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Real time pit initiation studies on stainless steels: The effect of sulphide inclusions

机译:不锈钢的实时蚀坑研究:硫化物夹杂物的影响

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It has long been accepted that manganese sulphide favours pitting on stainless steels. However, there are different standpoints on the most important mechanism for pit initiation; due to dissolution of sulphide inclusions, chromium depletion around the inclusion or mechanical rupture of the passive film by metal chlorides. Analysing the pitting potential and metastable pitting rates on different grades of stainless steels has rationalised the effect of sulphide content on pitting corrosion resistance. In situ atomic force microscopy (AFM) has been used in conjunction with conventional electrochemical techniques for imaging real time pit initiation events.
机译:长期以来,人们一直认为硫化锰有利于不锈钢上的点蚀。但是,对于坑起火的最重要机制有不同的观点。由于硫化物夹杂物的溶解,夹杂物周围的铬耗尽或钝化膜被金属氯化物机械破坏。分析不同等级不锈钢的点蚀电位和亚稳点蚀率,已合理地证明了硫化物含量对耐点蚀性的影响。原位原子力显微镜(AFM)已与常规电化学技术结合使用,用于对实时坑引发事件进行成像。

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