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Effect of combined pre-cracking and corrosion on the method of repair of concrete beams

机译:预裂与腐蚀相结合对混凝土梁修复方法的影响

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This study investigated the combined effect of pre-cracking and corrosion on repair methods of reinforced concrete beams. The experimental program consisted of prismatic pre-cracked reinforced concrete beam specimens, exposed to accelerated corrosion. The corrosion rate varied from 5% to 15% and the pre-cracking was achieved by preloading the beams up to 60% of their ultimate loads. Two different methods were used to repair the specimens. Carbon Fiber Reinforced Polymers plates (CFRP) were used to strengthen the bottom portion of the specimens in the first method, and sheets containing carbon fibers were added to the bottom portion, left and right sides of the specimens, in the second method. The test results revealed that, the harmful effect of combined corrosion and pre-cracking was notable especially at 15% corrosion rate. The two methods of repair used can be considered as convenient. The ultimate strengths of the repaired beams were equivalent or significantly higher than those of the control specimens, although reduced deflection capacities were registered after repair. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究探讨了预裂纹和腐蚀对钢筋混凝土梁修复方法的综合影响。实验程序由暴露于加速腐蚀下的棱形预裂钢筋混凝土梁样本组成。腐蚀率从5%到15%不等,通过将梁预加载至其最终载荷的60%,可以实现预开裂。使用两种不同的方法修复标本。在第一种方法中,使用碳纤维增强聚合物板(CFRP)加固样品的底部,在第二种方法中,将含碳纤维的薄板添加到样品的底部,左侧和右侧。测试结果表明,特别是在15%的腐蚀速率下,腐蚀与预开裂相结合的有害影响显着。可以考虑使用两种维修方法很方便。修复后的梁的极限强度等于或明显高于对照样品的极限强度,尽管修复后的挠曲能力有所降低。 (C)2016 Elsevier Ltd.保留所有权利。

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