CHARACTERIZATION OF NITROCARBURIZED COATING BY PLASMA ELECTROLYTIC SATURATION

Plasma electrolytic saturation (PES) is an atmospheric pressure plasma deposition which is used for fabrication of nanostructural coatings. This process starts with the appearance of some sparks on the surface and finally by the formation of plasma envelope around the sample, particles and free rad...

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Main Authors: Seyyed Mohammad Noori, Changiz Dehghanian
Format: Article
Language:English
Published: SciCell s.r.o. 2018-04-01
Series:Acta Metallurgica Slovaca
Subjects:
PES
EIS
Online Access:https://journals.scicell.org/index.php/AMS/article/view/249
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spelling doaj-f9b1dd775680437d956a5c8253a4e0362020-11-25T01:31:36ZengSciCell s.r.o.Acta Metallurgica Slovaca1335-15321338-11562018-04-01241CHARACTERIZATION OF NITROCARBURIZED COATING BY PLASMA ELECTROLYTIC SATURATIONSeyyed Mohammad NooriChangiz Dehghanian Plasma electrolytic saturation (PES) is an atmospheric pressure plasma deposition which is used for fabrication of nanostructural coatings. This process starts with the appearance of some sparks on the surface and finally by the formation of plasma envelope around the sample, particles and free radicals bombard the surface and diffusion takes place into the work-piece. In this paper, the effect of frequency (500, 1000 and 10000 Hz) as pulse parameters on properties of nitrocarburized layers deposited on AISI 1045 steel were investigated. The analytical characteristics of the coating were assessed using X-ray diffraction (XRD) and scanning electron microscopy (SEM) techniques. The corrosion behavior of coatings was analyzed by potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) in 3.5% sodium chloride solution. Moreover, the microhardness and wear resistance of coated samples were also studied. The results indicated that applying nitrocarburized layer in all cases, improved the corrosion resistance, microhardness and also wear resistance of the substrate. The coatings treated at the frequency of 10000 Hz, had corrosion resistance about 2.4 and 1.4 times higher than those of the samples prepared at the frequency of 500 Hz and 1000 Hz. The surface hardness of 10000 Hz treated sample was about 1040 Vickers, which was more than those of the two other ones. An increase in frequency also caused wear resistance to increase. https://journals.scicell.org/index.php/AMS/article/view/249PESnitrocarburizingfrequencycorrosionEISmicrohardness
collection DOAJ
language English
format Article
sources DOAJ
author Seyyed Mohammad Noori
Changiz Dehghanian
spellingShingle Seyyed Mohammad Noori
Changiz Dehghanian
CHARACTERIZATION OF NITROCARBURIZED COATING BY PLASMA ELECTROLYTIC SATURATION
Acta Metallurgica Slovaca
PES
nitrocarburizing
frequency
corrosion
EIS
microhardness
author_facet Seyyed Mohammad Noori
Changiz Dehghanian
author_sort Seyyed Mohammad Noori
title CHARACTERIZATION OF NITROCARBURIZED COATING BY PLASMA ELECTROLYTIC SATURATION
title_short CHARACTERIZATION OF NITROCARBURIZED COATING BY PLASMA ELECTROLYTIC SATURATION
title_full CHARACTERIZATION OF NITROCARBURIZED COATING BY PLASMA ELECTROLYTIC SATURATION
title_fullStr CHARACTERIZATION OF NITROCARBURIZED COATING BY PLASMA ELECTROLYTIC SATURATION
title_full_unstemmed CHARACTERIZATION OF NITROCARBURIZED COATING BY PLASMA ELECTROLYTIC SATURATION
title_sort characterization of nitrocarburized coating by plasma electrolytic saturation
publisher SciCell s.r.o.
series Acta Metallurgica Slovaca
issn 1335-1532
1338-1156
publishDate 2018-04-01
description Plasma electrolytic saturation (PES) is an atmospheric pressure plasma deposition which is used for fabrication of nanostructural coatings. This process starts with the appearance of some sparks on the surface and finally by the formation of plasma envelope around the sample, particles and free radicals bombard the surface and diffusion takes place into the work-piece. In this paper, the effect of frequency (500, 1000 and 10000 Hz) as pulse parameters on properties of nitrocarburized layers deposited on AISI 1045 steel were investigated. The analytical characteristics of the coating were assessed using X-ray diffraction (XRD) and scanning electron microscopy (SEM) techniques. The corrosion behavior of coatings was analyzed by potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) in 3.5% sodium chloride solution. Moreover, the microhardness and wear resistance of coated samples were also studied. The results indicated that applying nitrocarburized layer in all cases, improved the corrosion resistance, microhardness and also wear resistance of the substrate. The coatings treated at the frequency of 10000 Hz, had corrosion resistance about 2.4 and 1.4 times higher than those of the samples prepared at the frequency of 500 Hz and 1000 Hz. The surface hardness of 10000 Hz treated sample was about 1040 Vickers, which was more than those of the two other ones. An increase in frequency also caused wear resistance to increase.
topic PES
nitrocarburizing
frequency
corrosion
EIS
microhardness
url https://journals.scicell.org/index.php/AMS/article/view/249
work_keys_str_mv AT seyyedmohammadnoori characterizationofnitrocarburizedcoatingbyplasmaelectrolyticsaturation
AT changizdehghanian characterizationofnitrocarburizedcoatingbyplasmaelectrolyticsaturation
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