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Performance of an unprotected steel structure subjected to repeated fire at a firefighter training facility

机译:消防员训练场所屡遭火灾的无保护钢结构的性能

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An evaluation of a single story unprotected steel structure exposed to repeated fire during the training of fire fighters is described. Temperatures are monitored on the structure using resistance temperature detectors connected to a data acquisition system. Temperatures of up to 384℃ are measured in the steel of the structures, which are below levels likely to cause much degradation in stiffness or strength. Uniform heating of the columns was shown to result in minimal stresses in the structure as the columns were relatively free to deform axially. Differential temperatures, however, where one side of the member is heated by a greater amount than the opposite side of the member, resulted in stresses calculated using an elastic analysis, up to 16 times greater than the yield strength and can thus explain large permanent curvatures observed in the columns. Coupon tests on steel samples from the columns exposed to repeated fire showed some hardening of the steel, possibility attributed to the plastic deformations in the columns, although the ultimate strain in the material was not greatly affected. Based on the monitoring and analysis, no aspects of the structure are considered to present an immediate hazard to the safety of the users. However, without improved cooling, plastic deformation of some members is expected.
机译:描述了在消防员训练期间暴露于反复着火的单层无保护钢结构的评估。使用连接到数据采集系统的电阻温度检测器监测结构上的温度。在结构钢中测得的最高温度为384℃,该温度低于可能导致刚度或强度大大降低的温度。由于柱相对自由地轴向变形,因此柱的均匀加热显示出在结构中产生的应力最小。但是,当构件的一侧比构件的另一侧加热更多的温度时,差温会导致使用弹性分析计算得出的应力,该应力最多比屈服强度大16倍,因此可以解释大的永久曲率在列中观察到。对暴露于反复着火的柱子上的钢样品进行的优惠券测试表明,钢有一定程度的硬化,这可能归因于柱子的塑性变形,尽管材料的极限应变并未受到很大影响。根据监视和分析,该结构的任何方面都不会对用户的安全构成直接危害。但是,如果不改善冷却效果,则可能会导致某些部件发生塑性变形。

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