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Effect of Imidazoline Inhibitor on the Rehabilitation of Reinforced Concrete with Electromigration Method

机译:咪唑啉抑制剂对电迁移法修复钢筋混凝土的影响

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摘要

Steel bars embedded in reinforced concrete are vulnerable to corrosion in high chloride environments. Bidirectional electromigration rehabilitation (BIEM) is a novel method to enhance the durability of reinforced concrete by extracting chloride out of concrete and introducing an inhibitor to the surface of the steel bar under the action of an electric field. During the migration process, a higher ionization capacity of the inhibitor with a symmetrical molecular structure was introduced. A new imidazoline inhibitor was, therefore, employed in this study due to its great ionization capacity. The effect of imidazoline and triethylenetetramine inhibitor on chloride migration, corrosion potential, and strength of concrete were explored. The research results showed that the effect of chloride extraction and electrochemical chloride extraction made no significant difference on the surface of the concrete, where chloride extraction efficiency was more than 70%, and the chloride extraction efficiency was more than 90% around the location of the steel. while a dry-wet cycle test, the potential of concrete increased by about 200 mV by mixing imidazoline inhibitor. The imidazoline inhibitor was found to be effective at facilitating chloride migration and ameliorating corrosion, meanwhile, it had a negligible impact on the concrete’s strength.
机译:埋在钢筋混凝土中的钢筋在高氯化物环境中容易腐蚀。双向电迁移修复(BIEM)是通过从混凝土中提取氯化物并在电场作用下将抑制剂引入钢筋表面的方法来增强钢筋混凝土的耐久性。在迁移过程中,引入了具有对称分子结构的抑制剂更高的电离能力。因此,由于其强大的电离能力,因此在本研究中使用了一种新型咪唑啉抑制剂。探索了咪唑啉和三亚乙基四胺抑制剂对氯离子迁移,腐蚀电位和混凝土强度的影响。研究结果表明,氯化物提取和电化学氯化物提取的效果在混凝土表面无明显差异,混凝土表面氯化物的提取效率大于70%,氯离子的提取效率大于90%。钢。在进行干湿循环试验时,通过混合咪唑啉抑制剂可将混凝土的电势提高约200 mV。发现咪唑啉抑制剂在促进氯化物迁移和改善腐蚀方面是有效的,同时对混凝土强度的影响可忽略不计。

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