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Shear transfer mechanism in connections involving concrete filled steel columns under shear forces

机译:剪切力下混凝土填充钢柱的连接中的剪切转移机制

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This paper reports the experimental results of three through bolt beam-column connections under pure shear forces using modified push-out tests. The investigated specimens include extended end-plates and six through-bolts connecting square concrete-filled steel tubular column (S-CFST) to steel beams. The main goal of this study is to investigate if and how the mechanical shear connectors, such as steel angles and stud bolts, contribute to the shear transfer mechanisms in the steel- concrete interface of the composite column. The contribution of shear studs and steel angles to improve the shear resistance of steel-concrete interface in through-bolt connections was investigated using tests. The results showed that their contribution is not significant when the beam-column connection is included in the push-out tests. The specimens failed by pure shear of the long bolts, and the ultimate load can be predicted using the shear resistance of the bolts under shear forces. The predicted values of load allowed obtaining a good agreement with the tests results.
机译:本文在纯剪切力下使用改进的推出测试报告了三次通过螺栓柱​​柱连接的实验结果。调查的样品包括将方形混凝土填充钢管柱(S-CFST)连接到钢梁的延长的端板和六个穿孔。本研究的主要目的是研究诸如钢角和螺栓的机械剪切连接器(例如钢角和螺栓)有助于复合柱的钢混凝土界面中的剪切传递机制。使用试验研究了剪切螺柱和钢角度提高钢混凝土界面剪切电阻的贡献。结果表明,当梁柱连接包括在推出测试中时,它们的贡献不显着。通过长螺栓的纯剪切失效,可以使用剪切力下螺栓的剪切电阻来预测最终负载。预测的负载值允许与测试结果获得良好的一致性。

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