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Enhanced mechanical, thermal and electrical properties of high‐entropy HfMoNbTaTiVWZr thin film metallic glass and its nitrides
Luleå University of Technology, Department of Engineering Sciences and Mathematics, Material Science. Department of Physics, Chalmers University of Technology, SE‐412 96 Göteborg, Sweden.ORCID iD: 0000-0003-3735-2133
Department of Mechanics of Materials (ZMM), Institute of Fundamental Technological Research, Polish Academy of Sciences, 02-106 Warsaw, Poland.
Department of Mechanics of Materials (ZMM), Institute of Fundamental Technological Research, Polish Academy of Sciences, 02-106 Warsaw, Poland.
Luleå University of Technology, Department of Engineering Sciences and Mathematics, Material Science. Research Center for Computational Design of Advanced Functional Materials, National Institute of Advanced Industrial Science and Technology (AIST), Central 2, 1‐1‐1 Umezono, Tsukuba, Ibaraki, 305‐8568 Japan; Center for Multidimensional Carbon Materials, Institute for Basic Science (IBS), Ulsan, 44919 Republic of Korea.ORCID iD: 0000-0003-1542-6170
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2022 (English)In: Advanced Engineering Materials, ISSN 1438-1656, E-ISSN 1527-2648, Vol. 24, no 9, article id 2101626Article in journal (Refereed) Published
Abstract [en]

The inception of high-entropy alloy promises to push the boundaries for new alloy design with unprecedented properties. This work reports entropy stabilisation of an octonary refractory, HfMoNbTaTiVWZr, high-entropy thin film metallic glass, and derived nitride films. The thin film metallic glass exhibited exceptional ductility of ≈60% strain without fracture and compression strength of 3 GPa in micro-compression, due to the presence of high density and strength of bonds. The thin film metallic glass shows thermal stability up to 750 °C and resistance to Ar-ion irradiation. Nitriding during film deposition of HfMoNbTaTiVWZr thin film of strong nitride forming refractory elements results in deposition of nanocrystalline nitride films with compressive strength, hardness, and thermal stability of up to 10 GPa, 18.7 GPa, and 950 °C, respectively. The high amount of lattice distortion in the nitride films leads to its insulating behaviour with electrical conductivity as low as 200 S cm−1 in the as-deposited film. The design and exceptional properties of the thin film metallic glass and derived nitride films may open up new avenues of development of bulk metallic glasses and the application of refractory-based high entropy thin films in structural and functional applications.

Place, publisher, year, edition, pages
John Wiley & Sons, 2022. Vol. 24, no 9, article id 2101626
Keywords [en]
high-entropy alloy, high-entropy nitridefilm, high temperature, micro-compression, thinfilm metallic glasses
National Category
Materials Chemistry Inorganic Chemistry Metallurgy and Metallic Materials
Research subject
Engineering Materials; Applied Physics; Experimental Physics
Identifiers
URN: urn:nbn:se:ltu:diva-90576DOI: 10.1002/adem.202101626ISI: 000796613400001Scopus ID: 2-s2.0-85132639930OAI: oai:DiVA.org:ltu-90576DiVA, id: diva2:1656892
Funder
Swedish Foundation for Strategic Research, RIF14-0083
Note

Validerad;2022;Nivå 2;2022-09-29 (hanlid);

Funder: Polish National Science Centre (2015/19/D/ST8/03200)

Available from: 2022-05-09 Created: 2022-05-09 Last updated: 2022-09-29Bibliographically approved

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Alvi, SajidHedman, DanielGilzad Kohan, MojtabaVomiero, AlbertoAkhtar, Farid

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