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Flexural Behavior of Preloaded RC Slabs Strengthened with Prestressed CFRP Laminates

机译:预应力CFRP层压板增强RC板的抗弯性能

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Many studies performed on reinforced concrete (RC) members strengthened in flexure with externally bonded (EB) fiber-reinforced polymers (FRPs) have indicated quite low strengthening efficiency caused by debonding of the FRP from the concrete surface prior to the capacity of the FRP material being achieved. It should be emphasized that although flexural strengthening with FPR increases the load-bearing capacity of RC members, it has little effect on the serviceability limit state (i.e., cracking moment and deflections). Prestressing the EB FRP has been proposed as a method of increasing utilization of the FRP tensile strength and of improving the efficiency of strengthening in terms of serviceability limit states. An experimental research program consisting of three series of RC slabs with variations in the longitudinal steel reinforcement ratio, concrete strength, preloading level before strengthening, and adhesion between the CFRP laminates and the concrete is described. A practical and unique aspect of the program focuses on an analysis of the effect of preloading on the strengthening efficiency of RC slabs strengthened with prestressed carbon fiber-reinforced polymer (CFRP) laminates. Although the preloading is one of the most important parameters to be accounted for in the design of strengthening existing RC structures, this aspect has been investigated only rarely. Two levels of slabs preloading were considered: the slab self-weight acting alone and the self-weight plus an additional external load. The self-weight preloading level corresponded to 25 and 14% of the yield strength of nonstrengthened slabs in Series Ⅰ and Ⅲ, respectively. The higher preloading level, equal to 76% of the yield strength of the nonstrengthened slab, was chosen to approach the elastic limit of the slab behavior. Experimental tests yielded promising results for the ultimate and serviceability limit states of the strengthened slabs. The strengthening ratio, defined as the ratio of the difference between the ultimate load of the strengthened and nonstrengthened slabs to the ultimate load of the nonstrengthened slab, reached values in the range of 0.64-1.19. The influence of the tensile steel reinforcement ratio, adhesion between the prestressed CFRP laminate and concrete, and preloading level on the ultimate load carrying capacity following strengthening is discussed.
机译:对用外部粘结的(EB)纤维增强聚合物(FRP)进行抗弯加固的钢筋混凝土(RC)构件进行的许多研究表明,在FRP材料使用之前,由于FRP从混凝土表面脱粘而导致的加固效率非常低。被实现。应该强调的是,尽管用FPR进行挠曲加固可以增加RC构件的承载能力,但对使用极限状态(即开裂力矩和挠度)影响很小。已经提出了对EB FRP进行预应力的方法,以提高FRP拉伸强度的利用率并提高使用寿命极限状态下的加固效率。描述了一个由三个系列的RC板组成的实验研究程序,这些板在纵向钢筋比例,混凝土强度,加固前的预载水平以及CFRP层压板与混凝土之间的粘附力方面有所不同。该程序的实际和独特之处在于分析预加载对用预应力碳纤维增强聚合物(CFRP)层压板增强的RC板的增强效率的影响。尽管预紧力是加强现有RC结构的设计中要考虑的最重要参数之一,但对此方面的研究很少。考虑了两个水平的平板预加载:平板自重单独作用和自重加上额外的外部负载。自重预加载水平分别对应于Ⅰ系列和Ⅲ系列非增强板的屈服强度的25%和14%。选择较高的预载水平,等于未加强板的屈服强度的76%,以接近板性能的弹性极限。实验测试在加固板的极限和使用极限状态下取得了可喜的结果。强化率定义为强化板和非强化板的极限载荷与非强化板的极限载荷之差的比率,其值在0.64-1.19的范围内。讨论了抗拉钢筋比率,预应力CFRP层压板与混凝土之间的粘附力以及预压水平对加强后最终承载力的影响。

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