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- W3195627281 endingPage "127655" @default.
- W3195627281 startingPage "127655" @default.
- W3195627281 abstract "Al and N were incorporated into diamond-like carbon (DLC) films deposited using a filtered cathodic vacuum arc on AISI 4140 low-alloy steel. The structure, nanomechanical properties, local bonding, and thermal stability of non-doped DLC (ta-C), Al- and N-doped (ta-C:Al and ta-C:N), and Al- and N-co-doped (ta-C:Al:N) films were thoroughly investigated. The thermal stability of the deposited films was measured using radiative heating and electron beam bombardment under a vacuum during thermal annealing. In-situ near-edge X-ray absorption fine structure spectroscopy was performed to characterize the surface nanostructures at different temperatures. ta-C:Al:N exhibited not only high hardness (49.04 GPa) and high (58.43%) elastic recovery (ER)—approximately equal to those of non-doped DLC films: 51.12 GPa and 60.06% ER, respectively)—but also higher thermal stability than ta-C at ~600 °C owing to the synergy of Al2O3 and sp3 N-C bonds formed in the DLC films, as confirmed by X-ray photoelectron spectroscopy. ta-C:Al:N, therefore, is a suitable coating for wear and tribological applications, especially at high temperatures." @default.
- W3195627281 created "2021-08-30" @default.
- W3195627281 creator A5022353605 @default.
- W3195627281 creator A5023897746 @default.
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- W3195627281 date "2021-10-01" @default.
- W3195627281 modified "2023-09-24" @default.
- W3195627281 title "Nanomechanical properties and thermal stability of Al–N-co-doped DLC films prepared by filtered cathodic vacuum arc deposition" @default.
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- W3195627281 doi "https://doi.org/10.1016/j.surfcoat.2021.127655" @default.
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