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A Study on the Corrosion Properties and Microstructure of the Nitrocarburized and Oxidized Low Carbon Steel according to the Treatment Atmospheres  

Shin, P.W. (Dept. of Materials Science and Engineering, Changwon National University)
Lee, K.H. (Dept. of Surface Engineering, KIMM)
Nam, K.S. (Dept. of Surface Engineering, KIMM)
Park, Y.M. (Dept. of Surface Engineering, KIMM)
Jo, H.J. (Sang-Do TDS)
Publication Information
Journal of the Korean Society for Heat Treatment / v.17, no.2, 2004 , pp. 87-93 More about this Journal
Abstract
Nitrocarburizing was carried out with various $CH_4$ gas composition with 4 torr gas pressure at $570^{\circ}C$ for 3 hours and post oxidation was carried out with 100% $O_2$ gas atmosphere with 4 torr at different temperatures for various time. In the case of plasma nitrocarburizing, It is that the ratio of ${\varepsilon}-Fe_{2-3}$(N, C) and ${\gamma}^{\prime}-Fe_4$(C, N), which comprise the compound layer phase, depend on concentrations of $N_2$ gas and $CH_4$ such that when the concentration of $N_2$ and $CH_4$ increased, the ratio of ${\gamma}^{\prime}-Fe_4$(C, N) decreased, but the ratio of ${\varepsilon}-Fe_{2-3}$(N, C) increased. The thickness of compound layer consistently increased as gas concentration increased regardless of $N_2$ and $CH_4$ expect when the concentration of $CH_4$ was 3.5 volume%, it decreased insignificantly. When oxidizing for 15min in the temperature range of $460{\sim}570{^\circ}C$, the study found small amount of $Fe_3O_4$ at the temperature of $460{^\circ}C$ and also found that amounts of $Fe_2O_3$. and $Fe_3O_4$ on the surface and amount of ${\gamma}^{\prime}-Fe_4$(C, N) in the compound layer increased as the increased over $460^{\circ}C$, but the thickness of the compound layer decreased. Corrosion resistance was influenced by oxidation times and temperature.
Keywords
Plasma nitrocarburizing Compound layer; ${\varepsilon}-Fe_{2-3}$(N, C); ${\gamma}^{\prime}-Fe_4$(C, N); Oxidation time; Oxidation temperature; Corrosion resistance;
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