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Strength of carbon fiber reinforced polymers bonded to concrete and masonry

机译:碳纤维增强聚合物粘结在混凝土和砖石上的强度

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Fiber reinforced polymers (FRPs) have gained popularity in upgrades of reinforced concrete structural elements within the last decade because of their ease of application and high strength-to-weight ratio. In the design of an effective retrofitting solution using FRP systems, the anchorage capacity has an important role. This study presents the results of 57 double shear push-out tests conducted to determine the strength of carbon fiber reinforced polymers (CFRPs) bonded to concrete prisms and hollow clay tiles that are finished with and without plaster. In the experimental program, different types of anchorage methods were tested in a double shear push-out test setup. It was observed that presence of a plaster finish adversely affects the strength of CFRPs bonded to concrete or masonry. Furthermore, it was found that strength of CFRPs bonded to hollow clay tiles are significantly lower than CFRPs bonded to concrete. The proposed embedded anchors acting as shear connector were found to significantly improve the ultimate strength of surface bonded CFRPs both in the presence and absence of plaster finishing. A simple and effective strength model, calibrated using the experimental results, is verified for FRP anchors based on the existing analytical models and experimental observations from this and other studies reported in the literature.
机译:纤维增强聚合物(FRPs)在过去十年中由于其易于使用和高强度/重量比而在钢筋混凝土结构元件的升级中获得了普及。在使用FRP系统设计有效的改造解决方案时,锚固能力具有重要作用。这项研究提出了57次双剪切推出试验的结果,以确定碳纤维增强聚合物(CFRPs)粘结到混凝土棱柱和空心石膏砖上的强度,这些空心砖用或不用石膏涂饰。在实验程序中,在双剪切推出测试装置中测试了不同类型的锚固方法。观察到,石膏饰面的存在会对粘结到混凝土或砖石上的CFRP的强度产生不利影响。此外,发现粘结到空心粘土砖的CFRP的强度明显低于粘结到混凝土的CFRP的强度。发现所提出的用作剪切连接器的嵌入式锚可以在有或没有石膏涂饰的情况下显着提高表面粘结的CFRP的极限强度。根据现有的分析模型以及来自此研究和其他文献报道的实验观察结果,验证了使用实验结果校准的简单有效的强度模型。

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