info:eu-repo/semantics/article
Metastable eutectoid transformation in spheroidal graphite cast iron: Modeling and validation
Fecha
2018-07Registro en:
Carazo, Fernando Diego; García, Laura Noel; Celentano, Diego Javier; Metastable eutectoid transformation in spheroidal graphite cast iron: Modeling and validation; Multidisciplinary Digital Publishing Institute; Metals; 8; 7; 7-2018; 550-565
2075-4701
CONICET Digital
CONICET
Autor
Carazo, Fernando Diego
García, Laura Noel
Celentano, Diego Javier
Resumen
This paper presents a new microstructural model of the metastable eutectoid transformation in spheroidal graphite cast irons. The model takes into account the nucleation and growth of pearlite nodules. The nucleation is assumed to be continuous and dependent on the metastable undercooling associated with the upper limit of the three-phase field, while the growth rate is considered to be ruled by the silicon partitioning between ferrite and cementite at the pearlite/austenite front. The initial conditions for the metastable transformation are obtained from a microstructural simulation of solidification, graphite growth, and stable eutectoid transformation. These microstructural models are coupled with the thermal balance solved at a macroscopic level via the finite element method. The experimental validation of the metastable eutectoid model achieved by comparison with measured values of ferrite, graphite, and pearlite fractions at the end of the cooling process demonstrates the sound predictive capabilities of the proposed model.