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Evaluation of Fire Endurance of Concrete Slabs Reinforced with Fiber-Reinforced Polymer Bars

机译:纤维增强聚合物棒增强混凝土板的耐火性评估

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摘要

One of the major safety requirements in the design of buildings is the provision of appropriate fire endurance of structural members. To assess and develop information on the fire endurance of fiber-reinforced polymer (FRP) reinforced concrete structural members, a numerical model was applied to the analysis of FRP-reinforced concrete slabs. The computer program was validated against data obtained from fire endurance tests on concrete slabs reinforced with steel or FRP bars. Parametric studies were carried out to investigate the effect of a range of parameters on the fire performance of FRP-reinforced concrete slabs. Results of the parametric studies show that FRP-reinforced concrete slabs have lower fire resistance than slabs reinforced with conventional reinforcing steel when fire endurance is defined in terms of the critical temperature of the reinforcement. In this context the main factors that influence the fire resistance of FRP-reinforced concrete slabs are: the concrete cover thickness, type of reinforcement, and the type of aggregate in the concrete. A higher fire resistance for FRP-reinforced concrete slabs can be obtained through greater concrete cover thickness and through the use of carbonate aggregate concrete. Based on the parametric studies, a series of simple design charts is presented that can be used to evaluate the fire endurance of FRP-reinforced concrete slabs.
机译:建筑物设计中的主要安全要求之一是提供适当的结构构件耐火性。为了评估和开发有关纤维增强聚合物(FRP)增强混凝土结构构件的耐火性的信息,将数值模型用于分析FRP增强混凝土板。该计算机程序已根据从用钢或FRP筋加固的混凝土板的耐火测试中获得的数据进行了验证。进行了参数研究,以研究一系列参数对FRP增强混凝土板的耐火性能的影响。参数研究的结果表明,当根据钢筋的临界温度来定义耐火性时,FRP增强的混凝土板的耐火性要比用传统的钢筋来增强。在这种情况下,影响FRP增强混凝土板耐火性的主要因素是:混凝土的覆盖层厚度,增强类型和混凝土中集料的类型。通过增加混凝土的覆盖层厚度和使用碳酸盐骨料混凝土,可以使FRP增强的混凝土板具有更高的耐火性。在参数研究的基础上,提出了一系列简单的设计图,可用于评估FRP增强混凝土板的耐火性。

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