References |
Elanskii, G.N., Minchevskii, B.V., Kal’menev, A.A., (2005) Osnovy proizvodstva i obrabotki metallov, , Mosk. Gos. Vechern. Metall. Inst., Moscow; Elanskii, G.N., (2011) Stal’ i periodicheskaya sistema elementov D.I. Mendeleeva, , Mosk. Gos. Vechern. Metall. Inst., Moscow; Tsong, T.T., (1990) Atom-Probe Field Ion Microscope, , Cambridge Univ. Press, Cambridge; Miller, M., Cerezo, A., Hetherington, M., Smith, G., Atom-Probe Field Ion Microscope (1996) Monographs on the Physics and Chemistry of Materials, , Oxford Univ. Press, Oxford; Miller, M., (2000) Atom-Probe Tomography, , Springer-Verlag, New York; Michael, K., Miller, M., Richard, G., (2014) Forbes Atom- Probe Tomography the Local Electrode Atom-Probe, , Springer-Verlag, New York; Larson, D.J., Prosa, T.J., Ulfig, R.M., Geiser, B.P., Kelly, T.F., (2013) Local Electrode Atom-Probe Tomography a User’s Guide, , Springer, New York; Kellogg, G.L., Measurement of activation energies for field evaporation of tungsten ions as a function of electric field (1984) Phys. Rev. B, 29 (8), pp. 4304-4312; Wada, M., On the thermally activated field evaporation of Surface atoms (1984) Surf. Sci., 145, pp. 451-465; Menand, A., Blavette, D., Temperature dependence of iridium field evaporation rate (1986) J. Phys. C, 47 (7), pp. 17-20; Saxey, D.W., Correlated ion analysis and the interpretation of atom probe mass spectra (2011) Ultramicroscope, 111 (6), pp. 473-479; Shaburova, N.A., Theory and practice of using external actions for melts processing (2013) Vestn. Yuzh.-Ural. Gos. Univ., Ser. Metall., 13 (1), pp. 85-90; Tsepelev, V.S., Konashkov, V.V., Baum, B.A., Tyagunov, G.V., Baryshev, E.E., (2008) Svoistva metallicheskikh rasplavov, , Ural. Gos. Tekh. Univ., Yekaterinburg; Baryshev, E.E., Tyagunov, A.G., Stepanova, N.N., (2010) Vliyanie struktury rasplava na svoistva zharoprochnykh nikelevykh splavov v tverdom sostoyanii, , Ural. Otd., Ross. Akad. Nauk, Yekaterinburg; Tyagunov, G.V., Baryshev, E.E., Tsepelev, V.S., (2014) Zhidkii metal. Poroshki, , Ucheb.-Metod. Tsentr, Ural. Politekh. Inst., Yekaterinburg; Petrushin, N.V., Svetlov, I.L., Physical-chemical and structural parameters of high-temperature nickel alloys (2001) Metally, 2, pp. 63-73; Elanskii, G.N., Elanskii, D.G., (2006) Stroenie i svoistva metallicheskikh rasplavov, , Mosk. Gos. Vechern. Metall. Inst., Moscow; Zuev, M.V., Burmasov, S.P., Stepanov, A.I., Gudov, A.G., Murzin, A.V., Zheltukhin, E.G., Improvement in steel smelting by studying melt behavior (2013) Steel Transl., 43 (2), pp. 106-109; Polishchuk, A.D., Polishchuk, D.A., (2013) Kompleksnoe otsenivanie v sistemnykh issledovaniyakh, pp. 368-370; Kolotukhin, E.V., Improvement of the technology of smelting and improvement of the quality of high-temperature alloys on the basis of studies of their electrical resistivity (2008) Svoistva metallicheskikh rasplavov, pp. 113-122. , Ural. Gos. Tekh. Univ., Yekaterinburg; Li, P., Mi, C., Okhapkin, A.V., Konstantinova, N.Y., Sabirzianov, A.A., Popel, P.S., Micro-mechanism for the evolution of viscosity versus temperature in magnesium-aluminum alloy melts (2012) Procedia, 27, pp. 871-879; Beltyukov, A.L., Menshikova, S.G., Ladyanov, V.I., The viscosity of binary Al–Fe melts in the Al-rich area (2015) J. Non-Cryst. Solids, 410, pp. 1-6; Tret’yakova, E.E., Optimization technology of smelting and improvement of the quality of chromium steels based on analysis of the surface tension of their melts (1986) Extended Abstract of Cand. Sci. (Tech.) Dissertation, , Ural. Politekh. Inst., Sverdlovsk; Popel’, P.S., Metastable micro-heterogeneity of melts in systems with eutectic and monotectic and its effect on the alloy structure after solidification (2005) Rasplavy, 1, pp. 22-48; Popel, P.S., Chikova, O.A., Matveev, V.M., Metastable colloidal states of liquid metallic solutions (1995) High Temp. Mater. Process., 14 (4), pp. 219-234; Brodova, I.G., Popel, P.S., Eskin, G.I., (2002) Liquid Metal Processing: Applications to Aluminium Alloy Production, , TaylorFrancis, London |