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Shear strengthening of RC beams with corrosion-damaged stirrups using FRP grid-reinforced ECC matrix composites

机译:使用FRP电网增强ECC矩阵复合材料将RC梁剪切强化RC光束

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This paper presents an experimental investigation of the shear behavior of reinforced concrete (RC) beams with corrosion-damaged stirrups strengthened using a fiber-reinforced polymer (FRP) grid-reinforced engineered cementitious composite (ECC) matrix. A total of 18 beam specimens, including four referential beams and 14 strengthened beams, were prepared and tested. After corroding the stirrups to the expected ratio using the electrochemically accelerated method, the lateral corrosion-damaged concrete cover was removed, and then repaired using the FRP grid-reinforced ECC matrix (FGREM). The main test parameters included the stirrup corrosion level, shear-span ratios, and types and strengthening amounts of the FRP grid. Based on the experimental results, the shear bearing capacity of the beams with corrosion-damaged stirrups improved significantly after being restored using this technique. The embedded FRP grid could effectively share the shear force borne by the stirrups and the ECC improves the deformation characteristics and energy absorption of the specimen owing to its excellent strain-hardening behavior. Furthermore, a theoretical calculation formula was proposed to predict the shear bearing capacity of the strengthened beams based on the truss-arch model, which was confirmed to be safe and accurate after being assessed using the modified version of the demerit points classification (DPC) method.
机译:本文介绍了使用纤维增强聚合物(FRP)电网增强工程水泥复合(ECC)基质加强了钢筋混凝土(RC)梁与腐蚀损坏的腐蚀的抗腐蚀刺激的实验研究。制备并测试了总共18个光束标本,包括四个参考光束和14个强化梁。使用电化学加速方法腐蚀搅拌器以预期的比例,除去横向腐蚀损坏的混凝土盖,然后使用FRP网格增强的ECC矩阵(FGREM)进行修复。主测试参数包括旋涂腐蚀水平,剪切跨度比和类型和加强量的FRP网格。基于实验结果,在使用该技术恢复后,横腐蚀损坏的搅拌梁的剪切承载力显着提高。嵌入式FRP网格可以有效地分享由搅拌器承受的剪切力,并且由于其优异的应变硬化行为,ECC改善了样本的变形特性和能量吸收。此外,提出了理论计算公式以预测基于桁架拱模型的增强光束的剪切承载力,这被证实使用Demerit点分类(DPC)方法的修改版本评估后确认是安全和准确的。

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