Institute of Physics of Materials AS CR, v. v. i. > Projects > Thermodynamics of intermetallic phases using combined theoretical and experimental approach

Thermodynamics of intermetallic phases using combined theoretical and experimental approach

Co-investigatorRNDr. Aleš Kroupa, CSc.
Number of ProjectP108/10/1908
AgencyGrantová agentura České republiky
Duration2009-12-31 - 2012-12-30

Anotace
The project contributed to the extension of knowledge of the thermodynamic properties of secondary phases, which play important role in the stability of advanced steels and/or superalloys. The combination of ab-initio method, semiempirical (CALPHAD) and experimental approaches was used. Important applications for the modelling of technologically important phases were created and excellent publications were published: many results were presented in impacted journals and chapters in monographies.


2014

Štrof J., Pavlů J., Wdowik U., Buršík J., Šob M., Vřešťál J.: Laves phases in the V-Zr system below room temperature: Stability analysis using ab initio results and phase diagram. CALPHAD 44 (2014) 62-69



2013

Brož P., Khan A., Niu H., Chen X., Li D., Vřešťál J., Buršík J., Rogl P.: The system Ta-V-Si: Thermodynamic modeling. J. Solid State Chem. 199 (2013) 171-180

Homolová V., Výrostková A., Ciripová L., Kroupa A.: Phase analysis of Fe-B-V system. Kovové materiály 51 (2013) 135-139



2012

Homolová V., Kroupa A., Výrostková A.: Calculation of Fe-B-V ternary phase diagram. J. Alloys Comp. 520 (2012) 30-35

Mishra R., Zemanová A., Kroupa A., Flandorfer H., Ipser H.: Synthesis and characterization of Sn-rich Ni-Sb-Sn nanosolders. J. Alloys Comp. 513 (2012) 224-229

Pavlů J., Šob M.: Ab Initio Study of C14 Laves PhasesS in Fe-based Systems. J. Mining Metall. B 48 (2012) 395-401