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Kinetics of Nitriding in Titanium Bearing Austenitic Stainless Steel

J. Aghazadeh Mohandesi (Department of Mining and Metallurgical Engineering, Amirkabir University of Technology, Tehran 424, Hafez Avenue, Iran)
A. Nazari (Department of Mining and Metallurgical Engineering, Amirkabir University of Technology, Tehran 424, Hafez Avenue, Iran)

Multidiscipline Modeling in Materials and Structures

ISSN: 1573-6105

Article publication date: 1 April 2007

122

Abstract

The kinetics of nitriding in titanium bearing austenitic stainless steels in cylindrical coordination has been investigated. Nitriding at nitrogen partial pressure of 0.5 atm and temperature from 980°C up to 1160oC resulted in the formation of titanium and chromium nitride and above the Cr2N solvus temperature (1100°C), no chromium nitride was formed. The nitrided case may consist of up to three zones: nitrogen in solid solution, precipitation of TiN and finally mixed TiN+Cr2N precipitation. These are in consistent with the affinity of titanium and chromium towards nitrogen which has been thermodynamically justified. To assess the kinetics of nitriding, a mathematical model for nitrogen diffusion in cylindrical system has been developed via solving Fick’s equation for cylindrical coordinate by numerical method. For this purpose the use has been made of the austenite stabilizing effect of nitrogen to correlate the movement of the boundary of the nitrogen stabilized austenite and plastic deformation induced martensite. Since the crystal structure of the material used in this study is of fcc type and it is nitrided in a fully annealed and unstrained state, therefore the effect of excess nitrogen on the kinetics of nitride fronts growth has been assumed as negligible. The results are in good agreement with the previous investigations. Unlike previous works, the present model takes into account the change of nitrogen diffusion coefficient due to nitrogen concentration profile and

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Citation

Aghazadeh Mohandesi, J. and Nazari, A. (2007), "Kinetics of Nitriding in Titanium Bearing Austenitic Stainless Steel", Multidiscipline Modeling in Materials and Structures, Vol. 3 No. 4, pp. 515-526. https://doi.org/10.1163/157361107782106320

Publisher

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Emerald Group Publishing Limited

Copyright © 2007, Emerald Group Publishing Limited

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