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Ultimate strength of tubular T-joints reinforced with doubler plates after fire exposure

机译:着火后用双层板加强的管状T型接头的极限强度

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Two doubler-plate-reinforced tubular T-joint specimens were tested to failure under axial loading. One specimen was tested at ambient temperature and the other was tested after a heating and cooling process. The failure mode for both specimens was the overall flexural failure of the chord. Load-displacement curves revealed that the heating and cooling process did not exert any negative influence on the stiffness of the joints but did slightly diminish their ultimate strength. A finite element (FE) method was then developed to simulate the structural response of the joint during a complete fire process, including ambient-temperature, heating, cooling, and post fire stages. The results of the FE simulation were compared with the experimental data and that from previous literature. The comparison illustrated that the FE method reliably and accurately predicted the structural response of the joints. The FE method was then used in a parametric study, which revealed that the ultimate strength of the joint increased with beta, xi, and epsilon, but did not change with tau ranging from 0.4 to 0.8. Statistical analysis of the FE results indicated that the "twice elastic slope method" was more general and efficient than the 3% deformation limit for determining the ultimate strength of tubular joints. A simple approach to evaluate the post-fire strength of tubular T-joints reinforced with doubler plates is discussed.
机译:测试了两个加强板增强的管状T型接头试样在轴向载荷下的破坏。一个样品在环境温度下进行测试,另一个在加热和冷却过程后进行测试。两个标本的破坏模式都是弦的整体弯曲破坏。载荷-位移曲线表明,加热和冷却过程对接头的刚度没有任何负面影响,但会稍微降低其极限强度。然后开发了一种有限元(FE)方法,以模拟整个火灾过程中接头的结构响应,包括整个环境温度,加热,冷却和火灾后阶段。有限元模拟的结果与实验数据和以前的文献进行了比较。比较表明,有限元方法能够可靠,准确地预测接头的结构响应。然后,将有限元方法用于参数研究,该研究表明,关节的极限强度随β,xi和ε的增加而增加,但在tau范围为0.4至0.8时不变。有限元结果的统计分析表明,“两次弹性斜率法”比3%变形极限在确定管状接头的极限强度方面更为通用和有效。讨论了一种简单的方法来评估用双层板增强的管状T形接头的击后强度。

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