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Strengthening of the Net Section of Steel Elements under Tensile Loads with Bonded CFRP Strips

机译:碳纤维布粘结加固拉伸载荷下钢构件的净截面。

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The use of carbon-fiber-reinforced polymer (CFRP) is an increasingly common solution for the strengthening of structures. However, the majority of research and applications have focused on the retrofitting of concrete structures. The applications of adhesively bonded CFRP to enhance the load-carrying capacity of metallic elements has been widely studied in the aeronautical industry, but it is also a promising technique for the area of civil engineering. This paper presents an experimental study that was designed to verify the effectiveness of the use of CFRP for the strengthening of the net section of steel elements under tensile loading. A series of tensile tests were conducted with different bond lengths, number of layers, and surface preparations of the steel. The specimens consisted of double lap joints and steel plates with various hole configurations. The ultimate load, the failure mode, and the effective bond length for CFRP-strengthened specimens were determined. The results showed that using CFRP sheets for the strengthening to prevent net area failure provides no gain on the ultimate strength, a small gain at the elastic limit, and a larger gain if the designer accepts extending the limit state from the elastic limit to the debonding limit. (C) 2015 American Society of Civil Engineers.
机译:碳纤维增强聚合物(CFRP)的使用是加强结构的一种越来越普遍的解决方案。但是,大多数研究和应用都集中在混凝土结构的改造上。在航空工业中,粘合CFRP增强金属元素的承载能力的应用已得到广泛研究,但它在土木工程领域也是有前途的技术。本文提出了一项实验研究,旨在验证使用CFRP来增强钢在拉伸载荷下的净截面的有效性。在不同的粘结长度,层数和表面处理条件下进行了一系列拉伸试验。样品由双搭接接头和具有各种孔构型的钢板组成。确定了CFRP加固试样的极限载荷,破坏模式和有效粘结长度。结果表明,使用CFRP片材进行加固以防止净面积破坏不会增加极限强度,而在弹性极限处则增加很小,而如果设计人员接受将极限状态从弹性极限扩展到脱粘,则可获得更大的收益。限制。 (C)2015年美国土木工程师学会。

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