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A Modified Fiber-Reinforced Plastics Concrete Interface Bond-Slip Law for Shear-Strengthened RC Elements Under Cyclic Loading

机译:循环荷载作用下抗剪钢筋混凝土构件的修正纤维增强混凝土界面粘结滑移规律

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The objective of this article is to realistically analyze fiber-reinforced plastics (FRP) retrofitted reinforced concrete structures under cyclic loading taking into account FRP-concrete bond-slip law with cyclic bond degradation. In literature, even though numerous studies have been conducted in FRP-concrete interface bond-slip modeling under cyclic loads, a small number of them consider the influence of cyclic degradation on FRP-concrete interface bond behavior. Within this framework, the bond-slip law for carbon fiber-reinforced plastics-concrete interface is revised by utilizing Harajli's and Ko-Sato's approaches. The procedure is distinct from others because it develops existing deficiencies of these approaches, whereas a more reliable modeling process is proposed for use in practice. Conventional bond-slip law of Lu et al. is compared with this interface relationship stated in this investigation and the difference is clearly shown in terms of structural parameters. Experimental tests are conducted at the same time for verification. It is proved that cyclic bond degradation affects the interface behavior; thus, the structural response cannot be omitted in structural evaluations. Structural performance measures are obtained in good agreement for each level of cycles. The technique proposed clearly exhibits structural response difference between monotonic and cyclic loadings while good agreement is reached with experimental results. (C) 2015 Society of Plastics Engineers
机译:本文的目的是考虑循环荷载作用下的FRP-混凝土粘结滑移定律,对循环荷载作用下的纤维增强塑料(FRP)加固钢筋混凝土结构进行实际分析。在文献中,尽管已经在循环荷载下对FRP-混凝土界面粘结滑移模型进行了大量研究,但仍有少数研究者考虑了循环退化对FRP-混凝土界面粘结行为的影响。在此框架内,利用Harajli和Ko-Sato的方法修订了碳纤维增强塑料-混​​凝土界面的粘结滑移法。该过程与其他过程有所不同,因为它发展了这些方法的现有缺陷,而在实践中建议使用更可靠的建模过程。 Lu等人的常规结合滑移定律。将其与本研究中陈述的这种界面关系进行比较,并从结构参数方面清楚地显示出差异。同时进行实验测试以进行验证。证明了环键的降解会影响界面行为。因此,在结构评估中不能忽略结构响应。对于每个循环级别,都可以很好地获得结构性能指标。所提出的技术清楚地显示出单调和循环载荷之间的结构响应差异,同时与实验结果达到了很好的一致性。 (C)2015年塑料工程师学会

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