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Static bearing capacity of partially corrosion-damaged reinforced concrete structures strengthened with PET FRP composites

机译:PET FRP复合材料增强部分腐蚀钢筋混凝土结构的静态承载力

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摘要

This study evaluated the static bearing performance of partially corrosion-damaged reinforced concrete (RC) beams and columns strengthened with polyethylene terephthalate (PET) composites. According to the electrochemical corrosion method, the corrosion rate of reinforcements in the key regions of columns and beams were designed as 15%, which conformed to the actual situations of the non-uniformly corroded steel bars in the RC structures. After that, the partially corroded RC columns and beams were strengthened with PET composites. Specimens strengthened with carbon fiber reinforced plastic (CFRP) and without strengthening worked as the control groups. SEM studies showed that the good interface bonding performance between PET and concrete ensured the excellent integrity of PET-strengthened structures. Experimental results showed that the ductility and bearing capacity of columns and beams got greatly decreased due to the corrosion of reinforcements, and PET composites could effectively repair the damagement caused by corroded steel bars. The ductility improvement by PET composites was better than that of CFRP. For axial compression, the ductility index of CP-0 column improved by 334.62% compared to that of CF-0 column. Similar to the corroded RC columns, the ductility index of CP-15 column improved by 127.49% than that of CF-15 column. A calculated model was proposed to predicate the stress-strain relationship of PET composites strengthened partially corroded RC columns accurately. For flexure, PET and CFRP composites strengthened beams had the same ultimate bearing capacity. Meanwhile, PET composites could better ensure the ductility of partially corroded RC beams than that of CFRP. Compared to BF-0 beam, the ductility index of BP-0 beam increased by 93.75%. Compared to BF-15 beam, the ductility index of BP-15 increased by 69.23%. In the compression and flexure tests, the rupture strain of PET composites improved by 114.82%similar to 164.11% than that of CFRP, which took full advantage of the high deformation property of PET composites. The study therefore concludes that PET composites is a suitable material for external strengthening of partially corroded RC structures. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究评估了部分腐蚀破坏的钢筋混凝土(RC)梁和用聚对苯二甲酸乙二酯(PET)复合材料加固的柱的静态承载性能。根据电化学腐蚀方法,将钢筋在柱和梁的关键区域的腐蚀率设计为15%,这与钢筋混凝土结构中不均匀腐蚀的钢筋的实际情况相符。之后,用PET复合材料加固了部分腐蚀的RC柱和梁。对照组采用碳纤维增强塑料(CFRP)加固,未加固的试样作为对照组。 SEM研究表明,PET与混凝土之间的良好界面粘合性能确保了PET增强结构的出色完整性。实验结果表明,由于钢筋的腐蚀,柱和梁的延性和承载力大大降低,PET复合材料可以有效修复锈蚀钢筋造成的损伤。 PET复合材料的延展性改善优于CFRP。对于轴向压缩,与CF-0色谱柱相比,CP-0色谱柱的延展性指数提高了334.62%。与腐蚀的RC柱相似,CP-15柱的延展性指数比CF-15柱提高了127.49%。提出了计算模型,以准确预测部分腐蚀钢筋混凝土柱的PET复合材料的应力-应变关系。对于挠曲,PET和CFRP复合材料增强梁具有相同的极限承载力。同时,与CFRP相比,PET复合材料可以更好地确保部分腐蚀的RC梁的延展性。与BF-0光束相比,BP-0光束的延展性指数提高了93.75%。与BF-15光束相比,BP-15的延展性指数提高了69.23%。在压缩和弯曲试验中,PET复合材料的断裂应变比CFRP改善了114.82%,与CF.的164.11%相似,充分利用了PET复合材料的高变形性能。因此,研究得出的结论是,PET复合材料是用于外部加固部分腐蚀的RC结构的合适材料。 (C)2019 Elsevier Ltd.保留所有权利。

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