Abstract :
The evaluation of the growth kinetics of Fe4N1 x (g0) 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 g0, 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 g0 nitride formation. Experimental results achieved during the
process are compared to the mathematical model forecast, along with the results presented by other authors.
Keywords :
Diffusion coefficient , Post-discharge , Nitriding , growth kinetics , Nitride layer