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Localized corrosion and stress corrosion cracking of stainless steels in halides other than chlorides solutions: a review

机译:除Chlides Solutions以外的卤化物中,不锈钢的局部腐蚀和应力腐蚀开裂:综述

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Fluorides, bromides, and iodides, despite being less common than chlorides, are present in various environments of industrial relevance. Stainless steels suffer pitting corrosion in solutions of all halides except fluorides, which can be understood considering that fluoride is the anion of a weak acid. The aggressiveness of the rest of the halides for pitting corrosion is on the order Cl??>?Br??>?I? for stainless steels with Mo content below 3 wt.%. Mo is not as effective in inhibiting Br? pitting corrosion as it is for inhibiting Cl? pitting corrosion. Most of those observations were rationalized based on the effect of anions on pit growth kinetics. Sensitized austenitic stainless steel suffers stress corrosion cracking (SCC) in solutions of all halides, albeit chlorides seem to be the most aggressive. Fluoride SCC is relevant for SCC under insulation of stainless steels, and standards and regulations developed to mitigate this problem consider this ion as aggressive as chloride. For the solubilized stainless steels, aggressiveness toward SCC is in the order Cl??>?Br?. The SCC of solubilized stainless steels was not observed in solutions of F? and I?, and the possible reasons for this fact are discussed.
机译:尽管少于氯化物,但在工业相关性的各种环境中存在氟化物,溴化物和碘化物。除氟化物之外,不锈钢在所有卤化物的溶液中遭受腐蚀的腐蚀,这可以考虑到氟化物是弱酸的阴离子。用于点腐蚀的其余卤化物的侵略性是在Cl ??> ??>?我?对于具有低于3wt的MO含量的不锈钢。%。莫不如抑制Br?蚀刻腐蚀,因为它是为了抑制cl?蚀腐蚀。这些观察中的大多数是基于阴离子对坑生长动力学的影响合理化。敏化的奥氏体不锈钢在所有卤化物的溶液中遭受应激腐蚀裂纹(SCC),仍然是最具侵略性的氯化物。氟化物SCC在不锈钢绝缘下的SCC相关,而制定的标准和法规认为这一问题认为这种离子作为氯化物的侵略性。对于溶解的不锈钢钢,对SCC的侵略性是CL ??>?在F的溶液中未观察到溶解的不锈钢SCC?和我?,讨论了这一事实的可能原因。

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