STRUCTURE, PHASE COMPOSITION, AND WEAR MECHANISMS OF PLASMA-SPRAYED NiCrSiB–20 wt.% TiB2 COATING

dc.contributor.authorA. P. Umanskii
dc.contributor.authorM. S. Storozhenko
dc.contributor.authorI. V. Hussainova
dc.contributor.authorA. E. Terentiev
dc.contributor.authorA. M. Kovalchenko
dc.contributor.authorM. M. Antonov
dc.date.accessioned2025-03-06T06:58:04Z
dc.date.issued2015
dc.description.abstractThe structure, phase composition, and wear mechanisms of plasma-sprayed NKhTB20 coating (NiCrSiB–20 wt.% TiB2) are studied. To produce NKhTB20 composite powder, commercial PR-NKh16SR3 (NiCrSiB) powder was mixed with 20 wt.% TiB2 and the charge was pressed and sintered in vacuum at 1100C for 30 min. During sintering, the components react to form chromium borides. The sinters were ground and classified into the particle size fraction –100+60 nm for plasma spraying. The plasma-sprayed NKhTB20 coating consists of a nickel-based matrix reinforced with titanium diboride and chromium boride grains. The friction and wear behavior of the NKhTB20 coating in dry friction against plasma-sprayed NiCrSiB and NKhTB20 coatings is examined. It is revealed that the NKhTB20/NiCrSiB friction pair has higher wear resistance than NKhTB20/NKhTB20. The contact surfaces of the NKhTB20/NKhTB20 friction pair are damaged under oxidative and abrasive wear mechanisms. Oxidative wear is the dominant mechanism for the NKhTB20/NiCrSiB friction surface. Complex oxide films form on the NKhTB20/NiCrSiB sliding surface and prevent it from damage.
dc.identifier.citationPowder Metallurgy and Metal Ceramics, Vol. 53, Nos. 11-12, March, 2015 (Russian Original Vol. 53, Nos. 11-12, Nov.-Dec., 2014)
dc.identifier.otherDOI 10.1007/s11106-015-9661-3
dc.identifier.urihttps://archive.ipms.kyiv.ua/handle/123456789/154
dc.language.isoen
dc.publisherPowder Metallurgy and Metal Ceramics
dc.subjectself-fluxing alloy
dc.subjecttitanium diboride
dc.subjectplasma-sprayed coating
dc.subjectstructure
dc.subjectwear resistance
dc.subjectwear mechanism
dc.titleSTRUCTURE, PHASE COMPOSITION, AND WEAR MECHANISMS OF PLASMA-SPRAYED NiCrSiB–20 wt.% TiB2 COATING
dc.typeArticle

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