Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5452891 | Calphad | 2016 | 8 Pages |
Abstract
This work is focused on an experimental study of phase equilibria in the B-Fe-Mn ternary system combined with a CALPHAD theoretical analysis with the aim of creating a reliable theoretical thermodynamic dataset for calculation of the phase diagram of the ternary system. Boron is modelled as an interstitial element in all solid solutions of Fe and Mn. In the experimental study, B-Mn-Fe alloys were prepared and heat-treated at 873Â K for 90Â days/2160Â h and at 1223Â K for 60Â days/1440Â h. Following heat treatment, the phase equilibria and composition of the coexisting phases were determined using scanning electron microscopy and X-ray diffraction analysis. The experimental results obtained, together with experimental results collected from the literature, were used in the optimization of the thermodynamic parameters by using the CALPHAD method. The result of this work is an optimized thermodynamic dataset for the B-Fe-Mn ternary system allowing the phase diagram and thermodynamic properties to be calculated.
Related Topics
Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
Peter Repovský, Viera Homolová, Lucia Äiripová, AleÅ¡ Kroupa, Adéla Zemanová,