Search Results - "Meleshevich, K. A"
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Interaction in the Ni–Sc–Zr Ternary Alloys Along the 77.8 at.% Ni Section. Electrochemical Properties of the Alloys
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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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
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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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
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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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
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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The melting diagram of the Ti–Zr–Sn system below 40 at.% Sn
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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Interfacial interaction of solid nickel with liquid Pb-free Sn–Bi–In–Zn–Sb soldering alloys
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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Cerium–silicon system
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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Lanthanum–silicon system
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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The Ti5Si3–Tb5Si3 section of the Ti–Tb–Si system
Published in Journal of alloys and compounds (28-07-2004)“…By using differential thermal analysis, metallography, microprobe analysis and X-ray powder diffraction, the Ti5Si3–Tb5Si3 section of the Ti–Tb–Si system was…”
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10
Selection of the hydrogen-sorbing material for hydrogen accumulators
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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11
Interfacial interaction of solid cobalt with liquid Pb-free Sn–Bi–In–Zn–Sb soldering alloys
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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12
Lanthanum–cerium–silicon system
Published in Journal of alloys and compounds (16-12-2002)“…By the methods of differential thermal analysis, metallography and X-ray examination of 17 as-cast alloys with a composition ratio La:Ce=1:1 (at.%) the phase…”
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13
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
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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14
Physicochemical Interaction in Systems Formed by Trivalent REM with Group IV p-Elements. IV. Phase Thermodynamics
Published in Powder metallurgy and metal ceramics (01-05-2005)“…The available data are analyzed on the enthalpies of formation of intermetallic compounds in binary systems of rare-earth metals with group IV p-elements…”
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15
Isothermal section at 1400 °C of the Ti-Zr-Sn system
Published in Journal of alloys and compounds (01-07-2008)Get full text
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Phase equilibria in the titanium corner of hypoeutectic alloys in the Ti-Nb-Si-Al system
Published in Powder metallurgy and metal ceramics (01-11-2005)“…Physicochemical analysis methods have been applied to the phase equilibria in the Ti-Nb-Si-Al system in the region of alloys rich in titanium. It is found that…”
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PHYSICOCHEMICAL INTERACTIONS IN SYSTEMS FORMED BY TRIVALENT REM WITH GROUP IV P ELEMENTS. II. PHASE DIAGRAMS
Published in Powder metallurgy and metal ceramics (01-01-2004)“…A major aspect is considered of the physicochemical interaction in binary systems formed by REM with group IV p elements, namely the phase diagrams. The…”
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Phase Equilibria in the Mg - Al - Ca System (Region 50-100 mass% Mg)
Published in Powder metallurgy and metal ceramics (01-05-2003)“…Phase equilibria in the ternary system Mg - Al - Ca in the composition range 50-100 mass% Mg were studied by the methods of differential thermal, x-ray…”
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Effect Of Formation Conditions of Thick Granular Films Based on Dispersed Co3b On Their Phase Composition and Magnetoresistance
Published in Powder metallurgy and metal ceramics (01-07-2017)“…An important scientific and technical problem on developing thick resistive granular films used in microelectronics and tool manufacturing is solved…”
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Effect Of Formation Conditions of Thick Granular Films Based on Dispersed Co.sub.3b On Their Phase Composition and Magnetoresistance
Published in Powder metallurgy and metal ceramics (01-07-2017)“…An important scientific and technical problem on developing thick resistive granular films used in microelectronics and tool manufacturing is solved…”
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