Abstract:
Using the model of delocalized atoms, a substantiation and generalization of the Schmelzer glass transition criterion is proposed. In contrast to the Bartenev and Volkenstein–Ptitsyn approaches, in the generalized kinetic glass transition criterion, along with the relaxation time and the cooling rate of the melt, the glass transition temperature and an almost universal dimensionless constant appear, which is determined by the fraction of the fluctuation volume frozen at the glass transition temperature. The idea is developed that the liquid goes into a glassy state when its cooling rate q reaches a certain fraction of Cg of the characteristic cooling rate qg = (Tg/τg), which is closely related to the relaxation time of the structure τg at the glass transition temperature Tg.
Keywords:
glass transition, criterion, relaxation time, cooling rate, glass transition temperature, atom delocalization, model.
Citation:
D. S. Sanditov, V. V. Mantatov, S. Sh. Sangadiev, “Generalized kinetic criterion of the liquid–glass transition”, Fizika Tverdogo Tela, 62:10 (2020), 1706–1709; Phys. Solid State, 62:10 (2020), 1924–1927