首页> 外文期刊>Journal of Performance of Constructed Facilities >Influence of Further Corrosion on Structural Behavior of Corroded Reinforced-Concrete Beam Strengthened with Steel Plate Using Different Strengthening Schemes
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Influence of Further Corrosion on Structural Behavior of Corroded Reinforced-Concrete Beam Strengthened with Steel Plate Using Different Strengthening Schemes

机译:进一步腐蚀对钢板使用不同强化方案加固钢板腐蚀加固混凝土梁结构行为的影响

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This paper presents the results of an experimental study investigating the mechanical behavior of corroded beams strengthened by three different strengthening schemes, and the influence of further corrosion on the structural performance of strengthened corroded beams. Eight rectangular reinforced-concrete (RC) beams were tested through a three-point bending system. The experimental results showed that the failure modes of the strengthened corroded beams were diagonal tensile failure, flexural failure, and support crush failure, respectively. The increases in ultimate load capacity and rigidity of the corroded beams strengthened with combined strengthening were up to 39.44% and 127.57%, respectively, compared with those of the corroded beams. The ductility of the tested beams strengthened with a single U-shaped steel strip was 16.97% greater than that of the corroded beams, while the ductility of the corroded beams strengthened with flexure strengthening and combined strengthening was, respectively, 4.6% and 28.8% lower than that of the corroded beams due to brittle failure. Compared with the strengthened corroded beams, the ductility and ultimate load capacity of all strengthened beams subjected to further corrosion (5% average corrosion loss of the cross section of the tensile steel bar) increased from 53.14% to 73.39% and from 37.37% to 53.13%, respectively. It was found that further corrosion had a small influence on the rigidity of tested beams strengthened by flexure strengthening and combined strengthening as opposed to the beams strengthened by shear strengthening.
机译:本文介绍了一种实验研究的结果,研究了三种不同强化方案加强的腐蚀梁的力学行为,以及进一步腐蚀对加强腐蚀梁结构性能的影响。通过三点弯曲系统测试八个矩形增强混凝土(RC)梁。实验结果表明,增强腐蚀光束的故障模式分别是对角线拉伸破坏,弯曲故障和支持压碎失效。与腐蚀梁的组合相比,腐蚀光束增强的腐蚀梁的最终负载能力和刚度的增加分别高达39.44%和127.57%。用单个U形钢带加强的测试梁的延展性大于腐蚀梁的16.97%,而腐蚀光束的延展性分别为强化强化和组合强化,4.6%和28.8%比由于脆性失败引起的腐蚀光束。与加强腐蚀梁相比,经过进一步腐蚀的所有加强光束的延展性和最终负载能力(拉伸钢棒横截面的5%平均腐蚀损失)从53.14%增加到73.39%,从37.37%到53.13 %, 分别。发现进一步的腐蚀对通过挠曲强化和组合强化而强化的测试梁的刚度影响,而与通过剪切强化强化的梁相反。

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