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Thermal and Oxidation Behavior of CoCrFeMnNi Alloy with and Without Yttrium Oxide Particle Dispersion

  1. 1.
    SYSNO ASEP0519520
    Document TypeJ - Journal Article
    R&D Document TypeJournal Article
    Subsidiary JČlánek ve WOS
    TitleThermal and Oxidation Behavior of CoCrFeMnNi Alloy with and Without Yttrium Oxide Particle Dispersion
    Author(s) Vilémová, Monika (UFP-V) RID, ORCID
    Illková, Ksenia (UFP-V)
    Csáki, Štefan (UFP-V) ORCID
    Lukáč, František (UFP-V) ORCID
    Hadraba, Hynek (UFM-A) RID, ORCID
    Matějíček, Jiří (UFP-V) RID, ORCID
    Chlup, Zdeněk (UFM-A) RID, ORCID
    Klečka, Jakub (UFP-V) ORCID
    Number of authors8
    Source TitleJournal of Materials Engineering and Performance. - : Springer - ISSN 1059-9495
    Roč. 28, č. 9 (2019), s. 5850-5859
    Number of pages10 s.
    Languageeng - English
    CountryUS - United States
    Keywordshigh-entropy alloy ; mechanical-properties ; microstructure ; conductivity ; high-entropy alloys ; oxidation ; particle dispersion ; thermal conductivity ; thermal expansion ; thermal properties
    Subject RIVJG - Metallurgy
    OECD categoryMaterials engineering
    Subject RIV - cooperationInstitute of Physics of Materials - Metallurgy
    R&D ProjectsGA17-23964S GA ČR - Czech Science Foundation (CSF)
    Method of publishingLimited access
    Institutional supportUFP-V - RVO:61389021 ; UFM-A - RVO:68081723
    UT WOS000487912100053
    EID SCOPUS85074202809
    DOI10.1007/s11665-019-04311-9
    AnnotationThe equiatomic CoCrFeMnNi alloy is currently one of the most studied high-entropy alloys. In our previous work, a new grade of CoCrFeMnNi high-entropy alloy with yttria-based particle dispersion was introduced showing improved mechanical properties, especially high-temperature strength and creep rate. In this study, a detailed analysis of room to high-temperature thermal properties was performed, as it is important for defining the future application of the alloy and opening the discussion on tailoring the thermal response. Thermal properties are not well known for the original CoCrFeMnNi alloy or for CoCrFeMnNi with yttria dispersion. As a result of the analysis, thermal properties of both alloys and the effect of the oxide dispersion are discussed. Most of the thermal properties remain unchanged. However, it was found that the presence of 0.3% yttria influences the oxidation rate of CoCrFeMnNi alloy at the initial and intermediate oxidation times. The onset of the oxidation is described in detail. Yttria nano-oxide dispersion and related grain refinement also reduce the microstructural degradation caused by the formation of voids due to outward Mn diffusion.
    WorkplaceInstitute of Plasma Physics
    ContactVladimíra Kebza, kebza@ipp.cas.cz, Tel.: 266 052 975
    Year of Publishing2020
    Electronic address10.1007/s11665-019-04311-9
Number of the records: 1  

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