Short-term low-temperature glow discharge nitriding of 316L austenitic steel

The AISI 316L austenitic steel after glow discharge nitriding at temperature of T = 673 K and duration of τ=14,4 ks, for two different variants of specimen arrangement in the glow-discharge chamber was investigated. In order to assess the effectiveness of nitriding process, the surface layers profil...

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Main Authors: T. Frączek, M. Olejnik, J. Jasiñski, Z. Skuza
Format: Article
Language:English
Published: Croatian Metallurgical Society 2011-07-01
Series:Metalurgija
Subjects:
Online Access:http://public.carnet.hr/metalurg/Metalurgija/2011_vol_50/No_3/MET_50_3_151-154_Fraczek.pdf
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author T. Frączek
M. Olejnik
J. Jasiñski
Z. Skuza
author_facet T. Frączek
M. Olejnik
J. Jasiñski
Z. Skuza
author_sort T. Frączek
collection DOAJ
description The AISI 316L austenitic steel after glow discharge nitriding at temperature of T = 673 K and duration of τ=14,4 ks, for two different variants of specimen arrangement in the glow-discharge chamber was investigated. In order to assess the effectiveness of nitriding process, the surface layers profile analysis examination, surface hardness and hardness profile examination, the analysis of surface layer structures and corrosion resistance tests were performed. It has been found that application of a booster screen effects in a nitrogen diffusion depth increment into the 316L austenitic steel surface, what results in the surface layer thickness escalation.
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spelling doaj.art-5c4d67bb1a764ad993f6be9d63dd86a22022-12-21T19:19:00ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762011-07-01503151154Short-term low-temperature glow discharge nitriding of 316L austenitic steelT. FrączekM. OlejnikJ. JasiñskiZ. SkuzaThe AISI 316L austenitic steel after glow discharge nitriding at temperature of T = 673 K and duration of τ=14,4 ks, for two different variants of specimen arrangement in the glow-discharge chamber was investigated. In order to assess the effectiveness of nitriding process, the surface layers profile analysis examination, surface hardness and hardness profile examination, the analysis of surface layer structures and corrosion resistance tests were performed. It has been found that application of a booster screen effects in a nitrogen diffusion depth increment into the 316L austenitic steel surface, what results in the surface layer thickness escalation.http://public.carnet.hr/metalurg/Metalurgija/2011_vol_50/No_3/MET_50_3_151-154_Fraczek.pdfaustenitic stainless steelglow discharge nitridingsurface layerhardness
spellingShingle T. Frączek
M. Olejnik
J. Jasiñski
Z. Skuza
Short-term low-temperature glow discharge nitriding of 316L austenitic steel
Metalurgija
austenitic stainless steel
glow discharge nitriding
surface layer
hardness
title Short-term low-temperature glow discharge nitriding of 316L austenitic steel
title_full Short-term low-temperature glow discharge nitriding of 316L austenitic steel
title_fullStr Short-term low-temperature glow discharge nitriding of 316L austenitic steel
title_full_unstemmed Short-term low-temperature glow discharge nitriding of 316L austenitic steel
title_short Short-term low-temperature glow discharge nitriding of 316L austenitic steel
title_sort short term low temperature glow discharge nitriding of 316l austenitic steel
topic austenitic stainless steel
glow discharge nitriding
surface layer
hardness
url http://public.carnet.hr/metalurg/Metalurgija/2011_vol_50/No_3/MET_50_3_151-154_Fraczek.pdf
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AT molejnik shorttermlowtemperatureglowdischargenitridingof316lausteniticsteel
AT jjasinski shorttermlowtemperatureglowdischargenitridingof316lausteniticsteel
AT zskuza shorttermlowtemperatureglowdischargenitridingof316lausteniticsteel