Sakar Gokhan, Celik Huseyin Kursat
Department of Civil Engineering, Dokuz Eylul University, İzmir 35210, Türkiye.
Department of Civil Engineering, Izmir University of Economics, Balçova, İzmir 35330, Türkiye.
Polymers (Basel). 2025 Jun 12;17(12):1628. doi: 10.3390/polym17121628.
This study investigates strengthening reinforced concrete (RC) beams using fiber-reinforced polymers (FRPs). Nine samples were cast and strengthened with varying parameters, including the width, number of laminates, use of anchors, and application of prestressing. A novel device-the easy prestressing machine (EPM)-was developed to apply prestress. The EPM is lightweight and operable manually, enabling up to 10% prestressing. All specimens were tested under three-point bending until failure, and load-displacement curves were recorded. An analytical method based on curvature increment and incorporating material nonlinearities is also proposed to estimate the load-displacement response of RC beams with and without FRP strengthening. Both experimental and analytical results are presented and compared. The analytical model strongly agreed with the experimental results, showing Pearson correlation coefficients exceeding 90% for most specimens. According to the experimental findings, applying FRP, particularly when combined with anchorage and prestressing, increased the load-bearing capacity by up to 45%. Anchorage and prestressing effectively mitigate premature debonding, with prestressing showing a more pronounced impact on enhancing bond performance and load capacity. Based on the results, conclusions regarding the analytical model, structural behavior, and optimal strengthening strategies are discussed.
本研究调查了使用纤维增强聚合物(FRP)加固钢筋混凝土(RC)梁的情况。浇筑了九个样本,并采用不同参数进行加固,这些参数包括宽度、层压板数量、锚固的使用以及预应力的施加。开发了一种新型装置——简易预应力机(EPM)——来施加预应力。EPM重量轻且可手动操作,能实现高达10%的预应力。所有试件均在三分点弯曲下进行测试直至破坏,并记录了荷载-位移曲线。还提出了一种基于曲率增量并考虑材料非线性的分析方法,以估计有和没有FRP加固的RC梁的荷载-位移响应。给出并比较了实验和分析结果。分析模型与实验结果高度吻合,大多数试件的皮尔逊相关系数超过90%。根据实验结果,应用FRP,特别是与锚固和预应力相结合时,可使承载能力提高多达45%。锚固和预应力有效地减轻了过早脱粘,预应力对增强粘结性能和承载能力的影响更为显著。基于这些结果,讨论了关于分析模型、结构性能和最佳加固策略的结论。