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首页> 外文期刊>Journal of structural engineering >Cyclic Behavior of Very Short Steel Shear Links
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Cyclic Behavior of Very Short Steel Shear Links

机译:超短钢剪链节的循环行为

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摘要

A replaceable coupling beam is proposed comprising of steel hybrid shear links that are shorter than typical shear links in eccentrically braced frames (EBFs). Cyclic loading tests were conducted to examine the behavior of these very short shear links. The test variables included the steel type, length ratio, web stiffener configuration, and loading protocol. The link specimens showed two types of failure modes: link web fracture and fracture at the weld connecting link flange to end plate. The link specimens had an inelastic rotation capacity of approximately 0.14 rad, which is significantly larger than the capacity assumed for EBF links. Links using LY225 steel instead of Q235 steel achieved a 25% increase in inelastic rotation and 44% increase in cumulative plastic rotation. The overstrength factors of the very short shear links reached 1.9, significantly exceeding 1.5, which is the value assumed for EBF links by design provisions. Analysis suggests that large overstrength can develop in very short shear links due to the contribution of flanges and cyclic hardening of web steel under large plastic strains. In addition, axial deformation was measured as the links underwent inelastic shear deformation. (C) 2015 American Society of Civil Engineers.
机译:提出了一种可替换的联接梁,该联接梁由钢混合剪切杆组成,该剪切杆比偏心支撑框架(EBF)中的典型剪切杆短。进行了循环载荷测试,以检查这些非常短的剪切杆的行为。测试变量包括钢的类型,长度比,腹板加劲肋配置和加载规程。链节样品显示出两种类型的破坏模式:链节腹板断裂和将链节法兰连接到端板的焊接处的断裂。链节试样的非弹性旋转能力约为0.14 rad,这大大超过了EBF链节所假定的能力。使用LY225钢代替Q235钢的链节的非弹性旋转增加了25%,累计塑性旋转增加了44%。非常短的剪切杆的超强度系数达到1.9,大大超过了1.5,这是设计规定对EBF杆的假定值。分析表明,由于法兰的作用和在大塑性应变下腹板钢的循环硬化,在很短的剪切力连接中会产生较大的超强度。另外,测量轴向变形,因为连杆经历了非弹性剪切变形。 (C)2015年美国土木工程师学会。

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