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Effect of wet-dry cycles on the bond behavior of concrete elements strengthened with NSM CFRP laminate strips

机译:干湿循环对NSM CFRP层压板增强混凝土构件粘结性能的影响

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摘要

The near-surface mounted (NSM) strengthening technique is capable of effectively increase the bearing capacity of structural concrete elements. This technique which basically consists of placing FRP reinforcements inside small grooves cut in the concrete cover, has been widely investigated in terms of structural performance and ability to improve the flexural and shear behaviour of reinforced concrete beams and columns. However, little research has been carried out concerning to the NSM long-term performance and durability. Motivated by the need of increasing the knowledge on the expected durability of the NSM technique using CFRP laminates, this paper presents an experimental program in which direct pull-out tests are carried out for evaluating the bond behaviour of specimens aged through wet-dry cycles. A total of 30 specimens are tested, analysing the effect of the bond length, the groove width, the groove depth and the aging effect on the bond behaviour. Digital image correlation method is also used to identify the bond resistant mechanism developed in an element strengthened using NSM technique. Finally, using the experimental results, an analytical–numerical strategy is applied to establish the local bond stress–slip relationship.
机译:近表面安装(NSM)加固技术能够有效提高结构混凝土构件的承载能力。这项技术基本上是将FRP增强材料放置在混凝土表皮上的小凹槽内,因此在结构性能以及改善钢筋混凝土梁和柱的挠曲和剪切性能方面进行了广泛的研究。但是,关于NSM的长期性能和耐用性的研究很少。由于需要增加对使用CFRP层压板的NSM技术的预期耐久性的了解,本文提出了一个实验程序,在该程序中进行了直接拉拔测试,以评估通过干湿循环老化的试样的粘结性能。总共测试了30个样品,分析了粘结长度,槽宽,槽深和时效对粘结性能的影响。数字图像相关方法还用于识别在使用NSM技术强化的元件中开发的抗粘结机制。最后,利用实验结果,采用分析数值策略建立局部粘结应力-滑动关系。

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