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Bond Strength Degradation for CFRP and Steel reinforcing Bars in Concrete at Elevated Temperature

机译:高温下混凝土中CFRP和钢筋的粘结强度降低

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摘要

Novel concrete elements are emerging utilizing high performance self-consolidating concrete (HPSCC) reinforced with high-strength, lightweight, and non-corroding carbon fiber reinforced polymer (CFRP) prestressed reinforcement. The fire performance of these elements must be understood before they can be used with confidence. In particular, the bond performance of the novel CFRP reinforcement at elevated temperatures requires investigation. This paper examines the bond performance of a specific type of CFRP tendon as compared with steel prestressing wire. The results of transient elevated temperature bond pullout and tensile strength tests on CFRP tendons and steel prestressing wire are presented and discussed, and show that bond failure at elevated temperature is a complex phenomenon which is influenced by a number of interrelated factors, including the type of prestressing, degradation of the concrete, CFRP, and steel, differential thermal expansion, thermal gradients and stresses, release of moisture from the concrete, and loading. It is shown that CFRP tendons are more sensitive to bond strength reductions than to reductions in tensile strength at elevated temperature.
机译:利用高性能高强度,轻质,不腐蚀碳纤维增强聚合物(CFRP)预应力增强件的高性能自固结混凝土(HPSCC),新型混凝土构件应运而生。在放心使用它们之前,必须了解这些元素的防火性能。特别是,新型CFRP增强材料在高温下的粘结性能需要研究。本文研究了与钢预应力丝相比,特定类型的CFRP腱的粘结性能。给出并讨论了在CFRP筋和钢预应力钢丝上进行的瞬态高温粘结拔出和拉伸强度测试的结果,结果表明,高温下的粘结失效是一个复杂的现象,受多种相关因素的影响,包括预应力,混凝土,CFRP和钢的降解,不同的热膨胀,热梯度和应力,混凝土中水分的释放以及荷载。结果表明,CFRP筋对粘结强度的降低比在高温下对拉伸强度的降低更敏感。

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