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Efficiency of insulation layers in fire protection of FRP-confined RC columns-numerical study

机译:FRP限制RC色谱柱数值研究中的绝缘层效率

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This paper addresses the efficiency of thermal insulation layers applied to protect structural elements strengthened by fiber-reinforced polymers (FRP) in the case of fire event. The paper presents numerical modeling and nonlinear analysis of reinforced concrete (RC) columns externally strengthened by FRP and protected by thermal insulation layers when subjected to elevated temperature specified by standard fire tests, in order to predict their residual capacity and fire endurance. The adopted numerical approach uses commercial software includes heat transfer, variation of thermal and mechanical properties of concrete, steel reinforcement, FRP and insulation material with elevated temperature. The numerical results show good agreement with published results of full-scale fire tests. A parametric study was conducted to investigate the influence of several variables on the structural response and residual capacity of insulated FRP-confined columns loaded by service loads when exposed to fire. The residual capacity of FRP-confined RC column was affected by concrete grade and insulation material and was shown to improve substantially by increasing the concrete cover and insulation layer thickness. By increasing the VG insulation layer thickness 15, 32, 44, 57 mm, the loss in column capacity after 5 hours of fire was 30%, 13%, 7% and 5%, respectively. The obtained results demonstrate the validity of the presented approach for estimation of fire endurance and residual strength, as an alternative for fire testing, and for design of fire protection layers for FRP-confined RC columns.
机译:本文解决了在火灾事件的情况下,用于保护纤维增强聚合物(FRP)加强的结构元件的保温层的效率。本文介绍了FRP外部加强的钢筋混凝土(RC)柱的数值模拟和非线性分析,并在标准防火试验规定的温度下,通过隔热层保护,以预测其剩余容量和防火耐力。采用的数值方法使用商业软件包括传热,混凝土,钢筋,FRP和绝缘材料的热和机械性能的变化,具有升高的温度。数值结果表明,与全规模火灾测试的发布结果表现出良好的一致性。进行了参数研究,以研究在暴露于火灾时由服务负荷加载的绝缘FRP限制柱的结构响应和残留能力的影响。 FRP限制RC柱的残余能力受混凝土级和绝缘材料的影响,并显示通过增加混凝土盖和绝缘层厚度基本上改善。通过增加VG绝缘层厚度15,32,44,57mm,5小时火灾后的柱容量分别为30%,13%,7%和5%。所获得的结果表明,估计火灾耐力和剩余强度的估计方法的有效性,作为火灾测试的替代方案,以及用于FRP限制RC柱的防火层的设计。

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