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dc.contributor.authorCherenda, N. N.-
dc.contributor.authorRogovaya, I. S.-
dc.contributor.authorShymanski, V. I.-
dc.contributor.authorUglov, V. V.-
dc.contributor.authorSaladukhin, I. A.-
dc.contributor.authorAstashynski, V. M.-
dc.contributor.authorKuzmitski, A. M.-
dc.contributor.authorIvanov, Yu. F.-
dc.contributor.authorPetrikova, E. A.-
dc.date.accessioned2022-12-19T12:16:04Z-
dc.date.available2022-12-19T12:16:04Z-
dc.date.issued2022-
dc.identifier.citationHigh Temperature Material Processes – 2022. – V.26, № 2 – P.1–9.ru
dc.identifier.urihttps://elib.bsu.by/handle/123456789/290994-
dc.description.abstractIn this work, the element and phase compositions and mechanical properties of a titanium (Ti) surface layer alloyed by zirconium (Zr), niobium (Nb), and aluminum (Al) under the impact of compression plasma flows on an Nb–Ti–Zr–Al/Ti substrate coating system were investigated. X-ray diffraction analysis, scanning electron microscopy, energy-dispersive microanalysis, microhardness measurements, and tribological tests were used as investigation techniques. The findings showed that the plasma impact resulted in dissolution of the coating and formation of a Ti surface layer with a thickness of ~ 10 μm alloyed by Zr, Nb, and Al atoms. The increase in the energy absorbed by the surface layer resulted in a decrease in the concentration of the alloyed elements. Solid solutions based on the α-Ti and martensite α-Ti phases were observed in the alloyed layer. Surface titanium nitride formed after the plasma impact due to the usage of nitrogen as a plasma generating gas. Alloying by plasma impact led to an increase in the microhardness and a decrease in the friction coefficient.ru
dc.language.isoenru
dc.publisherBegell House, Inc.ru
dc.rightsinfo:eu-repo/semantics/openAccessru
dc.subjectЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физикаru
dc.titleElement and Phase Composition, Mechanical Properties of Titanium Surface Layer Alloyed by Zr, Nb, Al Under the Action of Compression Plasma Flowsru
dc.typearticleru
dc.rights.licenseCC BY 4.0ru
dc.identifier.DOI10.1615/HighTempMatProc.2022043003-
Располагается в коллекциях:Кафедра физики твердого тела и нанотехнологий (статьи)

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