The corrosion properties of rf inductively coupled plasma nitrided stainless substrates

This paper presents the corrosion properties of rf inductively coupled plasma nitrided stainless steel substrates. A home-made low-frequency rf inductively coupled plasma source was used to perform the nitriding process. The processing parameters were carefully selected after considering the repeata...

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Main Author: Chakrabarty, C.K.
Format: Conference Paper
Language:en_US
Published: 2017
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Institution: Universiti Tenaga Nasional
Language: en_US
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spelling my.uniten.dspace-57542017-12-13T07:55:49Z The corrosion properties of rf inductively coupled plasma nitrided stainless substrates Chakrabarty, C.K. This paper presents the corrosion properties of rf inductively coupled plasma nitrided stainless steel substrates. A home-made low-frequency rf inductively coupled plasma source was used to perform the nitriding process. The processing parameters were carefully selected after considering the repeatability of the device. A nitrogen plasma operating in the H-mode was used for the nitriding process. Proper substrate biase was also applied during nitriding. Several stainless steel substrates were nitraded at different processing times. Investigations such as microhardness, XRD and EDAX tests were performed on the nitrided samples prior to corrosion testing. For corrosion testing, the electrochemical polarization method was used. In this method, the corrosion resistance properties were successfully characterized. Several results are presented in this paper to reveal the correlation of the nitriding times, the phases formed and surface hardness to the corrosion properties of the samples. 2017-12-08T06:45:52Z 2017-12-08T06:45:52Z 2002 Conference Paper https://www.scopus.com/record/display.uri?eid=2-s2.0-0036373526&origin=resultslist&sort=plf-f&src=s&sid=1d65135c87b2049c63a8edcc8e1e7df7&sot en_US IEEE International Conference on Plasma Science 2002, Page 261
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language en_US
description This paper presents the corrosion properties of rf inductively coupled plasma nitrided stainless steel substrates. A home-made low-frequency rf inductively coupled plasma source was used to perform the nitriding process. The processing parameters were carefully selected after considering the repeatability of the device. A nitrogen plasma operating in the H-mode was used for the nitriding process. Proper substrate biase was also applied during nitriding. Several stainless steel substrates were nitraded at different processing times. Investigations such as microhardness, XRD and EDAX tests were performed on the nitrided samples prior to corrosion testing. For corrosion testing, the electrochemical polarization method was used. In this method, the corrosion resistance properties were successfully characterized. Several results are presented in this paper to reveal the correlation of the nitriding times, the phases formed and surface hardness to the corrosion properties of the samples.
format Conference Paper
author Chakrabarty, C.K.
spellingShingle Chakrabarty, C.K.
The corrosion properties of rf inductively coupled plasma nitrided stainless substrates
author_facet Chakrabarty, C.K.
author_sort Chakrabarty, C.K.
title The corrosion properties of rf inductively coupled plasma nitrided stainless substrates
title_short The corrosion properties of rf inductively coupled plasma nitrided stainless substrates
title_full The corrosion properties of rf inductively coupled plasma nitrided stainless substrates
title_fullStr The corrosion properties of rf inductively coupled plasma nitrided stainless substrates
title_full_unstemmed The corrosion properties of rf inductively coupled plasma nitrided stainless substrates
title_sort corrosion properties of rf inductively coupled plasma nitrided stainless substrates
publishDate 2017
_version_ 1644493767374274560