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Serviceability of corrosion-affected RC beams after patch repairs and FRPs under load

机译:修补后的钢筋混凝土和荷载作用下的FRP后,受腐蚀的RC梁的使用寿命

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Department of Civil Engineering, University of Cape Town, Private Bag X3, Rondebosch 7700, South Africa;Department of Civil Engineering, University of Cape Town, Private Bag X3, Rondebosch 7700, South Africa;Department of Civil Engineering, University of Cape Town, Private Bag X3, Rondebosch 7700, South Africa;%Substantial resources continue to be used worldwide to repair corroding reinforced concrete (RC) structures with the intent to meet or extend their design service life. Experimental observations have shown that the rate of steel corrosion as well as the extent of corrosion damage on RC structures is very much influenced by the level of the sustained load during the corrosion process. It is therefore expected that the effectiveness of interventions to maintain the serviceability of corroded structures will also be influenced by the level of the sustained load. This paper presents experimental results and a discussion on the effectiveness of patch repairs and fibre reinforced polymer (FRP) bonded plates to restore the serviceability state of quasi-full-scale RC beams (153 x 254 x 3,000 mm) that were corroded and repaired whilst under sustained service loads. Steel corrosion was induced using two sequential corrosion processes; firstly accelerated corrosion by impressing an anodic current followed by natural corrosion. It was found that under natural steel corrosion; (1) no additional widening of corrosion cracks was observed when the load applied on test beams was reduced without repairs. However, increasing the load increased the rate of corrosion crack widening; (2) despite having a significantly lower rate of steel corrosion, the rate of widening of corrosion cracks was at times comparable to the corresponding rate under the accelerated corrosion process; and (3) strengthening with FRPs without patch repairs increased the load-bearing capacity of the beams but worsened their serviceability state in terms of crack widths. It was concluded that strengthening of corrosion-affected RC structures with FRPs should be done subsequent to patch repairs.
机译:开普敦大学土木工程系,南非X7,Rondebosch 7700私人袋子;开普敦大学土木工程系,南非Rondebosch 7700,Private Bag X3;南非,开普敦大学土木工程系,南非南非Rondebosch 7700,Private Bag X3;%为了满足或延长其设计使用寿命,全球仍在继续使用大量资源修复腐蚀的钢筋混凝土(RC)结构。实验观察表明,钢的腐蚀速率以及对RC结构的腐蚀破坏程度在很大程度上受腐蚀过程中持续荷载水平的影响。因此,预期维持腐蚀结构的可维护性的干预措施的有效性也将受到持续荷载水平的影响。本文介绍了实验结果,并讨论了修补和纤维增强聚合物(FRP)粘结板恢复被腐蚀和修复的准全尺寸RC梁(153 x 254 x 3,000 mm)的使用寿命状态的有效性。在持续的服务负荷下。钢的腐蚀是通过两个顺序的腐蚀过程引起的。首先通过施加阳极电流来加速腐蚀,然后自然腐蚀。发现在天然钢的腐蚀下; (1)在不进行修理的情况下减少施加在测试梁上的载荷时,未观察到腐蚀裂纹的进一步扩大。但是,增加载荷会增加腐蚀裂纹扩展的速度; (2)尽管钢的腐蚀速率明显降低,但腐蚀裂纹扩展的速率有时与加速腐蚀过程中的相应速率相当; (3)在不进行修补的情况下使用FRP进行加固会提高梁的承载能力,但会降低其裂缝宽度的可使用性状态。结论是,应在修补修补后使用FRP加固受腐蚀的RC结构。

著录项

  • 来源
    《Materials and structures》 |2011年第1期|p.331-349|共19页
  • 作者单位

    Department of Civil Engineering, University of Cape Town, Private Bag X3, Rondebosch 7700, South Africa;

    Department of Civil Engineering, University of Cape Town, Private Bag X3, Rondebosch 7700, South Africa;

    Department of Civil Engineering, University of Cape Town, Private Bag X3, Rondebosch 7700, South Africa;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    concrete; corrosion; service life; cracking; frp; patch repair;

    机译:混凝土;腐蚀;服役生涯;开裂;frp;补丁修复;

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