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Топографические характеристики и элементный состав поверхностных Ti-Ni-Ta-Si сплавов, сформированных на Ti-Ni подложке электронно-пучковым способом С. Ю. Тимошевская, Е. Ю. Гудимова

By: Тимошевская, Светлана ЮрьевнаContributor(s): Гудимова, Екатерина ЮрьевнаMaterial type: ArticleArticleContent type: Текст Media type: электронный Other title: Topographical characteristics and element composition of surface Ti-Ni-Ta-Si alloys formed on a Ti-Ni substrate electron beam method [Parallel title]Subject(s): никель-титановые сплавы | электронно-пучковое воздействие | элементный состав | экспериментальные исследованияGenre/Form: статьи в сборниках Online resources: Click here to access online In: Перспективы развития фундаментальных наук. Т. 1 : сборник научных трудов XVII Международной конференции студентов, аспирантов и молодых ученых, Россия, Томск, 21-24 апреля 2020 г Т. 1 : Физика. С. 203-205Abstract: In the present study, we performed studies of Ti-Ni-Ta-Si surface alloy on TiNi substrate formed by alternating operations of deposition of Ti60TasoSii0 film (thickness ~ 100 nm) and subsequent liquid-phase mixing of «film/substrate» system with low-energy high-current pulse electron beam (LEHCPEB). Analysis of surface morphology change, roughness parameters and elemental composition as a result of treatment was carried out using optical metallography, profilometry and scanning electron microscopy methods. It has been found that the electron beam method of forming surface alloys does not make significant changes in surface relief, compared to the original sample, and allows controlling the composition of the surface layer.
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In the present study, we performed studies of Ti-Ni-Ta-Si surface alloy on TiNi substrate formed by alternating operations of deposition of Ti60TasoSii0 film (thickness ~ 100 nm) and subsequent liquid-phase mixing of «film/substrate» system with low-energy high-current pulse electron beam (LEHCPEB). Analysis of surface morphology change, roughness parameters and elemental composition as a result of treatment was carried out using optical metallography, profilometry and scanning electron microscopy methods. It has been found that the electron beam method of forming surface alloys does not make significant changes in surface relief, compared to the original sample, and allows controlling the composition of the surface layer.

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