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Bond Strength Degradation for Pre-Stressed Steel and Carbon FRP Bars in High-Performance Self-Consolidating Concrete at Elevated Temperatures and in Fire

机译:高温和火灾中高性能自固结混凝土中预应力钢和碳纤维布的粘结强度降低

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摘要

Novel structures are emerging utilizing high performance, self-consolidating, fibre-reinforced concrete (HPSCC) reinforced with high-strength, lightweight, and non-corroding prestressed reinforcement. One example of this is a new type of precast carbon fibre reinforced polymer (CFRP) pretensioned HPSCC panel intended as load-bearing panels for building envelopes. As for all load-bearing structural members in building applications, the performance of these members in fire must be understood before they can be used with confidence. In particular, the bond performance of CFRP prestressing reinforcement at elevated temperatures is not well known. This paper examines the fire performance of these new types of structural elements, placing particular emphasis on the bond performance of CFRP and steel wire prestressing reinforcement at elevated temperatures. The results of large-scale fire tests and transient high temperature tensile and bond-pullout tests on CFRP and steel prestressing bars embedded in HPSCC cylinders are presented and discussed to shed light on the fire performance of these structural elements.
机译:利用高性能,自固结,纤维增强混凝土(HPSCC),高强度,轻质和不腐蚀的预应力增强材料,新型结构正在出现。其中一个例子是一种新型的预制碳纤维增强聚合物(CFRP)预拉伸HPSCC面板,旨在用作建筑围护结构的承重面板。对于建筑应用中的所有承重结构构件,必须充分了解这些构件在火灾中的性能,然后才能放心使用它们。特别是,CFRP预应力增强件在高温下的粘结性能尚不为人所知。本文研究了这些新型结构元件的防火性能,特别强调了CFRP和钢丝在高温下预应力钢筋的粘结性能。提出并讨论了对嵌入在HPSCC气缸中的CFRP和钢预应力筋进行大规模耐火测试以及瞬态高温拉伸和粘结拔出测试的结果,以阐明这些结构元件的耐火性能。

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