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Welding InternationalVolume 27, Issue 1, January 2013, Pages 77-82

Effect of active gas mixtures on the efficiency of plasma surface hardening(Article)

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  • Russian State Professional Teaching University, Russian Federation

Abstract

Investigations were carried out into the possibilities of obtaining special properties of the surface of a metal by a moving nitrogen-containing direct action plasma arc. Analysis of the calculated and experimental data indicates the effect of 'freezing' of nitrogen after implantation in the surface layer (up to 100 μm thick) as a result of a reduction of the rate of desorption from the surface and diffusion into the metal. At the same time, nitrogen dissolves to the concentration required for the formation of iron nitrides of different phase composition, and the metal with higher wear resistance of the surface layer can be produced. When carbon-containing gases are added to the mixture, the hardness and endurance limit of the surface of the metal increase. © 2013 Copyright Taylor and Francis Group, LLC.

Author keywords

desorptiondiffusionimplantationnitridingplasma compositionplasmotronsurface modification

Indexed keywords

Engineering uncontrolled termsEndurance limitIron nitridesPlasma arcPlasma compositionPlasma surfacesplasmotronSpecial propertiesSurface layers
Engineering controlled terms:DesorptionDiffusionIon implantationNitridesNitridingNitrogenSurface treatment
Engineering main heading:Metals
  • ISSN: 09507116
  • Source Type: Journal
  • Original language: English
  • DOI: 10.1080/09507116.2012.695158
  • Document Type: Article

  Anakhov, S. V.; Russian State Professional Teaching University, Russian Federation
© Copyright 2012 Elsevier B.V., All rights reserved.

Cited by 3 documents

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A Study on Formation and Growth Mechanism of Nitride Layers during Plasma Nitriding Process of Plastic Injection Mold Steel
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Nefedyev, S.P. , Vdovin, K.N. , Emelyushin, A.N.
Peculiarities of forming of the wear-resistant cast iron coating structure on steel 45 upon plasma-powder surfacing
(2016) Materials Science Forum
View details of all 3 citations
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