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- W2064786266 abstract "Stainless steel coatings were deposited at a low temperature on low-carbon steel and mono-crystalline silicon substrates by dc-magnetron sputtering in a reactive atmosphere of nitrogen at room temperature. The total mass flow of argon and nitrogen was kept constant (20 sccm) for all depositions and the nitrogen mass flow varied between 0 and 10 sccm with increments of 1 sccm, while the argon mass flow was decreased by the same amount. The elemental composition of the coatings and their deposition rate were studied by Rutherford backscattering spectroscopy (RBS), by X-ray emission induced by charge particles (PIXE), and by nuclear reaction analysis (NRA). The nitrogen content was found to increase with increasing mass flow up to a saturation value of 40 at.%. A structural analysis by means of conversion electron Mossbauer spectroscopy (CEMS) and grazing incidence X-ray diffraction (GXRD) was also performed. The results indicated the presence of the so-called S-phase, probably due to nitrogen in solid solution at interstitial sites in the austenite lattice. The lattice expanded as the nitrogen mass flow increased. This phase is particularly interesting for industrial applications because it increased the resistance to wear without compromising the corrosion resistance of the steel." @default.
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- W2064786266 date "2000-12-01" @default.
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- W2064786266 title "Structural and quantitative analysis of nitrided stainless steel coatings deposited by dc-magnetron sputtering" @default.
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- W2064786266 doi "https://doi.org/10.1016/s0040-6090(00)01279-7" @default.
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