Loading…
Non-intrusive measurement of electron, vibrational, rotational temperatures and active species concentration in N^sub 2^-H^sub 2^ cathodic cage plasma
The cathodic cage plasma nitriding (CCPN) is an innovative surface engineering method, which overcomes the shortcomings associated with conventional plasma nitriding (CPN). In current study, optical emission spectroscopy (OES) and optical actinometry are used to diagnose the electron, vibrational an...
Saved in:
Published in: | Surface & coatings technology 2018-06, Vol.344, p.233 |
---|---|
Main Authors: | , , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Online Access: | Get full text |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
cited_by | |
---|---|
cites | |
container_end_page | |
container_issue | |
container_start_page | 233 |
container_title | Surface & coatings technology |
container_volume | 344 |
creator | Naeem, M Khan, Kamal Hussain Shahid, M Iqbal, Javed Shafiq, M Zaka-ul-Islam, M Zakaullah, M |
description | The cathodic cage plasma nitriding (CCPN) is an innovative surface engineering method, which overcomes the shortcomings associated with conventional plasma nitriding (CPN). In current study, optical emission spectroscopy (OES) and optical actinometry are used to diagnose the electron, vibrational and rotational temperature, relative active species density (N, N2+) and nitrogen dissociation fraction in hydrogen admixed nitrogen plasma (with 4% argon as actinometer) in CCPN reactor. The electron temperature is estimated using modified Boltzmann plot method, vibrational temperature using N2(C, v′) state distribution, while rotational temperature is estimated using Boltzmann plot method. To estimate the nitrogen dissociation fraction, actinometery as well as intensity ratio method is employed. The electron and vibrational temperature depicts an increasing trend, while rotational temperature decreases with hydrogen admixture. The relative density of [N] is found to be increasing up to 40% hydrogen admixture, however, relative density of [N2+] is decreasing. This study presents clear picture of hydrogen admixing on the surface characteristics: it depicts that with hydrogen admixture, in addition to oxide layer removal and increased ionization, the generation of active species is also influenced. It suggests that with regard to both N and N2+ density, 40% hydrogen is beneficial. |
format | article |
fullrecord | <record><control><sourceid>proquest</sourceid><recordid>TN_cdi_proquest_journals_2100878999</recordid><sourceformat>XML</sourceformat><sourcesystem>PC</sourcesystem><sourcerecordid>2100878999</sourcerecordid><originalsourceid>FETCH-proquest_journals_21008789993</originalsourceid><addsrcrecordid>eNqNjs1OwzAQhC0EEuHnHVbiWktOUuT4jEA99cS51dbdgqvEDt51H4XnxYg8AKf5tLMzmivVtIN1uu_X9lo1pnu2enC2u1V3zGdjTGvdulHf2xR1iJILhwvBRMgl00RRIJ2ARvKSU1zBJRwySkgRxxXkJAuD0DRTdWqIAeMR0MtvEc_kQz35FH0t-8tCiLDdcTlAt9ObBcCjfKZj8BU-COYRecIHdXPCkelx0Xv19Pb6_rLRc05fhVj251RyHcD7rjVmsINzrv_f1w8jcFrO</addsrcrecordid><sourcetype>Aggregation Database</sourcetype><iscdi>true</iscdi><recordtype>article</recordtype><pqid>2100878999</pqid></control><display><type>article</type><title>Non-intrusive measurement of electron, vibrational, rotational temperatures and active species concentration in N^sub 2^-H^sub 2^ cathodic cage plasma</title><source>ScienceDirect Journals</source><creator>Naeem, M ; Khan, Kamal Hussain ; Shahid, M ; Iqbal, Javed ; Shafiq, M ; Zaka-ul-Islam, M ; Zakaullah, M</creator><creatorcontrib>Naeem, M ; Khan, Kamal Hussain ; Shahid, M ; Iqbal, Javed ; Shafiq, M ; Zaka-ul-Islam, M ; Zakaullah, M</creatorcontrib><description>The cathodic cage plasma nitriding (CCPN) is an innovative surface engineering method, which overcomes the shortcomings associated with conventional plasma nitriding (CPN). In current study, optical emission spectroscopy (OES) and optical actinometry are used to diagnose the electron, vibrational and rotational temperature, relative active species density (N, N2+) and nitrogen dissociation fraction in hydrogen admixed nitrogen plasma (with 4% argon as actinometer) in CCPN reactor. The electron temperature is estimated using modified Boltzmann plot method, vibrational temperature using N2(C, v′) state distribution, while rotational temperature is estimated using Boltzmann plot method. To estimate the nitrogen dissociation fraction, actinometery as well as intensity ratio method is employed. The electron and vibrational temperature depicts an increasing trend, while rotational temperature decreases with hydrogen admixture. The relative density of [N] is found to be increasing up to 40% hydrogen admixture, however, relative density of [N2+] is decreasing. This study presents clear picture of hydrogen admixing on the surface characteristics: it depicts that with hydrogen admixture, in addition to oxide layer removal and increased ionization, the generation of active species is also influenced. It suggests that with regard to both N and N2+ density, 40% hydrogen is beneficial.