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- W2006640384 abstract "Metal containing amorphous carbon films show excellent tribological properties with improved adhesion on metal substrates compared with metal-free films. By varying the kind of metal and the metal content in the films physical properties like optical absorption, electrical conductivity and mechanical properties can be changed. In order to get insight into the factors influencing the abrasive wear behaviour, structural and mechanical investigations were performed on niobium-containing amorphous hydrogenated carbon films (NbC:H). Films with metal contents between 0 and 50 at.% Nb were prepared in a combined plasma-chemical vapour deposition/radio frequency-sputtering process using different hydrocarbon gases and various total pressures. Atomic concentrations were deduced from electron probe microanalysis, secondary neutral mass spectroscopy and X-ray photoelectron spectroscopy measurements. The hydrocarbon matrix was characterized by infrared spectroscopy and thermal gas evolution. Small- and wide-angle X-ray scattering were used to determine structural and geometrical properties of the NbC precipitation. The microstructure of the films revealed a granular structure of nanocrystalline NbC particles embedded in a matrix of highly crosslinked CHx-units. Mechanical and tribological properties were investigated by nanometer indentation, flexural strength, residual stress, friction coefficient and abrasive wear measurements. The results of investigations are discussed in terms of the relation between fundamental mechanical properties, tribological behaviour and the film microstructure." @default.
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- W2006640384 date "1992-04-01" @default.
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- W2006640384 title "Structural and mechanical properties of niobium-containing amorphous hydrogenated carbon films (NbC:H)" @default.
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- W2006640384 doi "https://doi.org/10.1016/0925-9635(92)90165-k" @default.
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