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Semiconductor electrochemistry approach to passivity and stress corrosion cracking susceptibility of stainless steels

机译:半导体电化学方法研究不锈钢的钝化和应力腐蚀开裂敏感性

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摘要

The susceptibility of AISI 304 type stainless steel to stress corrosion cracking (SCC) in boiling concentrated boric acid-chloride aqueous solutions, appears to be closely linked to the formation of a chromium rich passive oxide film presenting p-type semiconductivity. Furthermore, the flat band potential of the oxide, which separates potential regions of predominant ionic conduction from regions of predominant electronic conduction, can be considered a critical potential. A band structure model is proposed, in which the SCC phenomenon can be described as being the consequence of a localised change of the semiconductivity properties of the passive film, in the potential region situated near the flat band potential. The relationship between SCC and the electronic structure of the passive film on stainless steel is discussed.
机译:AISI 304型不锈钢在沸腾的浓硼酸-氯化物水溶液中对应力腐蚀开裂(SCC)的敏感性似乎与形成具有p型半导电性的富铬钝化氧化膜的形成紧密相关。此外,将主要的离子传导的电势区域与主要的电子传导的电势区域分开的氧化物的平带电势可以认为是临界电势。提出了一种能带结构模型,其中,SCC现象可以描述为无源薄膜的半导电特性在平坦带电势附近的电势区域中局部变化的结果。讨论了SCC与不锈钢钝化膜的电子结构之间的关系。

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