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Experimental evaluation of RC beams defected in both concrete strength and steel reinforcement and retrofitted by fiber reinforced polymers

机译:纤维增强聚合物混凝土强度和钢筋混凝土铅型RC梁的实验评价

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Insufficient reinforcement lap-splice is one of the defects, which negatively affect the structural behaviour of reinforced concrete beams. Experimental investigation was carried out to study the efficiency of transverse FRP sheets on enhancing the structural behaviour of RC beams that had defected lap splice zones with normal and low concrete strength. Eight RC rectangular beams were tested in positive bending, four of them were strengthened by transverse FRP wraps in the defected lap splice region and the other four beams were kept unstrengthened and considered as control specimens. The main parameters were concrete compressive strength, type of FRP sheets and the retrofitting length as a percentage of the defected lap splice length. The cracking behaviour, failure modes, load-deflection relationships and the strains in longitudinal steel were investigated. It was concluded that the transverse FRP confining system provided a new mechanism whereby most bars over the spliced region could be used more effectively in the stress transfer between steel and concrete leading to a more ductile failure mode combined with a noticeable increase in the ultimate load.
机译:增强液体不足是一种缺陷之一,对钢筋混凝土梁的结构行为产生负面影响的缺陷之一。进行了实验研究以研究横向FRP纸张效率提高RC梁的结构行为,透视液态和低混凝土强度。八个RC矩形梁以正弯曲测试,其中四个通过横向的液体剪切区域中的横向FRP包装加强,另外四个光束保持不强化并被认为是对照样本。主要参数是混凝土抗压强度,FRP型型和改装长度,作为偏向的圈剪切长度的百分比。研究了裂缝行为,故障模式,载荷偏转关系和纵向钢中的菌株。得出结论是,横向FRP限制系统提供了一种新机制,可以在钢和混凝土之间的应力转移中更有效地使用拼接区域的大多数条形,导致更具韧性的失效模式与最终负载的显着增加。

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