The microstructure evolution during the peritectic solidification of Fe-C i
s simulated using a multiphase field approach. The peritectic transformatio
n in steel is a diffusion controlled non-equilibrium process with the three
phases liquid, ferrite and austenite involved. Phase fields are defined fo
r each of the three phases. A set of phase field equations is derived from
a free energy formulation, whereas the carbon diffusion equation is derived
separately by a solute diffusion model. Both phase field and solute diffus
ion model as well as their coupling will be discussed. Simulation results w
ill be presented showing the growth of the primary ferrite and the subseque
nt peritectic transformation, in which the austenitic phase is formed. (C)
1999 Elsevier Science B.V. All rights reserved.