Structural Features and Tribological Properties of Multilayer Coatings Based on Refractory Metals
- 作者: Pogrebnjak A.D.1, Kravchenko Y.O.1,2, Bondar O.V.1, Zhollybekov B.3, Kupchishin A.I.4
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隶属关系:
- Department of Nanoelectronics
- NanoBioMedical Center
- Berdakh Karakalpak State University
- Abay Kazakh National Pedagogical University
- 期: 卷 54, 编号 2 (2018)
- 页面: 240-258
- 栏目: New Substances, Materials and Coatings
- URL: https://ogarev-online.ru/2070-2051/article/view/203885
- DOI: https://doi.org/10.1134/S2070205118020107
- ID: 203885
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详细
A comparative analysis of the structural features and tribological properties of multilayer coatings based on refractory metal compounds has been conducted in this review. Features of formation of the electronic structure of the synthesized coatings have been discussed, and the effect of methods and conditions of deposition on changes in the physicomechanical characteristics of nanocrystalline structures based on transition metal nitrides has been shown. Dependences of antifriction properties, corrosion resistance, and thermal stability on the modulation period (Λ) and the number of bilayers in the studied multilayer coatings have been determined. A decrease in the modulation period of individual layers in a coating positively affects the oxidation resistance of the coating, while an increase in the number of interfaces between the layers slows down the diffusion of oxygen atoms deep into the coating and, thereby, increases the protective properties of the multilayer system as a whole. The effect of the droplet component in cathodic-arc coatings on corrosion development mechanisms in corrosive media has been shown. A class of multifunctional multilayer coatings with an adaptive friction mechanism, which is characterized by a change in the properties and structure during tribological tests, has been discussed separately.
作者简介
A. Pogrebnjak
Department of Nanoelectronics
编辑信件的主要联系方式.
Email: alexp@i.ua
乌克兰, Sumy, 40007
Ya. Kravchenko
Department of Nanoelectronics; NanoBioMedical Center
Email: alexp@i.ua
乌克兰, Sumy, 40007; Poznan
O. Bondar
Department of Nanoelectronics
Email: alexp@i.ua
乌克兰, Sumy, 40007
B. Zhollybekov
Berdakh Karakalpak State University
Email: alexp@i.ua
乌兹别克斯坦, Nukus
A. Kupchishin
Abay Kazakh National Pedagogical University
Email: alexp@i.ua
哈萨克斯坦, Almaty
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