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Conventional and pulse cathodic protection of reinforced concrete: Electrochemical behavior of the steel reinforcement after corrosion and protection

机译:钢筋混凝土的常规和脉冲阴极保护:腐蚀和保护后钢筋的电化学行为

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摘要

The applicability and efficiency of an alternative for impressed current cathodic protection (CP) for reinforced concrete, based on pulse technology, was investigated. The technique, denoted as pulse CP (pCP), was evaluated on the basis of a comparative analysis to reference (non-corroding), corroding, and conventional CP conditions, in terms of long-term monitoring of electrochemical parameters for the embedded steel with time of corrosion and protection. The hereby reported results are for the total duration of the experiment, i.e., 460 days of conditioning, also presented in comparison with earlier stages. Protection was applied after corrosion was initiated (using corrosion medium of 5% NaCl), at different time intervals (here reported are starting points 60 and 150 days of age). Both CP regimes used current density of 5 or 20 mA/m{sup}2 steel surface. The pulse CP was applied as a pulse-shaped block current (square wave) with the current itself being the feedback control signal, using 12.5-50% duty cycle at 500 Hz to 1 kHz frequency. Under equal environmental conditions and for a comparatively long period of application, the pulse CP was found to perform as effectively as the conventional CP with regard to electrochemical behavior of the steel reinforcement. Furthermore, the pulse CP technique was found to achieve more rapidly the so called "open circuit potential (OCP) passivity" as a result of an enhanced ion transport (chloride withdrawal) and more favorable cement chemistry (increased alkalinity around the steel reinforcement).
机译:研究了基于脉冲技术的钢筋混凝土外加电流阴极保护(CP)替代品的适用性和效率。该技术被称为脉冲CP(pCP),是在对参考(非腐蚀),腐蚀和常规CP条件进行比较分析的基础上,通过对埋入钢的电化学参数进行长期监测来评估的。腐蚀和保护时间。特此报告的结果是针对实验的总持续时间,即460天的调节,也与早期阶段进行了比较。腐蚀开始后(使用5%NaCl腐蚀介质)在不同的时间间隔(此处报道的起始年龄分别为60天和150天)进行保护。两种CP方案均使用5或20mA / m 2的钢表面的电流密度。脉冲CP作为脉冲状的块状电流(方波)施加,电流本身为反馈控制信号,在500 Hz至1 kHz频率下使用12.5-50%的占空比。在相同的环境条件下,并且在较长的使用时间内,发现脉冲CP在钢筋的电化学行为方面与常规CP一样有效。此外,由于增强的离子传输(氯化物排出)和更有利的水泥化学作用(增强的钢筋碱度),脉冲CP技术被发现可以更快地获得所谓的“开路电势(OCP)钝化”。

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