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- W2057361092 abstract "Nanostructured C–N/NbNx coatings were deposited by radio-frequency magnetron sputtering when two cathodes of carbon and niobium were operating concurrently in an argon/nitrogen mixture in the side-by-side configuration. The composite coatings, typically 1–3 μm thick, were deposited at a substrate temperature not exceeding 200°C. Various substrates such as highly polished tungsten carbide and silicon were used. The friction coefficient and wear rate for Si3N4 and 52100 steel balls were measured at room temperature and after heat treatment of the coatings to 500°C in air, on a reciprocating ball-on-disc tribometer. We investigated the structure of the multilayer by means of low-angle X-ray reflection and high-angle X-ray diffraction after isochronal annealing at temperatures from room temperature to 500°C in air. From the low-angle reflection we determined the multilayer period and thickness of a surface oxide layer. The high-angle diffraction data revealed the polycrystalline structure of the multilayer, which has a grain size comparable to the multilayer period. Multilayer nanocomposites can be deposited at low substrate temperatures in conventional physical vapour deposition coaters and can offer a number of prospective industrial applications." @default.
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- W2057361092 date "2000-04-01" @default.
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- W2057361092 title "Temperature stability of C–N/NbN nanocomposite multilayers" @default.
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- W2057361092 doi "https://doi.org/10.1016/s0925-9635(99)00301-5" @default.
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