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Experimental study of FRP-strengthened concrete beams with corroded reinforcement

机译:FRP加固混凝土梁与腐蚀加固的实验研究

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Corrosion of steel reinforcement is the major cause of deterioration in reinforced concrete structures. Strengthening of concrete structures has been widely studied. However, most research was conducted on sound structures without considering the effects of corrosion. This paper presents an experimental study of the feasibility of using externally bonded FRP laminates combined with U-jackets, applied directly without repairing the deteriorated concrete cover, to strengthen beams with corroded reinforcement. Ten beams were tested in four-point bending. Two beams were not deteriorated and non strengthened; these served as references. The other eight were pre-loaded to induce flexural cracks and then exposed to accelerated corrosion. Two of the deteriorated beams were not strengthened, three were strengthened with glass-FRP (GFRP) laminates and three with carbon-FRP (CFRP) plates on the beam soffits. On the six strengthened beams, CFRP U-jackets were installed along the span. Local corrosion levels were evaluated with a 3D-scanning technique. Pitting corrosion significantly reduced the load-carrying and deformation capacity of the deteriorated beams. Despite average corrosion levels of 20%, local corrosion levels up to 57% and corrosion-induced cracks up to 1.9 mm wide, the FRPstrengthening method (applied directly to the beams without repairing the deteriorated concrete cover) was effective in upgrading the load-carrying capacity and flexural stiffness. The applied U-jackets effectively suppressed the delamination of the concrete cover and led to the rupture of GFRP laminates and a utilisation ratio of CFRP plates up to 64%. However, improvement in the deformation capacity was not noticeable; this requires further research. (c) 2021 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:钢筋的腐蚀是钢筋混凝土结构劣化的主要原因。广泛研究了混凝土结构的加强。然而,大多数研究在声音结构上进行,而不考虑腐蚀的影响。本文介绍了使用直接施加的外部粘合FRP层压板的可行性的实验研究,直接施加而不修复劣化的混凝土盖,以加强钢梁的腐蚀加固。在四点弯曲中测试十个梁。两个梁不会劣化和未加强;这些是参考。预装其他八个以诱导弯曲裂缝,然后暴露于加速腐蚀。两个劣化的梁未加强,用玻璃-FRP(GFRP)层压板和三个用梁拱圈,用碳-FRP(CFRP)板加强三个劣化的梁。在六个加强梁上,CFRP U套沿跨度安装。用3D扫描技术评估局部腐蚀水平。蚀腐蚀显着降低了劣化光束的承载和变形容量。尽管平均腐蚀水平为20%,局部腐蚀水平高达57%,耐腐蚀裂缝宽度高达1.9毫米,FRPStrowning方法(直接施加到梁的情况下,无需修复劣化的混凝土覆盖)可有效地提升承载载荷容量和弯曲僵硬。所施加的U套夹克有效地抑制了混凝土盖的分层,并导致GFRP层压板的破裂和CFRP板的利用率高达64%。但是,变形能力的改善并不明显;这需要进一步研究。 (c)2021提交人。由elsevier有限公司发布这是CC下的开放式访问文章(http://creativecommons.org/licenses/by/4.0/)。

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