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Finite Element Modeling of Carbon Fiber-Reinforced Polymer Reinforced Concrete Beams under Elevated Temperatures

机译:高温下碳纤维增强聚合物梁的有限元建模

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摘要

The paper presents details of a three-dimensional finite element (FE) model for the prediction of response of reinforced concrete (RC) beams under an elevated temperature regime. The beams were reinforced with either steel or fiber-reinforced polymer (FRP) bars. Crack formation and propagation were modeled with the help of smeared cracks. Changes in the material properties of both concrete and reinforcing bars at high temperatures have been considered. Constitutive models for the temperature-dependent material properties of carbon FRP (CFRP) bars and thermal expansion coefficients for both concrete and steel have been proposed. The effects of tension softening and stiffening have been included in the model. Excellent convergence and numerical stability of the formulation was found. The models showed good agreement with the recorded data of temperature and beam strength and stiffness. Analytical concrete stress distribution is compared in steel and FRP reinforced beams and differences are discussed.
机译:本文介绍了三维有限元(FE)模型的详细信息,用于预测高温状态下钢筋混凝土(RC)梁的响应。梁用钢或纤维增强聚合物(FRP)钢筋加固。裂纹的形成和扩展是借助涂污裂纹建模的。已经考虑了高温下混凝土和钢筋的材料性能的变化。提出了碳纤维增强塑料(CFRP)钢筋随温度变化的材料特性以及混凝土和钢的热膨胀系数的本构模型。该模型包括了拉伸软化和变硬的影响。发现该制剂具有优异的收敛性和数值稳定性。模型与记录的温度,梁强度和刚度数据显示出良好的一致性。比较了钢和FRP加固梁中混凝土的分析应力分布,并讨论了差异。

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