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Effect of patch repair and strengthening with EBR and NSM CFRP laminates for RC beams with low, medium and heavy corrosion

机译:用EBR和NSM CFRP层压板修补和加固对低,中,重腐蚀的RC梁的效果

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摘要

The experimental results on the effectiveness of patch repair and FRP bonded laminates to retrofit reinforced concrete beams with corrosion damage are discussed in this paper. The uncovering of the damaged concrete cover provides a more accurate assessment of the corrosion degree, as the actual mass loss of reinforcement can be better calibrated. The mass loss of the tensile reinforcement varied at approximately 7.5%-24%. The necessity of the removal of the cracked concrete substrate, treatment of corroded reinforcement and repair by patching with a polymer modified mortar is highlighted. Two different strengthening techniques are implemented, of externally bonded EBR or NSM Carbon FRP laminates, having equivalent axial rigidity. CFRP wraps were also applied for shear strengthening to replace corroded stirrups. The load-deflection curves showed that the effect of corrosion on load bearing capacity and bond between the concrete and steel was detrimental for high mass losses. A satisfactory force transfer through the old and patch repaired concrete and through repair mortar and CFRP reinforcement interface was noted. The shear strengthening not only prevented the debonding of the EB laminate at the end but also improved the bond performance between the laminate and concrete, especially for the high corroded beam. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文讨论了修补修复和FRP粘结层合板对钢筋混凝土梁进行腐蚀破坏的有效性的实验结果。由于可以更好地校准钢筋的实际质量损失,因此,破损的混凝土覆盖层的露出可以更准确地评估腐蚀程度。拉伸增强材料的质量损失在大约7.5%-24%之间变化。强调了清除破裂的混凝土基材,处理腐蚀的增强材料以及用聚合物改性的砂浆修补的必要性。实施了两种不同的加固技术,即具有等效轴向刚度的外部粘结EBR或NSM碳纤维增强塑料层压板。 CFRP包裹材料也可用于剪切加固,以替代腐蚀的马stir。载荷-挠度曲线表明,腐蚀对承重能力和混凝土与钢之间的粘结的影响不利于大量的质量损失。注意到通过旧的和修补的混凝土以及修补砂浆和CFRP加固界面的力传递令人满意。剪切增强不仅可以防止EB层压板最终剥落,而且可以改善层压板与混凝土之间的粘结性能,尤其是对于高腐蚀梁。 (C)2017 Elsevier Ltd.保留所有权利。

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