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A numerical approach for modeling response of fiber reinforced polymer strengthened concrete slabs exposed to fire

机译:火灾下纤维增强聚合物混凝土板建模响应的数值方法

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摘要

A numerical model for evaluating the performance of fiber-reinforced polymer (FRP) strengthened reinforced concrete (RC) slabs under fire conditions is presented. The numerical model utilizes a macroscopic finite element based approach to trace thermo-mechanical response of FRP-strengthened RC slabs from linear elastic stage to collapse under fire conditions. The model accounts for temperature dependent properties of concrete, steel, FRP, and fire insulation as well as for temperature induced degradation of bond between concrete and FRP. The model is validated by comparing predicted response of FRP strengthened RC slabs with measured temperatures and deflections in fire tests. A case study is also presented to compare fire performance of RC slabs with and without FRP strengthening, as well as with different insulation and bond configurations. Results from the analysis indicate that a FRP strengthened RC slab, without any fire insulation, yields lower fire resistance as compared to conventional RC slab. Also, temperature induced bond degradation significantly influences fire performance of an FRP strengthened RC slab and neglecting bond degradation may lead to un-conservative estimation of fire resistance.
机译:提出了一种用于评估纤维增强聚合物(FRP)增强钢筋混凝土(RC)板在火灾条件下的性能的数值模型。该数值模型利用基于宏观有限元的方法来跟踪FRP加固的RC板在火灾条件下从线性弹性阶段到坍塌的热机械响应。该模型考虑了混凝土,钢,FRP和防火隔热的温度相关特性,以及温度引起的混凝土与FRP之间的粘结退化。通过将FRP增强的RC板的预测响应与火灾测试中测得的温度和挠度进行比较,验证了该模型的有效性。还提供了一个案例研究,以比较具有和不具有FRP增强以及具有不同绝缘和粘结配置的RC板的防火性能。分析结果表明,与传统的RC板相比,FRP加固的RC板没有任何防火隔热,但其耐火性较低。同样,温度引起的粘结降解会严重影响FRP加固的RC板的防火性能,而忽略粘结降解可能会导致耐火性的保守估计。

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