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Analysis of adhesive joints used to bond FRP laminates to steel members - A numerical and experimental study

机译:用于将FRP层压板粘合到钢构件上的粘合接头的分析-数值和实验研究

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The strengthening of existing structures using bonded fiber reinforced polymer laminates has attracted a great deal of attention in recent years. However, when compared with concrete structures, the application of this method for strengthening structural steel members is somewhat limited. This is mainly due to the lack of an established design code for treating FRP-strengthened members. Issues such as the complexity of failure modes and the lack of knowledge of the force-transfer mechanism are obstacles that contribute to the difficulty associated with developing accurate design models. A few studies have underlined the need for new design approaches to strengthening steel members, since the existing design methods are not accurate enough.rnThe first step towards developing new design models is to study these adhesive joints. This paper deals with analyses of adhesive joints used to bond CFRP laminates to steel substrates using a numerical and experimental approach. A numerical study of joints has been made utilizing the FE method, while, in the experimental part of the study, an optic measurement technique has been used. Different aspects of joint behavior, such as strain distributions along the bond line and through the thickness of the adhesive layer and failure mechanisms are discussed.
机译:近年来,使用粘结的纤维增强的聚合物层压材料来加强现有结构已经引起了广泛的关注。然而,当与混凝土结构相比时,该方法用于增强结构钢构件的应用受到了一定的限制。这主要是由于缺乏用于处理FRP加固构件的既定设计规范。诸如失效模式的复杂性和对力传递机制的了解之类的问题是造成开发精确设计模型的困难的障碍。由于现有的设计方法不够精确,因此一些研究强调需要采用新的设计方法来加固钢构件。研发新设计模型的第一步是研究这些胶粘接头。本文使用数值和实验方法分析了用于将CFRP层压板粘合到钢基材上的粘合剂接头。利用有限元方法对关节进行了数值研究,而在研究的实验部分中,使用了光学测量技术。讨论了接头行为的不同方面,例如沿粘结线和整个粘合剂层厚度的应变分布以及破坏机理。

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