Please use this identifier to cite or link to this item: http://essuir.sumdu.edu.ua/handle/123456789/64245
Or use following links to share this resource in social networks: Recommend this item
Title The effects of Cr and Si additions and deposition conditions on the structure and properties of the (Zr-Ti-Nb)N coatings
Authors Pohrebniak, Oleksandr Dmytrovych  
Bahdasarian, Artem Anatoliiovych  
Kravchenko, Yaroslav Olehovych  
Beresnev, V.M.
Nyemchenko, U.S.
Ivashchenko, V.I.
Shaimardanov, ZH.K.
Plotnikov, S.V.
Maksakova, O.
ORCID http://orcid.org/0000-0002-9218-6492
http://orcid.org/0000-0001-5350-7153
http://orcid.org/0000-0003-0984-1298
Keywords Nitrides
Vacuum deposition
hardness
adhesion
First-principles bandstructure
Type Article
Date of Issue 2017
URI http://essuir.sumdu.edu.ua/handle/123456789/64245
Publisher Elsevier
License
Citation The effects of Cr and Si additions and deposition conditions on the structure and properties of the (Zr-Ti-Nb)N coatings [Text] / A.D. Pogrebnjak, A.A. Bagdasaryan, V.M. Beresnev [et al.] // Ceramics International. - 2017. - №43(1). - P. 771-782.
Abstract In this study, (Zr-Ti-Nb)N, (Zr-Ti-Cr-Nb)N and (Zr-Ti-Cr-Nb-Si)N nitride coatings were obtained using a well-developed vacuum arc deposition. The systematical investigations demonstrate that the chemical composition, microstructure, and properties of the coatings intimately rely on the deposition parameters (pressure of working gas and substrate bias). Effects of Cr and Si additions on microstructure and mechanical properties of the (Zr-Ti-Nb)N coatings have been investigated using scanning electron microscopy (SEM) equipped with energy dispersive spectrum (EDS), X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), transmission electron microscope (TEM), hardness measurements and adhesion testing. First-principles band-structure calculations and Gibbs-Rosenbaum triangle representation have been used to investigate the elemental and phase compositions in nitride coatings. The multi-component (Zr-Ti-Cr-Nb-Si)N and (Zr-Ti-Nb)N coatings are found to be a simple face-centered cubic (FCC) solid solution. For the coatings without Si, the structure is mainly composed of TiN fcc phase and Cr2N trigonal modification. The hardness values were in the ranges (24–42 GPa). The (Zr-Ti-Nb)N, (Zr-Ti-Cr-Nb)N coatings provided the best adhesive strength in different conditions. The (Zr-Ti-Cr-Nb-Si)N coatings exhibited the worst adhesive strength, which may be attributed to the relative low hardness.
Appears in Collections: Наукові видання (ЕлІТ)

Views

China China
2
Czechia Czechia
1
Germany Germany
767013
Greece Greece
1
Ireland Ireland
383508
Lithuania Lithuania
1
Netherlands Netherlands
7099
Peru Peru
1
South Africa South Africa
1
Sweden Sweden
1
Switzerland Switzerland
1
Ukraine Ukraine
30732792
United Kingdom United Kingdom
16344102
United States United States
329097944
Unknown Country Unknown Country
30732791

Downloads

Australia Australia
345624
Canada Canada
10113276
China China
408065259
Colombia Colombia
1
France France
767014
Germany Germany
13228685
Hong Kong SAR China Hong Kong SAR China
1
India India
13228685
Iran Iran
408065259
Ireland Ireland
171163315
Japan Japan
10113268
Kazakhstan Kazakhstan
80463
Lithuania Lithuania
1
Peru Peru
1
Poland Poland
1
Romania Romania
1
Russia Russia
1
South Africa South Africa
1
South Korea South Korea
307742
Spain Spain
1
Taiwan Taiwan
13228684
Ukraine Ukraine
92195999
United Kingdom United Kingdom
3882433
United States United States
329097945
Unknown Country Unknown Country
96

Files

File Size Format Downloads
Pogrebnjak_effects.pdf 2,51 MB Adobe PDF 1473883756

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.