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Study on the Flexural Performance of Hybrid-Reinforced Concrete Beams with a New Cathodic Protection System Subjected to Corrosion

机译:新型抗腐蚀阴极保护系统对混合钢筋混凝土梁抗弯性能的研究

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摘要

Steel corrosion is considered as the main factor for the insufficient durability of concrete structures, especially in the marine environment. In this paper, to further inhibit steel corrosion in a high chloride environment and take advantage of the dual-functional carbon fiber reinforced polymer (CFRP), the impressed current cathodic protection (ICCP) technique was applied to the hybrid-reinforced concrete beam with internally embedded CFRP bars and steel fiber reinforced polymer composite bar (SFCB) as the anode material while the steel bar was compelled to the cathode. The effect of the new ICCP system on the flexural performance of the hybrid-reinforced concrete beam subjected to corrosion was verified experimentally. First, the electricity-accelerated precorrosion test was performed for the steel bar in the hybrid-reinforced beams with a target corrosion ratio of 5%. Then, the dry–wet cycles corrosion was conducted and the ICCP system was activated simultaneously for the hybrid-reinforced concrete beam for 180 days. Finally, the three-point bending experiment was carried out for the hybrid-reinforced concrete beams. The steel bars were taken out from the concrete to quantitatively measure the corrosion ratio after flexural tests. Results showed that the further corrosion of steel bars could be inhibited effectively by the ICCP treatment with the CFRP bar and the SFCB as the anode. Additionally, the ICCP system showed an obvious effect on the flexural behavior of the hybrid-reinforced concrete beams: The crack load and ultimate load, as well as the stiffness, were enhanced notably compared with the beam without ICCP treatment. Compared with the SFCB anode, the ICCP system with the CFRP bar as the anode material was more effective for the hybrid-reinforced concrete beam to prevent the steel corrosion.
机译:钢腐蚀被认为是混凝土结构耐久性不足的主要因素,特别是在海洋环境中。为了进一步抑制高氯化物环境中的钢腐蚀并利用双功能碳纤维增强聚合物(CFRP)的优势,将外加电流阴极保护(ICCP)技术应用于内部具有混合动力的钢筋混凝土梁。嵌入CFRP钢筋和钢纤维增强聚合物复合材料钢筋(SFCB)作为阳极材料,同时将钢筋强迫进入阴极。实验证明了新的ICCP系统对混合钢筋混凝土梁受腐蚀的抗弯性能的影响。首先,对杂化钢筋梁中的钢筋进行了电加速预腐蚀试验,目标腐蚀率为5%。然后,进行了干湿循环腐蚀,并为混合钢筋混凝土梁同时激活了ICCP系统180天。最后,对混合钢筋混凝土梁进行了三点弯曲试验。从混凝土中取出钢筋,以在弯曲试验后定量测量腐蚀率。结果表明,以CFRP棒和SFCB为阳极的ICCP处理可以有效地抑制钢筋的进一步腐蚀。此外,ICCP系统对混合钢筋混凝土梁的抗弯性能表现出明显的影响:与未经ICCP处理的梁相比,裂缝荷载和极限荷载以及刚度得到了显着提高。与SFCB阳极相比,以CFRP筋为阳极材料的ICCP系统对混合钢筋混凝土梁更有效,可防止钢腐蚀。

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