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Prediction of the Failure Time of Glass Fiber Reinforced Plastic Reinforced Concrete Beams under Fire Conditions

机译:火灾条件下玻璃纤维增​​强塑料梁的失效时间预测

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摘要

A model is proposed to predict the time to failure of reinforced concrete beams in a fire. The model is developed specifically to predict the lifetime of beams reinforced with glass fiber reinforced plastic rebar, but is applicable to beams with any form of reinforcement. The model is based on the calculations for flexural capacity and shear capacity of beams embedded within ACI design codes where time and temperature dependent values for rebar modulus and strength and concrete strength replace the static design values. The base equations are modified to remove safety factors and where necessary the temperature induced reductions in strength for concrete and steel are derived using the equations presented by EUROCODE 2. In order to validate the model it was used to predict the failure times of steel rebar reinforced beams that had been documented in the literature. There was excellent agreement between the model and the reported lifetimes for these conventional beams. The model was applied to predict the lifetimes of two beams that had been manufactured and tested for destruction in a fire by the research group. The model predicted that the failure mode of the beams would be because of rebar rupture as opposed to the design condition of concrete crushing and this was confirmed by the experimental test results. The model provided reasonable agreement with experimental results with a lifetime of 108 min predicted based on flexural failure and 94 and 128 min observed in the experiments.
机译:提出了一个模型来预测火灾中钢筋混凝土梁的破坏时间。该模型是专门为预测使用玻璃纤维增​​强塑料钢筋加​​固的梁的寿命而开发的,但适用于具有任何形式的钢筋的梁。该模型基于ACI设计规范中嵌入的梁的抗弯承载力和抗剪承载力的计算,其中与时间和温度相关的钢筋模量,强度和混凝土强度值取代了静态设计值。修改了基本方程以消除安全因素,并在必要时使用EUROCODE 2给出的方程推导温度引起的混凝土和钢材强度降低。为了验证该模型,该模型用于预测钢筋的失效时间文献中已记录的光束。这些常规光束的模型与所报告的寿命之间有着极好的一致性。该模型用于预测由研究小组制造并测试过的两束光束在火灾中的破坏寿命。该模型预测梁的破坏模式将是由于钢筋的破裂,而不是混凝土破碎的设计条件,这一点已通过实验测试结果得到证实。该模型与实验结果提供了合理的一致性,基于弯曲破坏预测的寿命为108分钟,在实验中观察到的寿命为94和128分钟。

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