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Please use this identifier to cite or link to this item: https://libeldoc.bsuir.by/handle/123456789/61398
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dc.contributor.authorCherenda, N. N.-
dc.contributor.authorGrigoriev, S. N.-
dc.contributor.authorBasalai, A. V.-
dc.contributor.authorBibik, N. V.-
dc.contributor.authorVereschaka, A. A.-
dc.contributor.authorIsobello, A. Yu.-
dc.contributor.authorRusalsky, D. P.-
dc.contributor.authorKuleshov, A. K.-
dc.contributor.authorUglov, V. V.-
dc.contributor.authorChayeuski, V. V.-
dc.contributor.authorSaladukhin, I. A.-
dc.date.accessioned2025-08-15T11:30:08Z-
dc.date.available2025-08-15T11:30:08Z-
dc.date.issued2025-
dc.identifier.citationStructure and mechanical properties of (Zr, Nb)N, (Zr, Hf)N and (Zr, Nb, Hf)N coatings / N. N. Cherenda, S. N. Grigoriev, A. V. Basalai [et al.] // Russian Physics Journal. – 2025. – Vol. 68 (4). – P. 601–608.en_US
dc.identifier.urihttps://libeldoc.bsuir.by/handle/123456789/61398-
dc.description.abstractThe paper investigates the structure and mechanical properties of (Zr, Nb)N, (Zr, Hf)N and (Zr, Nb, Hf)N vacuum arc deposited coatings on the Ti-6Al-4V titanium substrate. The coatings are a single-phase ZrN-based solid solution. The highest (17 GPa) microhardness is obtained for the (Zr, Hf, Nb)N coating. The (Zr, Hf)N coating shows the highest critical force Lc3 during scratch tests. A decrease in the niobium concentration in the (Zr, Nb)N coating and the higher hafnium concentration in the (Zr, Hf)N coating, provide the growth in the critical force Lc3.en_US
dc.language.isoenen_US
dc.publisherSpringeren_US
dc.subjectпубликации ученыхen_US
dc.subjecttitanium alloyen_US
dc.subjectmedical implantsen_US
dc.subjectnitride coatingen_US
dc.subjectadhesion microhardnessen_US
dc.titleStructure and mechanical properties of (Zr, Nb)N, (Zr, Hf)N and (Zr, Nb, Hf)N coatingsen_US
dc.typeArticleen_US
dc.identifier.DOIhttps://doi.org/10.1007/s11182-025-03471-7-
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