Search Results - "Meleshevich, K."

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  1. 1

    Phase Equilibria in the Er-Co, Er-Fe and Er-Co-Fe Systems by Fartushna, I., Samelyuk, A., Meleshevich, K., Kabantsev, T., Bulanova, M.

    Published in Journal of phase equilibria and diffusion (01-04-2023)
    “…The phase diagrams of the Er-Co-Fe ternary system, as well as boundary binary Er-Co and Er-Fe systems, were plotted using differential thermal analysis, powder…”
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  2. 2

    Phase Equilibria in the Ti-Rich Portion of the Ti-Ga-Sn System by Bulanova, M., Fartushna, I., Samelyuk, A., Meleshevich, K., Tedenac, J.–C.

    Published in Journal of phase equilibria and diffusion (01-04-2024)
    “…Phase equilibria of the Ti-Ga-Sn system have been determined at primary crystallization and at 1000 °C in the composition interval ~ 50-100 at.% Ti based on…”
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  3. 3

    Phase equilibria in the Cr-Si-Ti system below 40 at.% Si by Bulanova, M., Tedenac, J.C., Fartushna, I., Meleshevich, K., Darmostuk, K.

    Published in Journal of alloys and compounds (15-05-2019)
    “…Phase transformations in the Cr-Si-Ti ternary system have been studied using differential thermal analysis (DTA), X-ray diffraction (XRD), scanning electron…”
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  4. 4

    Interaction in the Ni–Sc–Zr Ternary Alloys Along the 77.8 at.% Ni Section. Electrochemical Properties of the Alloys by Semenova, O. L., Fomichov, O. S., Meleshevich, K. A., Talash, V. M., Rudenko, Yu.B.

    Published in Powder metallurgy and metal ceramics (01-07-2023)
    “…The interaction of Sc 2 Ni 7 and Zr 2 Ni 7 compounds (with C2/m and P6 3 /mmc crystal structures and congruent melting temperatures of 1270 and 1438°C) in the…”
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  5. 5

    Phase Equilibria in the Ti-Zr-Sn System by Fartushna, I., Meleshevich, K., Koval, A., Tikhonova, I., Tedenac, J. C., Bulanova, M.

    Published in Journal of phase equilibria and diffusion (01-02-2022)
    “…In this paper we discuss the study of phase equilibria in the Ti-Zr-Sn system in the whole range of composition and temperature using own experimental results…”
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  6. 6

    Phase Equilibria in the Ternary Al–Ti–Pt System. I. Solidus Surface of the Al–Ti–Pt System in the Range 0–50 at.% Pt by Zaikina, O. V., Khoruzhaya, V. G., Korniyenko, K. Ye, Meleshevich, K. A., Pavlyuchkov, D. V., Velikanova, T. Ya

    Published in Powder metallurgy and metal ceramics (01-01-2019)
    “…The nature of phase equilibria has been examined for the first time in the Al–Ti–Pt system in the range 0–50 at.% Pt at subsolidus temperatures. Besides the τ…”
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  7. 7
  8. 8

    Phase Equilibria in the Ternary Al–Ti–Pt System. II. Liquidus Surface of the Al–Ti–Pt System in the Compositions Range 0–50 at.% Pt by Zaikina, O. V., Khoruzhaya, V. G., Korniyenko, K. Ye, Pavlyuchkov, D. V., Meleshevich, K. A., Velikanova, T. Ya

    Published in Powder metallurgy and metal ceramics (01-03-2019)
    “…The liquidus surface of the Al–Ti–Pt system has been constructed for the first time on the composition triangle based on studies of the structure and phase…”
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  9. 9

    Alloy Constitution and Phase Equilibria in the Hf–Ru–Rh System. II. Liquidus Surface, Melting Diagram, and Vertical Sections of the Partial Hf–HfRu–HfRh System by Kriklya, L. S., Kornienko, K. E., Khoruzhaya, V. G., Petyukh, V. M., Duma, L. A., Meleshevich, K. A., Samelyuk, A. V.

    Published in Powder metallurgy and metal ceramics (01-03-2016)
    “…According to the constitution of the solidus surface in the Hf–Ru–Rh system over the composition range 50−100 at.% Hf and the data obtained in studying the…”
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  10. 10

    The melting diagram of the Ti-Dy-Si system in the Ti-Ti5Si3-Dy5Si3-Dy region by FARTUSHNA, Yu, MELESHEVICH, K, SAMELYUK, A, BULANOVA, M

    Published in Journal of alloys and compounds (03-04-2009)
    “…The phase equilibria in the Ti-Ti5Si3-Dy5Si3-Dy part of the Ti-Dy-Si system were studied by DTA, X-ray diffraction, metallography and EPMA. The melting…”
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  11. 11

    Contribution to the Ti-V-Sn System by Bulanova, M., Fartushna, I., Meleshevich, K., Podrezov, Yu

    Published in Journal of phase equilibria and diffusion (01-08-2012)
    “…Phase equilibria in Ti-V-Sn system were reevaluated. This analysis has shown essential disagreements with the recent boundary binary systems, and…”
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  12. 12

    Selection of the hydrogen-sorbing material for hydrogen accumulators by Schur, D.V., Gabdullin, M.T., Bogolepov, V.A., Veziroglu, A., Zaginaichenko, S.Yu, Savenko, A.F., Meleshevich, K.A.

