Title of article :
An atomistic analysis of the interface mobility in a massive transformation
Author/Authors :
Sommer، Walter F. نويسنده , , Mittemeijer، E.J. نويسنده , , Bos، C. نويسنده ,
Abstract :
new multi-lattice kinetic Monte Carlo method has been used for an atomistic study on the interpretation of the interface mobility parameter for a massive face-centred cubic (fcc) to body-centred cubic (bcc) transformation in a single element system. For lateral growth of bcc in a system with an fcc(1 1 1)//bcc(1 1 0) and fcc[1 1 2]//bcc[0 0 1] interface orientation the overall activation energy for the interface mobility parameter is governed by energetically unfavourable atomic jumps. The atoms on the fcc lattice often cannot jump directly to bcc lattice sites because neighbouring atoms block the empty bcc sites. By single unfavourable jumps and by groups of unfavourable jumps a path from fcc to bcc is created. The necessity of these unfavourable jumps leads to an overall activation energy considerably larger than the activation energy barrier for a single atomic jump.
Keywords :
Austenite-ferrite transformation , Massive transformation , transformation kinetics , Monte Carlo techniques
Journal title :
Astroparticle Physics