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Experimental and analytical study on CFRP strips-to-concrete bonded joints using EBROG method

机译:EBROG法对CFRP板条与混凝土粘结节点进行试验和分析研究

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Retrofitting of reinforced concrete (RC) members with fiber reinforced polymers (FRPs) by means of Externally Bonded Reinforcement On Groove (EBROG) method was confirmed as a brilliant substitute to conventional method of externally bonded reinforcement (EBR). However, efficiency of EBROG method on improving bond properties of pre-cured strips with high fiber content and high load carrying capacity has not been studied before.In this research, a set of 10 single lap-shear tests were carried out to assess the behavior of FRP-to-concrete bonded joints. Pre-cured CFRP strips were bonded to concrete using EBR and EBROG methods. Full-field displacement measurements were carried out through a 2D digital image correlation system, DIC. All tests were carried out at the Isfahan University of Technology in Iran. In addition, analytical modeling was conducted for the first time to obtain bond shear stress-slip behavior for EBROG methods. Based on experimental results, bond resistance in EBROG system increased considerably compared to EBR. For instance, EBROG method with two 5 × 5 mm (width × depth) grooves led to more than 90% increase in bond capacity, in comparison to EBR method. Furthermore, debonding in concrete substrate was eliminated when EBROG method was used. Cohesion failure in adhesive accompanied with FRP delamination was observed as the dominant failure mode. Analytical results revealed that bond shear stress resistance increased in EBROG joints compared to EBR ones. Moreover, the effective bond length increased in EBROG method when CFRP strips were utilized. Interfacial shear stresses, therefore, transferred to the concrete substrate through a larger bond area. So, the specimen resisted higher anchorage load and larger slip, and debonding was postponed.
机译:人们已经证实,通过外部粘结的沟槽加固(EBROG)方法对纤维增强聚合物(FRP)进行加固的钢筋混凝土(RC)构件可以替代传统的外部粘结加固(EBR)方法。然而,EBROG方法对提高高纤维含量和高承载能力的预固化带材粘结性能的效率尚未进行过研究。在这项研究中,我们进行了10组单次搭接剪切试验以评估其性能。 FRP到混凝土的粘结缝。使用EBR和EBROG方法将预固化的CFRP条粘结到混凝土上。全场位移测量是通过2D数字图像相关系统DIC进行的。所有测试均在伊朗伊斯法罕工业大学进行。此外,首次进行了分析建模,以获得EBROG方法的粘结剪切应力-滑动行为。根据实验结果,与EBR相比,EBROG系统的抗粘结性大大提高。例如,与EBR方法相比,具有两个5××5×mm(宽×深)凹槽的EBROG方法导致键合能力提高了90%以上。此外,当使用EBROG方法时,消除了混凝土基材中的剥离。伴随着FRP分层的胶粘剂内聚破坏是主要的破坏模式。分析结果表明,与EBR接头相比,EBROG接头的粘结剪切应力抗性增加。此外,当使用CFRP胶条时,EBROG方法增加了有效键长。因此,界面剪切应力通过较大的粘结面积传递到混凝土基底上。因此,该标本抵抗较高的锚固载荷和较大的滑移,并推迟了脱胶。

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