    Published in International journal of hydrogen energy (21-01-2016)
    “…The hydrogen accumulation in metal hydrides is the urgent problem of hydrogen power engineering and the demand for metal hydrides as capacitive, safe and…”
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  13. 13

    Interfacial interaction of solid cobalt with liquid Pb-free Sn–Bi–In–Zn–Sb soldering alloys by Dybkov, V. I., Khoruzha, V. G., Sidorko, V. R., Meleshevich, K. A., Samelyuk, A. V., Berry, D. C., Barmak, K.

    Published in Journal of materials science (01-11-2009)
    “…Dissolution kinetics of cobalt in liquid 87.5%Sn–7.5%Bi–3%In–1%Zn–1%Sb and 80%Sn–15%Bi–3%In–1%Zn–1%Sb soldering alloys and phase formation at the cobalt–solder…”
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  14. 14

    The melting diagram of the Ti–Zr–Sn system below 40 at.% Sn by Saltykov, V.A., Meleshevich, K.A., Samelyuk, A.V., Bulanova, M.V., Tedenac, J.C.

    Published in Journal of alloys and compounds (03-04-2009)
    “…By the methods of DTA, X-ray diffraction, metallography and EPMA, phase equilibria in the Ti–Zr–Sn system at <40 at.% Sn were studied. The partial liquidus and…”
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  15. 15

    The melting diagram of the Ti–Dy–Sn system below 40 at.% Sn by Fartushna, Y., Meleshevich, K., Samelyuk, A., Bulanova, M.

    “…Phase equilibria in the Ti–Dy–Sn system below 40 at.% Sn were studied using differential thermal analysis, X-ray diffraction, metallography and electron…”
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  16. 16

    Interfacial interaction of solid nickel with liquid Pb-free Sn–Bi–In–Zn–Sb soldering alloys by Dybkov, V.I., Khoruzha, V.G., Sidorko, V.R., Meleshevich, K.A., Samelyuk, A.V., Berry, D.C., Barmak, K.

    Published in Journal of alloys and compounds (28-07-2008)
    “…The dissolution process of nickel in liquid Pb-free 87.5% Sn–7.5% Bi–3% In–1% Zn–1% Sb and 80% Sn–15% Bi–3% In–1% Zn–1% Sb soldering alloys has been…”
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  17. 17

    Influence of tin on the structure and properties of as-cast Ti-rich Ti–Si alloys by Bulanova, M, Tretyachenko, L, Meleshevich, K, Saltykov, V, Vereshchaka, V, Galadzhyj, O, Kulak, L, Firstov, S

    Published in Journal of alloys and compounds (17-02-2003)
    “…By the methods of DTA, X-ray diffraction, metallography and microprobe analysis, phase equilibria in the Ti-corner (more than 50 at.% Ti) of the Ti–Si–Sn…”
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  18. 18

    The Constitution of Alloys and Phase Diagram of the Ternary Al–Cr–Pt System at 50–100 at.% Pt. I. Solidus Surface and Isothermal Section in the Al–Cr–Pt System at 1350 C in the Range 50–100 at.% Pt by Kornienko, K. E., Khoruzha, V. G., Meleshevich, K. A., Karpets, M. V.

    Published in Powder metallurgy and metal ceramics (01-09-2013)
    “…The results of high-temperature diffraction, metallography, X-ray diffraction, electron microprobe analysis, and differential thermal analysis are used to…”
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  19. 19

    Cerium–silicon system by Bulanova, M.V., Zheltov, P.N., Meleshevich, K.A., Saltykov, P.A., Effenberg, G.

    Published in Journal of alloys and compounds (28-10-2002)
    “…The Ce–Si phase diagram was constructed by means of differential thermal, X-ray and metallography examination of 15 as-cast key alloys. Ce 5Si 3, Ce 3Si 2, Ce…”
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  20. 20

    Lanthanum–silicon system by Bulanova, M.V., Zheltov, P.N., Meleshevich, K.A., Saltykov, P.A., Effenberg, G., Tedenac, J.-C.

    Published in Journal of alloys and compounds (14-11-2001)
    “…By using differential thermal analysis, metallography and X-ray examination, the La–Si phase diagram was constructed. La 5Si 3, La 3Si 2, La 5Si 4, LaSi were…”
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