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Unbonded Post Tensioned Concrete Slabs in Fire - Part II - Modelling Tendon Response and the Consequences of Localized Heating

机译:无粘结后张拉混凝土楼板火灾-第二部分-建模腱响应和局部加热的后果

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摘要

This is Part II of a two part paper dealing with the current state of knowledge of the fire-safe structural design and construction of unbonded post-tensioned (UPT) flat plate concrete structures. Part I provided detailed results of nineteen transient high temperature stress relaxation tests on restrained UPT tendons of realistic length and parabolic longitudinal profiles. Experimentation identified several credible concerns for UPT concrete structures in fire, most notably the potential for premature tendon rupture due to localized heating, which may result from a number of possible causes in a real structure. The real world response of continuous UPT tendons both during and after heating is largely unknown, and is dependent on factors which are not currently accounted for either in standard fire tests or by available prescriptive design guidance. This second part of the paper presents and applies a numerical model to predict the time-temperature-stress-strength interdependencies of stressed UPT tendons under localized transient heating, as may be experienced by tendons in a real concrete building in a real fire. The model is used, along with previously developed and validated computational models for heat transfer and prestress relaxation in UPT tendons, to assess existing prescriptive concrete cover requirements for UPT slabs. It is shown that localized heating of UPT tendons is likely to induce premature tendon rupture during fire, and that current prescriptive code procedures based on concrete cover alone are, in general, insufficient to prevent this. Based on the data presented it appears that minimum code prescribed concrete covers for UPT structures require revision if premature tendon rupture during fire is to be avoided.
机译:这是一个由两部分组成的论文的第二部分,该论文探讨了防火结构设计和无粘结后张预应力(UPT)平板混凝土结构的当前知识水平。第一部分提供了在实际长度和抛物线形纵断面约束的UPT筋上进行的十九次瞬态高温应力松弛测试的详细结果。实验确定了UPT混凝土结构着火的几个令人担忧的问题,最值得注意的是由于局部加热而导致腱过早断裂的可能性,这可能是由实际结构中的多种可能原因引起的。在加热过程中和加热后,连续的UPT肌腱在现实世界中的响应在很大程度上是未知的,并且取决于当前在标准耐火试验或可用的规范性设计指南中尚未考虑的因素。本文的第二部分介绍并应用了一个数值模型来预测局部瞬态加热下受压UPT钢筋的时间-温度-强度-强度相互依赖性,这可能是钢筋在真实火灾中的实际混凝土建筑物中可能会经历的。该模型与先前开发和验证的UPT筋中的传热和预应力松弛计算模型一起,用于评估UPT楼板现有的规定混凝土覆盖要求。结果表明,UPT筋的局部加热很可能在火灾中引起筋的过早断裂,而目前仅基于混凝土覆盖层的现行规范程序通常不足以防止这种情况的发生。根据提供的数据,如果要避免在火灾期间肌腱过早破裂,则需要修改UPT结构的最低规范规定的混凝土保护层。

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