Superhard nanostructured Ti–Hf–N(Fe) coatings are prepared. The formation of local regions of (Ti, Hf)N, FeN, and Hf is detected using μ-PIXE (ion microbeam). It is revealed that the synthesized coatings have a nanohardness of 48 ± 1 GPa and are composed of nanograins with a size of 4.8–10.6 nm, which are enveloped by finer entities of other phases (Ti, Fe)N and FeN. There is a good correlation between the results derived by XRD, TEM, AFM, and SEM and microanalysis, which in turn are complemented by the analysis results obtained using an ion microbeam and PIXE. When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/3492
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The paper investigates the structure and properties of nanoscale multilayer coatings based on (TiZr)...
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This paper investigates the microstructure, physical, chemical and mechanical of superhard nanocompo...
The paper describes the nanostructured coatings produced by C-PVD method at various deposition condi...
Hard and super hard coatings of Zr-Ti-Si-N of from 2.8 μm to 3.5 μm thickness were fabricated using ...
This work presents the results of (Zr–Ti–Cr–Nb)N superhard coatings research. The samples were fabri...
Current paper presents the results of investigating of nanostructured cathode arc vacuum evaporation...
Using such unique methods of analysis as slow positron beam (SPB), RBS, μ-PIXE (proton microbeam), X...
Superhard nanostructured Ti–Hf–Si–N coatings (films) possessing high mechanical properties were obta...
The formation of a phase with a FCC lattice of the NaCl structure type is observed following the de...
By vacuum-arc evaporation of multielement Ti+Zr+Nb cathode in nitrogen atmosphere, (Ti-Zr-Nb)N coati...
The elemental and structural features of the nitride nanostructured coating produced by vacuum arc e...
Nitrides of high-entropy alloys (TiHfZrNbVTa)N were fabricated using cathodic-vacuum-arc-vapor depos...
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