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304 Austenitic stainless steel has been nitrided using an inductively coupled rf plasma.
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The chromium plated samples were nitrided using a pulsed direct current glow discharge in an NH3 atmosphere.
In this work, titanium disk samples were nitrided using a hollow cathode discharge (HCD) configuration of a standard plasma nitriding system in a 80%H2 N22 atmosphere at pressures of 150 and 250 Pa, and temperatures of 400, 450 and 500 °C for 1 and 2 h.
In this study, pure titanium was nitrided using RF plasma technique.
AISI 316 austenitic stainless steels have been plasma nitrided using a dc glow discharge unit in order to investigate the influence of gas composition on microstructure and corrosion behavior of treated samples.
Substrates of Al alloys 1100 and 2025 were plasma nitrided using a secondary vacuum dc plasma nitriding unit.
The samples were nitrided in an industrial equipment using a gas mixture consisting of 25% N2 + 75% H2 and the DC-pulsed glow discharge time was varied between 1 and 28 h.
Orthopedic materials (Ti-6Al-4V and CoCrMo) were nitrided at temperatures up to 850 °C using a newly developed technique high intensity plasma ion nitriding (HIPIN in order to enhance lifetime wear properties.
Nitriding steel sample SACM 645 was nitrided by active screen plasma nitriding (ASPN) using a titanium screen to form simultaneously TiN coating/nitrogen-diffusion layer on the sample surface.
Radical nitriding was performed using an external heating plasma apparatus.
Surface microstructures of the FPP treated specimens prior to gas nitriding were characterized using a micro-Vickers hardness tester, scanning electron microscope (SEM), optical microscope, electron probe micro analyzer (EPMA) and X-ray diffraction (XRD).
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