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首页> 外文期刊>Journal of bridge engineering >Full-Scale Experimental Investigation of Repair of Reinforced Concrete Interstate Bridge Using CFRP Materials
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Full-Scale Experimental Investigation of Repair of Reinforced Concrete Interstate Bridge Using CFRP Materials

机译:CFRP材料修复钢筋混凝土州际桥梁的大型试验研究。

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摘要

An experimental study is presented of the behavior of eight reinforced concrete bridge girders taken from a decommissioned Interstate bridge and retrofitted with three different carbon-fiber-reinforced polymer (CFRP) systems. Specimens were subjected to monotonic loading to failure with and without significant fatigue conditioning. Experimental observations indicated that intermediate crack-induced debonding was the dominant failure mode for monotonically loaded beams and that degradation of the CFRP-to-concrete interface was caused by fatigue conditioning. Conventional adhesive applied and near-surface mounted (NSM) CFRP systems behaved well under monotonic loads, with the NSM system exhibiting significantly greater ductility. Powder actuated fastener applied retrofit was observed to be less efficient, requiring a relative slip of the CFRP in order to engage the shear transfer mechanism of the fasteners. The application of current accepted design guidelines for FRP retrofit indicated that guidelines aimed at mitigating debonding failure appear to be appropriately conservative under monotonic loading conditions; however, a significant additional reduction in CFRP strain limits is required to account for even small levels of fatigue loading.
机译:进行了一项实验研究,研究了从退役的州际桥梁中取出的八种钢筋混凝土桥梁的性能,并用三种不同的碳纤维增强聚合物(CFRP)系统进行了改造。在有和没有明显疲劳调节的情况下,使试样经受单调加载而失效。实验观察表明,对于单调加载的梁,中间裂纹引起的脱胶是主要的破坏模式,而CFRP到混凝土界面的退化是由疲劳调节引起的。常规的胶粘剂和近表面贴装(NSM)CFRP系统在单调载荷下表现良好,NSM系统表现出明显更大的延展性。观察到粉末致动的紧固件施加的改型效率较低,需要CFRP的相对滑动才能与紧固件的剪切传递机构接合。应用当前公认的FRP改造设计指南表明,旨在减轻脱胶破坏的指南在单调加载条件下显得较为保守;但是,即使考虑到很小的疲劳载荷水平,也需要显着降低CFRP应变极限。

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