析,以确定加劲肋深度减小时剪力片的屈曲能力。另外,当这些剪力板用于双面构造时,即当梁放在梁的两侧时,它们的载荷传递机理和屈曲能力被建模。

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