首页> 外文期刊>Journal of Structural Engineering >Experimental investigations on flexural behavior of RC beams strengthenedwith CFRP, GFRP and hybrid FRP wrapping under static load
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Experimental investigations on flexural behavior of RC beams strengthenedwith CFRP, GFRP and hybrid FRP wrapping under static load

机译:CFRP,GFRP和FRP混合包裹加固RC梁在静载荷下抗弯性能的试验研究

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An experimental investigation was conducted on reinforced concrete beams under static load in flexure for studyingthe behavior in service and ultimate load conditions. The beams were wrapped with carbon fibre reinforced polymer(CFRP), glass fibre reinforced polymer (GFRP) and hybrid (Alternative layers of CFRP and GFRP) composites in undamaged condition. The wrapping was also carried out for the beams loaded up to service load and ultimate load. Ductilitybehaviors viz., deflection ductility, energy ductility and curvature ductility of all the beams are presented in this paper.Beams strengthened with CFRP and GFRP registered enormous increase in load carrying capacity in first crack, yieldand ultimate stages when compared to control beam. The percentage increase in service load of control beams with CFRP,GFRP and hybrid (CFRP + GFRP) are found to be about 41% to 51%. The ultimate load was observed to be about 67%to 110%. The repaired beams with CFRP, GFRP and hybrid (CFRP + GFRP) loaded up to service load was observedto be 25% to 52% and 87% to 123% for ultimate load. Compared to control beam, the reduction in strain values atcompression and tension zones at first cracking load levels in strengthened beams are in the range of 36% to 94% and123% to 83%, respectively. The strains at yield and ultimate load levels are also significantly reduced in strengthenedbeams. Results clearly showed that both flexural strength and stiffness of reinforced concrete beams were increased and it will be more effective if the structural members retrofitted or rehabilitated by CFRP, GFRP and combination of theboth in bonding technique.
机译:对钢筋混凝土梁在静载荷下的挠曲进行了实验研究,以研究其在服役和极限载荷条件下的行为。在未损坏的条件下,将梁用碳纤维增强聚合物(CFRP),玻璃纤维增​​强聚合物(GFRP)和杂化材料(CFRP和GFRP的交替层)包裹。还对加载到工作载荷和最终载荷的梁进行了包裹。本文介绍了所有梁的延性,即挠性,能量延性和曲率延性。与控制梁相比,用CFRP和GFRP加固的梁在第一道裂缝,屈服和极限阶段的承载能力大大提高。发现使用CFRP,GFRP和混合纤维(CFRP + GFRP)的控制梁的服务负载增加百分比约为41%至51%。观察到最终载荷为约67%至110%。观察到具有CFRP,GFRP和混合动力(CFRP + GFRP)的修复梁在达到最高载荷时的极限载荷为25%至52%,而87%至123%。与控制梁相比,加固梁在第一裂纹荷载水平下,压缩区和拉伸区的应变值降低分别在36%至94%和123%至83%的范围内。在加固梁中,屈服应变和极限荷载水平的应变也显着降低。结果清楚地表明,钢筋混凝土梁的抗弯强度和刚度均得到提高,如果将结构构件通过CFRP,GFRP以及两者的结合技术进行加固或修复,则将更加有效。

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