碳化和氯化物侵蚀的联合作用:钢筋混凝土结构的降解

L. Kim, E. E. Shalyi, S. Leonovich, N. Budrevich
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引用次数: 0

摘要

海洋水工结构由于混凝土的氯离子侵蚀和炭化而发生腐蚀加固,导致结构的安全性急剧下降。一旦表面氯离子浓度超过一定的阈值浓度,或者混凝土保护层内的pH值由于碳化作用降低到阈值,钢筋就会发生所谓的脱钝化过程。随着氧在钢筋表面的渗透形成腐蚀产物,开始发生电化学反应。这会导致混凝土保护层开裂。还应考虑到,由于腐蚀机制,钢筋的横截面积也会减小。本文提出了一种预测钢筋混凝土结构复杂退化的方法,考虑了各种腐蚀磨损机制,这将有助于开发有效的方法来提高在海洋环境中运行的结构的耐久性和可维护性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMBINED EFFECT OF CARBONATION AND CHLORIDE AGGRESSION: DEG-RADATION OF REINFORCED CONCRETE STRUCTURES
Corrosion reinforcement marine hydraulic structures due to chloride aggression and carbonization of concrete leads to a sharp decrease in the safety of the structure. The steel reinforcement will be subjected to a so-called depassivation process, once the chloride concentration on surface exceeds a certain threshold concentration, or the pH value in the protective layer of concrete decreases to a threshold value due to carbonation. Electrochemical reactions begin to occur with the formation of corrosion products with the penetration of oxygen on the steel reinforcement surface. This leads to cracking of the protective layer of concrete. It should also be taken into account that, due to corrosion mechanisms, the cross-sectional area of the reinforcement also decreases. The article suggests a method for predicting the complex degradation of reinforced concrete structures, taking into account various mechanisms of corrosion wear, which will allow developing effective ways to improve the durability and maintainability of structures operated in the marine environment.
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