Effect of heating temperature on the formation of structure and phase composition of a biocompatible alloy Ti–6Al–4V–ELI subjected to equal-channel angular pressing

Результат исследований: Вклад в журналСтатьяНаучно-исследовательскаярецензирование

3 Цитирования (Scopus)
Язык оригиналаАнглийский
Страницы (с-по)272-278
Число страниц7
ЖурналPhysics of Metals and Metallography
Том118
Номер выпуска3
DOI
СостояниеОпубликовано - 1 мар 2017

Отпечаток

Equal channel angular pressing
pressing
Phase composition
Heating
Quenching
heating
quenching
Microhardness
microhardness
Temperature
temperature
structural analysis
Structural analysis
X ray diffraction analysis
phase transformations
Phase transitions
diagrams
diffraction
x rays

Ключевые слова

    Предметные области ASJC Scopus

    • Condensed Matter Physics
    • Materials Chemistry

    Предметные области WoS

    • Металловедение и Металлургия

    ГРНТИ

    • 29.00.00 ФИЗИКА

    Уровень публикации

    • Перечень ВАК

    Цитировать

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    keywords = "equal-channel angular pressing, microhardness, phase transformation, quenching, structure, titanium alloy",
    author = "Illarionov, {A. G.} and Shchetnikov, {N. V.} and Illarionova, {S. M.} and Popov, {A. A.}",
    year = "2017",
    month = "3",
    day = "1",
    doi = "10.1134/S0031918X1703005X",
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    Effect of heating temperature on the formation of structure and phase composition of a biocompatible alloy Ti–6Al–4V–ELI subjected to equal-channel angular pressing. / Illarionov, A. G.; Shchetnikov, N. V.; Illarionova, S. M.; Popov, A. A.

    В: Physics of Metals and Metallography, Том 118, № 3, 01.03.2017, стр. 272-278.

    Результат исследований: Вклад в журналСтатьяНаучно-исследовательскаярецензирование

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    AU - Illarionov, A. G.

    AU - Shchetnikov, N. V.

    AU - Illarionova, S. M.

    AU - Popov, A. A.

    PY - 2017/3/1

    Y1 - 2017/3/1

    KW - equal-channel angular pressing

    KW - microhardness

    KW - phase transformation

    KW - quenching

    KW - structure

    KW - titanium alloy

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    JO - Physics of Metals and Metallography

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