Experimental study on shear performance of CFRP-strengthened RC beams with geopolymer adhesive

IF 3.5 Q1 ENGINEERING, MULTIDISCIPLINARY
Jinliang Liu, Xincheng Su
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引用次数: 0

Abstract

PurposeThe effects of carbon fiber reinforced polymer (CFRP) reinforcement form, adhesive type and pre-crack width on failure mode, shear capacity, deflection response, CFRP strain response and crack patterns of strengthened specimens were investigated.Design/methodology/approachThis paper presents a geopolymer adhesive that matches the performance requirements of CFRP adhesive, which is applied to pre-cracked beams reinforced with CFRP strips. FindingsFor specimens with varying structural properties, two failure modes, the CFRP-concrete interface substrate failure and the fracture failure of CFRP, are observed. Moreover, the shear capacity, ultimate deflection and bending stiffness of the U-shaped CFRP-strengthened beams are enhanced in comparison to the complete-wrapping CFRP-strengthened beams. With an increase in pre-crack width, the increase in shear capacity of RC beams shear-strengthened with CFRP strips is less than that of non-cracked beams, resulting in a limited influence on the stiffness of CFRP-strengthened beams. The comparison of experimental results showed that the proposed finite element model (FEM) effectively evaluated the mechanical characteristics of CFRP-strengthened RC beams.Originality/valueTaking into consideration the reinforcement effect and the concept of environmental protection, the geopolymer adhesive reinforcement scheme is preferable to applying epoxy resin to the CFRP-strengthened RC beams.
CFRP土工聚合物加固RC梁抗剪性能试验研究
目的研究碳纤维增强聚合物(CFRP)加固形式、粘结剂类型和裂缝前宽度对加固试件的破坏模式、抗剪承载力、挠度响应、应变响应和裂缝模式的影响。设计/方法/方法本文提出了一种符合CFRP粘合剂性能要求的地质聚合物粘合剂,用于CFRP带加固的预裂梁。结果对于不同结构性能的试件,观察到两种失效模式,即CFRP混凝土界面基底失效和CFRP断裂失效。此外,U形CFRP加固梁的抗剪承载力、极限挠度和抗弯刚度与完全包裹的CFRP加固相比都有所提高。随着裂缝前宽度的增加,CFRP带剪切加固的RC梁的抗剪承载力增加幅度小于无裂缝梁,从而对CFRP加固梁的刚度影响有限。试验结果对比表明,所提出的有限元模型有效地评估了碳纤维布加固RC梁的力学性能。独创性/价值考虑到加固效果和环保理念,地质聚合物粘结加固方案比将环氧树脂应用于CFRP加固的RC梁更可取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Structural Integrity
International Journal of Structural Integrity ENGINEERING, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
14.80%
发文量
42
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