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Topological aspects responsible for recrystallization evolution in an IF-steel sheet – Investigation with cellular-automaton simulations

Konstantina Traka, Karo Sedighiani, C. Bos, Jesús Galán López, Katja Angenendt, Dierk Raabe, Jilt Sietsma

2021Computational Materials Science22 citationsDOIOpen Access PDF

Abstract

A cellular automaton algorithm for curvature-driven coarsening is applied to a cold-rolled interstitial-free steel’s microstructure - obtained through electron backscatter diffraction (EBSD). Recrystallization nucleation occurs naturally during the simulation, due to the highly heterogeneous and hence competitive growth among pre-existing (sub) grains. The spatial inhomogeneity of the subgrain growth that takes place derives from the large local variations of subgrain sizes and misorientations that comprise the prior deformed state. The results show that capillary-driven selective growth takes place to the extent that the prior elongated and deformed grains are replaced by equiaxed grains with no interior small-angle boundaries. Additionally, during the simulation certain texture components intensify and others vanish, which indicates that preferential growth occurs in a fashion that relates to the crystal orientations’ topology. The study of the early stages of recrystallization (i.e. nucleation) shows that the pre-existing subgrains that eventually recrystallize, exhibit certain topological characteristics at the prior deformed state. Successful nucleation occurs mostly for pre-existing matrix subgrains abutting shear bands or narrow deformation bands and particularly at regions where the latter intersect.

Topics & Concepts

NucleationElectron backscatter diffractionRecrystallization (geology)Cellular automatonEquiaxed crystalsMaterials scienceCurvatureMicrostructureTopology (electrical circuits)GeometryCrystallographyComposite materialGeologyPhysicsChemistryComputer scienceThermodynamicsMathematicsPaleontologyCombinatoricsAlgorithmMicrostructure and mechanical propertiesMetallurgy and Material FormingSolidification and crystal growth phenomena
Topological aspects responsible for recrystallization evolution in an IF-steel sheet – Investigation with cellular-automaton simulations | Litcius