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首页> 外文期刊>Fire Safety Journal >Experimental assessment of fire-exposed RC beam-column connections with varying reinforcement development lengths subjected to column removal
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Experimental assessment of fire-exposed RC beam-column connections with varying reinforcement development lengths subjected to column removal

机译:钢筋去除后钢筋扩展长度不同的钢筋混凝土梁柱连接处的实验评估

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摘要

This paper describes an experimental investigation into the behaviour of RC beam-column connections under a column removal scenario induced by fire. A purpose-built hybrid heating furnace is employed to carry out the fire tests on five RC connections with varying reinforcement development lengths, with and without cooling effects. The thermal response of the RC connection specimens, including the temperature field and the axial force-furnace temperature curves, is firstly described. Subsequently, push-down tests are carried out on the beam-column connections, and the horizontal support reactions are closely monitored using a specially-designed sensor system. Based on the experimental results, the joint vertical load-displacement and bending moment rotation relationships are presented, together with an account of the failure modes observed. The mechanical behaviour is discussed in detail, including the tying and rotation capacity provided by the connection specimens, with emphasis on the effect of the reinforcement development length as well as the heating regime. The experimental capacity interaction curves are also compared with the theoretical prediction for ambient condition, and employed to carry out a detailed examination of the underlying failure mechanisms. Finally, the findings are used to provide practical recommendations for enhancing the structural robustness of structural configurations of the form considered in this study.
机译:本文描述了在火灾引起的柱拆除情况下RC梁柱连接行为的实验研究。一个专用的混合加热炉用于对五个钢筋混凝土连接进行防火测试,钢筋连接的长度不同,有无冷却效果。首先描述了钢筋混凝土连接试件的热响应,包括温度场和轴向力-炉温度曲线。随后,对梁柱连接进行下推测试,并使用专门设计的传感器系统密切监视水平支撑反应。根据实验结果,给出了关节的垂直载荷-位移和弯矩旋转关系,并说明了观察到的破坏模式。详细讨论了力学行为,包括连接试件提供的绑扎和旋转能力,重点是增强长度和加热方式的影响。还将实验能力相互作用曲线与环境条件的理论预测值进行比较,并用于对潜在故障机理进行详细检查。最后,这些发现可为提高研究中所考虑形式的结构构型的结构坚固性提供实用建议。

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