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Thermodynamic reasoning for colossal N supersaturation in austenitic and ferritic stainless steels during low-temperature nitridation

机译:奥氏体和铁素体不锈钢在低温氮化过程中大氮过饱和的热力学推论

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摘要

Colossal N supersaturation of ferritic as well as austenitic stainless steels during low temperature gaseous nitridation treatments has lately gained much technological significance. However, available thermodynamic models to calculate the N paraequilibrium solubility limits have failed to explain the levels of colossal N supersaturation observed in several cases of nitrided ferritic/austenitic stainless steels. In this work, we show that consideration of N dissolution induced spinodal decomposition is essential in calculating the N paraequilibrium solubility limit for both ferritic and austenitic stainless steels. This modification in the thermodynamic model has led to the successful explanation of the thermodynamic cause for the colossal N supersaturation in ferritic and austenitic stainless steels. Available experimental observations in literature support the occurrence of spinodal decomposition.
机译:铁素体以及奥氏体不锈钢在低温气态氮化处理过程中的巨大N过饱和最近已获得了许多技术意义。但是,可用的热力学模型来计算N副平衡的溶解度极限并不能解释在几种氮化铁素体/奥氏体不锈钢中观察到的巨大N过饱和水平。在这项工作中,我们表明考虑N溶解引起的旋节线分解对于计算铁素体和奥氏体不锈钢的N平衡平衡溶解度极限至关重要。热力学模型的这种修改已成功解释了铁素体和奥氏体不锈钢中巨大的N过饱和的热力学原因。文献中可用的实验观察结果支持旋节线分解的发生。

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