</description><identifier>ISSN: 0257-8972</identifier><identifier>EISSN: 1879-3347</identifier><language>eng</language><publisher>Lausanne: Elsevier BV</publisher><subject>Actinometry ; Admixtures ; Cages ; Density ; Electron energy ; Electrons ; Emission analysis ; Hydrogen ; Ion nitriding ; Ionization ; Nitrogen ; Nitrogen plasma ; Optical emission spectroscopy ; Plasma ; Rotational states ; Surface properties</subject><ispartof>Surface & coatings technology, 2018-06, Vol.344, p.233</ispartof><rights>Copyright Elsevier BV Jun 25, 2018</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784</link.rule.ids></links><search><creatorcontrib>Naeem, M</creatorcontrib><creatorcontrib>Khan, Kamal Hussain</creatorcontrib><creatorcontrib>Shahid, M</creatorcontrib><creatorcontrib>Iqbal, Javed</creatorcontrib><creatorcontrib>Shafiq, M</creatorcontrib><creatorcontrib>Zaka-ul-Islam, M</creatorcontrib><creatorcontrib>Zakaullah, M</creatorcontrib><title>Non-intrusive measurement of electron, vibrational, rotational temperatures and active species concentration in N^sub 2^-H^sub 2^ cathodic cage plasma</title><title>Surface & coatings technology</title><description>The cathodic cage plasma nitriding (CCPN) is an innovative surface engineering method, which overcomes the shortcomings associated with conventional plasma nitriding (CPN). In current study, optical emission spectroscopy (OES) and optical actinometry are used to diagnose the electron, vibrational and rotational temperature, relative active species density (N, N2+) and nitrogen dissociation fraction in hydrogen admixed nitrogen plasma (with 4% argon as actinometer) in CCPN reactor. The electron temperature is estimated using modified Boltzmann plot method, vibrational temperature using N2(C, v′) state distribution, while rotational temperature is estimated using Boltzmann plot method. To estimate the nitrogen dissociation fraction, actinometery as well as intensity ratio method is employed. The electron and vibrational temperature depicts an increasing trend, while rotational temperature decreases with hydrogen admixture. The relative density of [N] is found to be increasing up to 40% hydrogen admixture, however, relative density of [N2+] is decreasing. This study presents clear picture of hydrogen admixing on the surface characteristics: it depicts that with hydrogen admixture, in addition to oxide layer removal and increased ionization, the generation of active species is also influenced. It suggests that with regard to both N and N2+ density, 40% hydrogen is beneficial.</description><subject>Actinometry</subject><subject>Admixtures</subject><subject>Cages</subject><subject>Density</subject><subject>Electron energy</subject><subject>Electrons</subject><subject>Emission analysis</subject><subject>Hydrogen</subject><subject>Ion nitriding</subject><subject>Ionization</subject><subject>Nitrogen</subject><subject>Nitrogen plasma</subject><subject>Optical emission spectroscopy</subject><subject>Plasma</subject><subject>Rotational states</subject><subject>Surface properties</subject><issn>0257-8972</issn><issn>1879-3347</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2018</creationdate><recordtype>article</recordtype><recordid>eNqNjs1OwzAQhC0EEuHnHVbiWktOUuT4jEA99cS51dbdgqvEDt51H4XnxYg8AKf5tLMzmivVtIN1uu_X9lo1pnu2enC2u1V3zGdjTGvdulHf2xR1iJILhwvBRMgl00RRIJ2ARvKSU1zBJRwySkgRxxXkJAuD0DRTdWqIAeMR0MtvEc_kQz35FH0t-8tCiLDdcTlAt9ObBcCjfKZj8BU-COYRecIHdXPCkelx0Xv19Pb6_rLRc05fhVj251RyHcD7rjVmsINzrv_f1w8jcFrO</recordid><startdate>20180625</startdate><enddate>20180625</enddate><creator>Naeem, M</creator><creator>Khan, Kamal Hussain</creator><creator>Shahid, M</creator><creator>Iqbal, Javed</creator><creator>Shafiq, M</creator><creator>Zaka-ul-Islam, M</creator><creator>Zakaullah, M</creator><general>Elsevier BV</general><scope>7QQ</scope><scope>7SR</scope><scope>8BQ</scope><scope>8FD</scope><scope>JG9</scope></search><sort><creationdate>20180625</creationdate><title>Non-intrusive measurement of electron, vibrational, rotational temperatures and active species concentration in N^sub 2^-H^sub 2^ cathodic cage plasma</title><author>Naeem, M ; Khan, Kamal Hussain ; Shahid, M ; Iqbal, Javed ; Shafiq, M ; Zaka-ul-Islam, M ; Zakaullah, M</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-proquest_journals_21008789993</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2018</creationdate><topic>Actinometry</topic><topic>Admixtures</topic><topic>Cages</topic><topic>Density</topic><topic>Electron