Статті КСЯСМ (ДМетІ)
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Item Steady State α→γ-Recrystallization of Ferritic Iron Alloys with a Cellular Structure of the Interfacial Surface during Carburization(G. V. Kurdyumov Institute for Metal Physics of the National Academy of Sciences of Ukraine, Kyiv, 2025) Chornoivanenko, Kateryna O.; Movchan, O. V.ENG: The mathematical model of single-phase cellular growth of the γ-phase layer during isothermal α→γ-recrystallization of a carburized ferritic iron alloy is constructed based on the performed analysis. Diffusion transfer of carbon through the γ-phase to the interphase surface is the main factor that determines the kinetics of α→γ-recrystallization during carburization. The expression for the distribution of carbon within the γ-phase in front of the flat phase interface (PI) during a steady-state process is obtained. The near-boundary concentration differences between the curved and flat PI are determined. The near-boundary mole fractions of the components inside the α- and γ-phases are calculated. Diffusion processes within the α-phase before PI are described. The expression relating diffusion processes within the α-phase in front of PI with the velocity of front advancement is obtained. Longitudinal sections of cells corresponding to limiting cases of surface-tension coefficient σ and microstructures during α→γ-recrystallization are presented. As shown, the PI cells have a pronounced crystalline facet during solid-phase recrystallization. In this case, the morphology of the cells depends on the crystallographic direction of growth of the γ-phase.