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Experimental study of beam-column connections with web opening in a low-rise steel frame

机译:低层钢框架中带腹板梁柱连接的试验研究

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Steel frame structures have been widely used in multi-storey and high-rise buildings and the connections in these structures are critical. In the Northridge and Kobe Earthquake, beam-column connections suffered damage due to brittle fracture. According to seismic design codes, ductility of the beam to column connection is also necessary. A study on the behavior of a beam to column connection with the aim of improving ductility as well as preventing brittle failure was carried out. In order to control the position of a plastic hinge on the beam, a connection with a hole in the beam web was developed. Five specimens with different parameters under cyclic load were assessed. The results are presented in terms of the stress distribution of the beam, hysteretic behavior, and ultimate capacity. Furthermore, the finite element method was also used to analyze the model, and the results were compared with those obtained from the experiment. It is shown from the analysis and experimental results that this type of connection is effective in terms of improving ductility for a beam to column connection in low-rise buildings.
机译:钢框架结构已广泛用于多层和高层建筑中,这些结构中的连接至关重要。在北岭和神户地震中,梁柱连接由于脆性断裂而受损。根据抗震设计规范,梁与柱连接的延展性也是必要的。为了提高延展性并防止脆性破坏,对梁到柱的连接行为进行了研究。为了控制塑料铰链在横梁上的位置,开发了与横梁腹板上的孔的连接。评估了五个在循环载荷下具有不同参数的样本。结果以梁的应力分布,滞后行为和极限承载力表示。此外,还使用有限元方法分析了模型,并将结果与​​从实验中获得的结果进行了比较。从分析和实验结果表明,这种类型的连接在提高低层建筑中梁到柱连接的延展性方面是有效的。

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