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Effects of tensile softening on the cracking resistance of FRP reinforced concrete under thermal loads

机译:拉伸软化对玻璃纤维增​​强混凝土在热荷载下抗裂性的影响

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摘要

Fiber reinforced polymer (FRP) bars have been widely used as reinforcement for concrete structures. However, under elevated temperatures, the difference between the transverse coefficients of thermal expansion of FRP rebars and concrete may cause the splitting cracks of the concrete cover. As a result, the bonding of FRP-reinforced concrete may not sustain its function to transfer load between the FRP rebar and the surrounding concrete. The current study investigates the cracking resistance of FRP reinforced concrete against the thermal expansion based on a mechanical model that accounts for the tensile softening behavior of concrete. To evaluate the efficacy of the proposed model, the critical temperature increments at which the splitting failure of the concrete cover occurs and the internal crack radii estimated are compared with the results obtained from the previous studies. Simplified equations for estimating the critical temperature increments and the minimum concrete cover required to prevent concrete splitting failure for a designated temperature increment are also derived for design purpose.
机译:纤维增强聚合物(FRP)钢筋已广泛用作混凝土结构的增强。但是,在高温下,FRP钢筋和混凝土的横向热膨胀系数之间的差异可能会导致混凝土表层开裂。结果,FRP增强混凝土的粘结可能无法维持其在FRP钢筋和周围混凝土之间转移载荷的功能。当前的研究基于解释混凝土拉伸软化行为的力学模型,研究了FRP增强混凝土对热膨胀的抗裂性。为了评估所提出模型的有效性,将混凝土覆盖层发生劈裂破坏的临界温度增量和估计的内部裂纹半径与先前研究的结果进行了比较。出于设计目的,还导出了用于估算临界温度增量和在指定的温度增量下防止混凝土分裂失败所需的最小混凝土覆盖层的简化方程式。

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