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Evaluation of the diffusion coefficient of nitrogen in Fe_4N_(1-x) nitride layers during microwave post-discharge nitriding

机译:微波放电后氮化中Fe_4N_(1-x)氮化物中氮的扩散系数的评估

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The evaluation of the growth kinetics of Fe_4N_(1-x) (γ′) phase under microwave post-discharge nitriding in ARMCO iron has been carried out through this project. A mathematical model that considers the iron nitride growth is proposed in a non-saturated nitrogen medium with a finite length of 2L, where the interface concentrations remain constant during the treatment. Growth kinetics of γ′, during microwave post-discharge nitriding process, is rapid in short times of treatment, due to the presence of neutral and ionized species, which produce a rapid evolution of nitrogen concentration on the substrate surface. Concentration on the surface is controlled by the parameters of the process for γ′ nitride formation. Experimental results achieved during the process are compared to the mathematical model forecast, along with the results presented by other authors.
机译:通过该项目对微波放电后氮化在ARMCO铁中对Fe_4N_(1-x)(γ')相的生长动力学进行了评估。提出了一个数学模型,该模型考虑了氮化铁在有限长度2L的非饱和氮介质中的生长,在此过程中界面浓度保持恒定。由于中性和离子化物质的存在,在微波后放电氮化过程中,γ'的生长动力学在短时间内快速处理,这会在基材表面产生快速的氮浓度变化。表面上的浓度由形成γ'氮化物的工艺参数控制。将过程中获得的实验结果与数学模型预测以及其他作者提供的结果进行比较。

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