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Performance of Retrofitted Self-Compacting Concrete-Filled Steel Tube Beams Using External Steel Plates

机译:外钢板加固自密实钢管混凝土梁的性能

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摘要

Self-compacting concrete-filled steel tube (SCCFST) beams, similar to other structural members, necessitate retrofitting for many causes. However, research on SCCFST beams externally retrofitted by bolted steel plates has seldom been explored in the literature. This paper aims at experimentally investigating the retrofitting performance of square self-compacting concrete-filled steel tube (SCCFST) beams using bolted steel plates with three different retrofitting schemes including varied configurations and two different steel plate lengths under flexure. A total of 18 specimens which consist of 12 retrofitted SCCFST beams, three unretrofitted (control) SCCFST beams, and three hollow steel tubes were used. The flexural behaviour of the retrofitted SCCFST beams was examined regarding flexural strength, failure modes, and moment versus deflection curves, energy absorption, and ductility. Experimental results revealed that the implemented retrofitting schemes efficiently improve the moment carrying capacity and stiffness of the retrofitted SCCFST beams compared to the control beams. The increment in flexural strength ranged from 1% to 46%. Furthermore, the adopted retrofitting schemes were able to restore the energy absorption and ductility of the damaged beams in the range of 35% to 75% of the original beam ductility. Furthermore, a theoretical model was suggested to predict the moment capacity of the retrofitted SCCFST beams. The theoretical model results were in good agreement with the test results.
机译:与其他结构构件类似,自密实混凝土钢管(SCCFST)梁由于许多原因需要进行改造。然而,在文献中很少进行关于用螺栓钢板外部翻新的SCCFST梁的研究。本文旨在通过试验研究螺栓连接的方形自密实钢管混凝土(SCCFST)梁的加固性能,该钢板具有三种不同的改造方案,包括不同的配置和在挠曲下的两种不同的钢板长度。总共使用了18个样本,其中包括12个翻新的SCCFST梁,三个未翻新的(对照)SCCFST梁和三个中空钢管。检查了改型后的SCCFST梁的挠曲特性,包括挠曲强度,破坏模式以及弯矩与挠度曲线,能量吸收和延展性。实验结果表明,与控制梁相比,已实施的改造方案有效地提高了改造后的SCCFST梁的承载力和刚度。抗弯强度的增加范围为1%至46%。此外,采用的改造方案能够将受损梁的能量吸收和延性恢复到原始梁延性的35%至75%之间。此外,提出了一个理论模型来预测改造后的SCCFST梁的弯矩承载力。理论模型结果与试验结果吻合良好。

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