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Shear Behavior of Panel Zones in Steel Beam-to-Column Connections with Unequal Depth of Outer Annular Stiffener

机译:钢梁-柱连接中面板区域的剪切行为与外部环形加劲肋的深度不相等

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摘要

This paper presents an experimental investigation of the shear behavior of steel beam-to-column connections with unequal depth of outer annular stiffener. The depth-to-thickness ratio (D:t) of the hollow structural section (HSS) column, the beam depth ratio (Db2:Db1), and two sizes of outer annular stiffener are considered. This test involves seven cruciform connections subjected to lateral cyclic loading with vertical displacements imposed at the end of beams. The failure modes, hysteretic performance, strength and stiffness degradation, shear deformation, and energy dissipation of panel zone are estimated. The experimental results indicated that the whole panel exhibited large hysteretic loops, excellent ductility, and energy dissipating capacity. Due to the effect of the beam depth ratio, the tested specimens formed two types of failure modes: shear buckling of the whole panel and shear buckling of the primary panel at the column web between two beams.
机译:本文提出了在外部环形加劲肋深度不相等的情况下,钢梁-柱连接的剪切性能的实验研究。考虑了空心结构截面(HSS)柱的深度厚度比(D:t),梁深度比(Db2:Db1)和两种尺寸的外部环形加劲肋。该测试涉及七个十字形连接,它们承受横向循环荷载,并在梁的末端施加垂直位移。估算了面板区域的破坏模式,滞后性能,强度和刚度退化,剪切变形以及能量耗散。实验结果表明,整个面板表现出较大的磁滞回线,出色的延展性和耗能能力。由于梁深比的影响,被测样品形成了两种破坏模式:整个面板的剪切屈曲和主面板在两个梁之间的柱腹板处的剪切屈曲。

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