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Titlebook: Glassy Metals; Krassimir Russew,Liljana Stojanova Book 2016 Springer-Verlag Berlin Heidelberg 2016 Amorphous.Free Volume Model.Glassy Meta

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Kai Singbartl M.D., M.P.H., F.C.C.M.critical cooling rate for obtaining the metallic alloys in amorphous state via rapid cooling from the melt is analyzed. An overview about the bibliographic sources devoted to the determination of glassy metals viscosity under isothermal and nonisothermal experimental conditions is proposed. The expe
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Sophie C. Cazanave Ph.D.,Arun J. Sanyal M.D.elation between the viscous flow features and the chemical composition of binary metal-metal, metal-metalloid, ternary metal-metal-metalloid, and quaternary glassy alloys. The thermal prehistory of metallic glasses and the influence of technological conditions by rapid quenching from the melt are al
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https://doi.org/10.1007/978-1-4612-4506-3c free volume in amorphous condensed matter is pointed out. The viscosity temperature dependence of amorphous metallic alloys in the framework of the free volume model, as considered by F. Spaepen, A. van den Beukel, P. Duine, etc., is presented and discussed. The contribution of the authors to the
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https://doi.org/10.1007/978-1-4684-4787-3rmal viscous flow and crystallization behavior. The glass forming ability (GFA) and melt fragility number of Angell and its Moynihan interpretation are presented. An FVM interpretation of the melt fragility numbers of Angell and Moynihan is proposed and experimentally proven. It is demonstrated that
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