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首页> 外文期刊>Corrosion science >Understanding the effects of electrode inhomogeneity and electrochemical heterogeneity on pitting corrosion initiation on bare electrode surfaces
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Understanding the effects of electrode inhomogeneity and electrochemical heterogeneity on pitting corrosion initiation on bare electrode surfaces

机译:了解电极不均匀性和电化学不均匀性对裸露电极表面上的点蚀开始的影响

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摘要

The effects of electrode inhomogeneity (El) and electrochemical heterogeneity (EH) on pitting corrosion initiation have been analysed by revisiting research findings reported in the literature and experimental evidences obtained in our laboratories using the wire beam electrode (WBE) method. Two mechanisms of pitting corrosion initiation have been identified on bare metal surfaces exposed directly to electrolytes. For WBE surface under free corrosion or low anodic polarisation conditions the initiation of pitting corrosion was found to be due to the disappearance of minor anodes, leading to accelerated dissolution of a few remaining major anodes. The nucleation stage of pitting corrosion appeared to be controlled by El, while the propagation stage appeared to be determined by EH. For WBE surface under large anodic polarisation the initiation of pitting corrosion was found to be due to the formation of active new anodic sites, which is in agreement with the conventional mechanism of pitting nucleation.
机译:通过回顾文献中报道的研究发现和在我们实验室中使用线束电极(WBE)方法获得的实验证据,分析了电极不均匀性(El)和电化学异质性(EH)对点蚀开始的影响。在直接暴露于电解质的裸露金属表面上,已经发现了两种点蚀引发腐蚀的机理。对于在自由腐蚀或低阳极极化条件下的WBE表面,发现点蚀的发生是由于次要阳极的消失,导致一些剩余的主要阳极的加速溶解。点蚀的成核阶段似乎由El控制,而扩散阶段似乎由EH确定。对于大阳极极化下的WBE表面,发现点蚀的产生是由于新的活性阳极位点的形成,这与点蚀成核的常规机理是一致的。

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