energy</topic><topic>Electrons</topic><topic>Emission analysis</topic><topic>Hydrogen</topic><topic>Ion nitriding</topic><topic>Ionization</topic><topic>Nitrogen</topic><topic>Nitrogen plasma</topic><topic>Optical emission spectroscopy</topic><topic>Plasma</topic><topic>Rotational states</topic><topic>Surface properties</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Naeem, M</creatorcontrib><creatorcontrib>Khan, Kamal Hussain</creatorcontrib><creatorcontrib>Shahid, M</creatorcontrib><creatorcontrib>Iqbal, Javed</creatorcontrib><creatorcontrib>Shafiq, M</creatorcontrib><creatorcontrib>Zaka-ul-Islam, M</creatorcontrib><creatorcontrib>Zakaullah, M</creatorcontrib><collection>Ceramic Abstracts</collection><collection>Engineered Materials Abstracts</collection><collection>METADEX</collection><collection>Technology Research Database</collection><collection>Materials Research Database</collection><jtitle>Surface & coatings technology</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Naeem, M</au><au>Khan, Kamal Hussain</au><au>Shahid, M</au><au>Iqbal, Javed</au><au>Shafiq, M</au><au>Zaka-ul-Islam, M</au><au>Zakaullah, M</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Non-intrusive measurement of electron, vibrational, rotational temperatures and active species concentration in N^sub 2^-H^sub 2^ cathodic cage plasma</atitle><jtitle>Surface & coatings technology</jtitle><date>2018-06-25</date><risdate>2018</risdate><volume>344</volume><spage>233</spage><pages>233-</pages><issn>0257-8972</issn><eissn>1879-3347</eissn><abstract>The cathodic cage plasma nitriding (CCPN) is an innovative surface engineering method, which overcomes the shortcomings associated with conventional plasma nitriding (CPN). In current study, optical emission spectroscopy (OES) and optical actinometry are used to diagnose the electron, vibrational and rotational temperature, relative active species density (N, N2+) and nitrogen dissociation fraction in hydrogen admixed nitrogen plasma (with 4% argon as actinometer) in CCPN reactor. The electron temperature is estimated using modified Boltzmann plot method, vibrational temperature using N2(C, v′) state distribution, while rotational temperature is estimated using Boltzmann plot method. To estimate the nitrogen dissociation fraction, actinometery as well as intensity ratio method is employed. The electron and vibrational temperature depicts an increasing trend, while rotational temperature decreases with hydrogen admixture. The relative density of [N] is found to be increasing up to 40% hydrogen admixture, however, relative density of [N2+] is decreasing. This study presents clear picture of hydrogen admixing on the surface characteristics: it depicts that with hydrogen admixture, in addition to oxide layer removal and increased ionization, the generation of active species is also influenced. It suggests that with regard to both N and N2+ density, 40% hydrogen is beneficial.</abstract><cop>Lausanne</cop><pub>Elsevier BV</pub></addata></record> |
fulltext | fulltext |
identifier | ISSN: 0257-8972 |
ispartof | Surface & coatings technology, 2018-06, Vol.344, p.233 |
issn | 0257-8972 1879-3347 |
language | eng |
recordid | cdi_proquest_journals_2100878999 |
source | ScienceDirect Journals |
subjects | Actinometry Admixtures Cages Density Electron energy Electrons Emission analysis Hydrogen Ion nitriding Ionization Nitrogen Nitrogen plasma Optical emission spectroscopy Plasma Rotational states Surface properties |
title | Non-intrusive measurement of electron, vibrational, rotational temperatures and active species concentration in N^sub 2^-H^sub 2^ cathodic cage plasma |
url | http://sfxeu10.hosted.exlibrisgroup.com/loughborough?ctx_ver=Z39.88-2004&ctx_enc=info:ofi/enc:UTF-8&ctx_tim=2025-01-01T19%3A31%3A51IST&url_ver=Z39.88-2004&url_ctx_fmt=infofi/fmt:kev:mtx:ctx&rfr_id=info:sid/primo.exlibrisgroup.com:primo3-Article-proquest&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.genre=article&rft.atitle=Non-intrusive%20measurement%20of%20electron,%20vibrational,%20rotational%20temperatures%20and%20active%20species%20concentration%20in%20N%5Esub%202%5E-H%5Esub%202%5E%20cathodic%20cage%20plasma&rft.jtitle=Surface%20&%20coatings%20technology&rft.au=Naeem,%20M&rft.date=2018-06-25&rft.volume=344&rft.spage=233&rft.pages=233-&rft.issn=0257-8972&rft.eissn=1879-3347&rft_id=info:doi/&rft_dat=%3Cproquest%3E2100878999%3C/proquest%3E%3Cgrp_id%3Ecdi_FETCH-proquest_journals_21008789993%3C/grp_id%3E%3Coa%3E%3C/oa%3E%3Curl%3E%3C/url%3E&rft_id=info:oai/&rft_pqid=2100878999&rft_id=info:pmid/&rfr_iscdi=true |