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Behavior of Steel Column-Trees under Fire Conditions

机译:火灾条件下钢柱树的行为

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摘要

A numerical study on the fire performance of bolted splice connections is presented. A finite element (FE) model, incorporating geometric and material nonlinearities, nonlinear contact interactions, and elevated temperature properties of steel was developed for undertaking fire response analyses. The model was validated by comparing its predictions with experimental data. To investigate the effect of critical factors on the behavior of beams and their bolted splice connections, parametric studies were performed using the validated model. Results from the parametric studies indicate that the gaps between link and stub beams, free length of flange splice plate, and thermal gradients developed during fire exposure have a significant effect on fire response of bolted splice connections. The beam fails when deflections exceed the limiting value specified in the current standard. Results also indicate that temperature gradients, lateral restraints, and levels of axial stiffness significantly influence the fire behavior of the beams in column-tree moment-resisting frames.
机译:给出了螺栓连接的防火性能的数值研究。建立了包含几何和材料非线性,非线性接触相互作用以及钢的高温特性的有限元(FE)模型,以进行火灾响应分析。通过将其预测与实验数据进行比较来验证该模型。为了研究关键因素对梁及其螺栓连接接头的性能的影响,使用经过验证的模型进行了参数研究。参数研究的结果表明,连接梁和短梁之间的间隙,法兰拼接板的自由长度以及在火灾中形成的热梯度对螺栓连接的火灾响应有重大影响。当挠度超过当前标准中指定的极限值时,梁会失效。结果还表明,温度梯度,横向约束和轴向刚度水平会显着影响梁在柱状结构抗弯框架中的开火行为。

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