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Title | Multilayer Nanostructured Wear-Resistant Coatings with Increased Thermal Stability, Adapted to Varying Friction Conditions |
Authors |
Belov, D.S.
Volkhonsky, A.O. Blinkov I.V., Skryleva, E.A. Michalski, J. |
ORCID | |
Keywords |
Wear-resistant Nanostructured multilayer coatings Arc-PVD coatings Hardness Nanoindentation Tribological properties Adhesion |
Type | Conference Papers |
Date of Issue | 2013 |
URI | http://essuir.sumdu.edu.ua/handle/123456789/35318 |
Publisher | Sumy State University |
License | Copyright not evaluated |
Citation | Multilayer Nanostructured Wear-Resistant Coatings with Increased Thermal Stability, Adapted to Varying Friction Conditions [Текст] / D.S. Belov, A.O. Volkhonsky, I.V. Blinkov et al. // Nanomaterials: Applications & Properties (NAP-2013) : 3-rd International conference, Alushta, the Crimea, Ukraine, September 16-21, 2013 / Edited by: A. Pogrebnjak. - Sumy : Sumy State University, 2013. - V.2, No2. - 02FNC10 |
Abstract |
The work covers studying of influence of indexes of an ion-plasma vacuum-arc deposition method to the
structure, composition and properties of Ti-Al-N/Zr-Nb-N/Cr-N multilayer nanostructured coatings (MNC).
The average crystallites size within the layers is about 5-10 nm. Received coatings are featured by absence of any
change in the composition and properties after heating up to 1000 ºС, the coatings hardness is up to
36,6GPa, Young's modulus of elasticity is up to 580 GPa, plastic work of deformation is up to 64 %, adhesive
strength is about 100 N and coefficient of friction is 0,45.
When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/35318 |
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