EFFECT OF THE STRUCTURE OF TiB2–(Fe–Mo) PLASMA COATINGS ON MECHANICAL AND TRIBOTECHNICAL PROPERTIES

dc.contributor.authorM. S. Storozhenko
dc.contributor.authorA. P. Umanskii
dc.contributor.authorA. E. Terentiev
dc.contributor.authorI. M. Zakiev2
dc.date.accessioned2025-03-06T07:10:57Z
dc.date.issued2017
dc.description.abstractThe structure, mechanical properties, and wear-resistance of TiB2–(Fe–Mo) plasma coatings are investigated. Composite powders in the TiB2–(Fe–Mo) system with 20, 40, 60, and 80 wt.% of the Fe–13 wt.% Mo alloy were produced by vacuum sintering with subsequent grinding. The developed powders are conglomerates that contain both refractory and metallic phases. During plasma spraying of developed coatings, a coating with heterophase structure, which consists of Fe-based metal alloy and titanium diboride grains, is formed. The effect of the microstructure of plasma-sprayed coatings on the wear-resistance under abrasive wear and dry sliding friction conditions is studied. The scratch hardness testing revealed an insufficient strength of TiB2–20 wt.% (Fe–13 wt.% Mo) coatings and their poor adhesion to the coating base, resulting in the extremely gross wear, when friction. It is found out that, due to the optimal ratio of refractory and metallic phases, the TiB2–40 wt.% (Fe–13 wt.% Mo) coating possesses high wear-resistance under abrasive wear and dry sliding friction conditions.
dc.identifier.citationPowder Metallurgy and Metal Ceramics, Vol. 56, Nos. 1-2, May, 2017 (Russian Original Vol. 56, Nos. 1-2, Jan.-Feb., 2017)
dc.identifier.otherDOI 10.1007/s11106-017-9872 -x
dc.identifier.urihttps://archive.ipms.kyiv.ua/handle/123456789/155
dc.language.isoen
dc.publisherPowder Metallurgy and Metal Ceramics
dc.subjectplasma spraying
dc.subjectcoating
dc.subjecttitanium diboride
dc.subjectiron-molybdenum alloy
dc.subjectstructure
dc.subjectwear- resistance
dc.titleEFFECT OF THE STRUCTURE OF TiB2–(Fe–Mo) PLASMA COATINGS ON MECHANICAL AND TRIBOTECHNICAL PROPERTIES
dc.typeArticle

Файли

Контейнер файлів

Зараз показуємо 1 - 1 з 1
Ескіз недоступний
Назва:
Storozhenko2017_Article_EffectOfTheStructureOfTiB2FeMo.pdf
Розмір:
4.84 MB
Формат:
Adobe Portable Document Format

Ліцензійна угода

Зараз показуємо 1 - 1 з 1
Ескіз недоступний
Назва:
license.txt
Розмір:
1.71 KB
Формат:
Item-specific license agreed to upon submission
Опис: