2025
Effects of nitrogen content on microstructure and mechanical properties of DC magnetron sputtered Cr-Mn-Mo-Si-Y-(N) high entropy coatings
VRÁNA, Lukáš; Tomasz STASIAK; Matej FEKETE; Vilma BURŠÍKOVÁ; Zsolt CZIGÁNY et al.Základní údaje
Originální název
Effects of nitrogen content on microstructure and mechanical properties of DC magnetron sputtered Cr-Mn-Mo-Si-Y-(N) high entropy coatings
Autoři
VRÁNA, Lukáš; Tomasz STASIAK; Matej FEKETE; Vilma BURŠÍKOVÁ; Zsolt CZIGÁNY; Katalin BALÁZSI a Pavel SOUČEK
Vydání
Surface and Coatings Technology, Elsevier B.V. 2025, 0257-8972
Další údaje
Jazyk
angličtina
Typ výsledku
Článek v odborném periodiku
Obor
20506 Coating and films
Stát vydavatele
Švýcarsko
Utajení
není předmětem státního či obchodního tajemství
Odkazy
Impakt faktor
Impact factor: 6.100 v roce 2024
Označené pro přenos do RIV
Ano
Organizační jednotka
Přírodovědecká fakulta
UT WoS
EID Scopus
Klíčová slova anglicky
Crystal structure; High entropy alloy; High entropy nitride; Lattice distortion; Nitride formation enthalpy; Reactive magnetron sputtering
Příznaky
Mezinárodní význam, Recenzováno
Změněno: 9. 7. 2025 13:54, Mgr. Marie Novosadová Šípková, DiS.
Anotace
V originále
This study investigates Cr-Mn-Mo-Si-Y-(N) high-entropy alloy and high-entropy nitride coatings, combining strong and weak nitride-forming elements with large atomic radii differences. The coatings are deposited using reactive DC magnetron sputtering in an Ar/N2 atmosphere. The research examines the effects of varying N2 flow rates, substrate temperatures, and bias. The coatings are stabilized by nitrogen vacancies as N content saturated under 45 at.%. It is observed that bias does not influence chemical composition or structure. Nanostructure analysis reveals that coatings are composed of Cr-Mo-rich with nanocrystallites and amorphous Si-Mn-rich nanolayers. Crystallization occurs in coatings that contain at least 40 at.%. of N and are deposited at 580°C. The mechanical properties improve with nitrogen incorporation and 580°C substrate temperature, achieving peak hardness and reduced modulus of 15.5 and 195.1 GPa, respectively. Elastic HIT/Er and plastic HIT3/Er2 deformation parameters reach values up to 0.09 and 0.12 GPa, respectively. The results suggest that the high content of Mn, which is a weak nitride former, and the lattice distortion caused by Si and Y, hindered long-range ordering. The study highlights that nitrogen content strongly governs the properties of high-entropy nitride coatings, offering first insights into this novel material system.
Návaznosti
| GA23-05947S, projekt VaV |
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| 90239, velká výzkumná infrastruktura |
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