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Performance of flange-welded/web-bolted steel I-beam to hollow tubular column connections under seismic load

机译:地震作用下法兰焊接/腹板锚固工字钢与空心管状柱连接的性能

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Earthquake causes wide and severe damage to building structures due to the great ground motion which is also one of inducements of other extreme events such as fire, tsunami and debris flow. The Multi-extreme loads such as earthquake and the subsequent actions could be much more destructive than the earthquake action itself. Regarding the safety of properties and lives, in order to evaluate building structures subjected to post-earthquake actions, it is important to accurately assess the partial damage caused by earthquake on structural components. By using experimental method, two groups of flange-welded/web-bolted steel I-beam-to-hollow-tubular-column connections were investigated under static and cyclic loadings at ambient temperature. The flexibility and strength of the connections are measured, while the damage phenomena and failure modes are explored during the tests. The connection damage was found to be a cumulative process with fracture extending. The increasing damage led to significant gradual degradation of the connection mechanical properties. The quantificational evaluation was also carried out to investigate the connection damage degree according to different loading intensities. Using finite element (FE) modelling, study was carried out and validated by the experimental results while a good agreement was achieved. The test and FE modelling results in this study provided detailed understanding of the performance of the flange-welded/web-bolted steel tubular connection. It can be used for further investigation of the connections subjected to combined actions of extreme loading such as post earthquake fire.
机译:强烈的地面运动会导致地震对建筑结构造成广泛而严重的破坏,这也是引发其他极端事件(如火灾,海啸和泥石流)的原因之一。与地震作用本身相比,诸如地震和后续作用之类的极端载荷可能更具破坏性。关于财产和生命的安全性,为了评估遭受地震作用的建筑结构,准确评估地震对结构部件造成的部分破坏非常重要。通过实验方法,研究了在环境温度下的静载荷和循环载荷下两组法兰焊接/腹板螺栓连接的工字钢与空心管-柱的连接方式。测量连接的灵活性和强度,同时在测试过程中探索损坏现象和失效模式。发现连接损伤是随着断裂扩展的累积过程。损坏的增加导致连接机械性能的明显逐渐下降。还根据不同的载荷强度进行了定量评估,以研究连接损伤程度。使用有限元(FE)建模,进行了研究并通过实验结果进行了验证,同时取得了良好的一致性。这项研究中的测试和有限元建模结果提供了对法兰焊接/腹板螺栓连接的钢管连接性能的详细了解。它可用于进一步研究承受极端载荷(如地震后火灾)的组合作用的连接。

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