钢-介质界面的腐蚀

R. Melchers
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引用次数: 0

摘要

金属合金(如钢)与潮湿、可渗透的非金属介质之间的界面腐蚀具有相当大的实际意义。例如,钢筋与水、大气或混凝土之间的界面;金属与土壤之间的界面,如埋入地下的铸铁管或钢管;某种类型的沉积物,如沉积物下腐蚀;以及与绝缘层、保护层或宏观或微观生物制剂之间的界面。在所有情况下,腐蚀的发生都取决于界面区的特征,包括金属和介质的特征以及空间变化。对于具有良好界面接触的(接近)均匀半无限介质,金属的点蚀、缝隙和一般腐蚀将在很大程度上受金属(微)特性的控制,包括其夹杂物、缺陷和表面粗糙度。在其他情况下,介质的宏观特性和界面接触程度可能会掩盖这些特性,从而导致严重的腐蚀。在界面可能出现腐蚀产物积聚的情况下,它们将主导长期腐蚀并影响长期腐蚀速率。对于厚度有限的介质,还可能涉及扩散问题和材料劣化。概述了实际影响。论文认为,只要存在合适的介质,就有可能实现可忽略不计的长期腐蚀,但前提是必须采取某些切实可行的措施。
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Corrosion at the Steel–Medium Interface
Corrosion on the interface between a metal alloy, such as steel, and a wet, permeable non-metallic medium is of considerable practical interest. Examples include the interface between steel and water, the atmosphere or concrete, as for steel reinforcement bars; between metal and soil, as for buried cast iron or steel pipes; deposits of some type, as in under-deposit corrosion; and the interface with insulation, protective coatings, or macro- or micro-biological agents. In all cases, corrosion initiation depends on the characteristics of the interfacial zone, both of the metal and the medium, and the spatial variability. For (near-)homogeneous semi-infinite media with good interfacial contact, the pitting, crevices and general corrosion of the metal will be largely controlled by the metal (micro-)characteristics, including its inclusions, imperfections and surface roughness. In other cases, these may be overshadowed by the macro-characteristics of the medium and the degree of interfacial contact, possibly with severe resulting corrosion. Where the build-up of corrosion products can occur at the interface, they will dominate longer-term corrosion and govern the long-term corrosion rate. For media of finite thickness, diffusion issues and material deterioration may also be involved. The practical implications are outlined. It is argued that with the presence of a suitable medium, it is possible to achieve negligible long-term corrosion but only if certain practical actions are taken.
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