Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment

In this study an attempt has been made to produce titanium-aluminium dispersed hard nitride layer on mild steel surfaces by preplacement of 50 % Ti and 50 % Al powder mixture and then melting with TIG torch under nitrogen environment. Parameter such as heat input of the torch was varied between 540...

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Main Authors: Dyuti, Sarker, Mridha, Shahjahan, Shaha, Sugrib Kumar
Format: Article
Language:English
Published: Trans Tech Publications Inc. 2011
Subjects:
Online Access:http://irep.iium.edu.my/5465/
http://irep.iium.edu.my/5465/1/AMR.264-265.1433.pdf
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author Dyuti, Sarker
Mridha, Shahjahan
Shaha, Sugrib Kumar
author_facet Dyuti, Sarker
Mridha, Shahjahan
Shaha, Sugrib Kumar
author_sort Dyuti, Sarker
building IIUM Repository
collection Online Access
description In this study an attempt has been made to produce titanium-aluminium dispersed hard nitride layer on mild steel surfaces by preplacement of 50 % Ti and 50 % Al powder mixture and then melting with TIG torch under nitrogen environment. Parameter such as heat input of the torch was varied between 540, 608 and 675 J/mm and its effect on the resolidified melt pool was studied. Glazing under all energy inputs produced more than 1mm thick resolidified clad layer. The microstructural analysis revealed the clad layer with dispersion of dendrites of Ti-Al nitrides and Ti-Al intermetallic in ferrite matrix. The concentration of dendrites were found to be maximum near the surface and decreased at deeper depths.The maximum hardness of the modified surface layer was found to be 900 Hv compared to 180 Hv of the mild steel substrate.
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spelling iium-54652011-11-22T03:26:14Z http://irep.iium.edu.my/5465/ Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment Dyuti, Sarker Mridha, Shahjahan Shaha, Sugrib Kumar TN600 Metallurgy In this study an attempt has been made to produce titanium-aluminium dispersed hard nitride layer on mild steel surfaces by preplacement of 50 % Ti and 50 % Al powder mixture and then melting with TIG torch under nitrogen environment. Parameter such as heat input of the torch was varied between 540, 608 and 675 J/mm and its effect on the resolidified melt pool was studied. Glazing under all energy inputs produced more than 1mm thick resolidified clad layer. The microstructural analysis revealed the clad layer with dispersion of dendrites of Ti-Al nitrides and Ti-Al intermetallic in ferrite matrix. The concentration of dendrites were found to be maximum near the surface and decreased at deeper depths.The maximum hardness of the modified surface layer was found to be 900 Hv compared to 180 Hv of the mild steel substrate. Trans Tech Publications Inc. 2011 Article PeerReviewed application/pdf en http://irep.iium.edu.my/5465/1/AMR.264-265.1433.pdf Dyuti, Sarker and Mridha, Shahjahan and Shaha, Sugrib Kumar (2011) Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment. Advanced Materials Research, 264-26. pp. 1433-1438. ISSN 1662-8985 http://dx.doi.org/10.4028/www.scientific.net/AMR.264-265.1433 doi:10.4028/www.scientific.net/AMR.264-265.1433
spellingShingle TN600 Metallurgy
Dyuti, Sarker
Mridha, Shahjahan
Shaha, Sugrib Kumar
Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment
title Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment
title_full Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment
title_fullStr Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment
title_full_unstemmed Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment
title_short Formation of Ti-Al-N dispersed layer on steel surface by TIG melting in a reactive environment
title_sort formation of ti-al-n dispersed layer on steel surface by tig melting in a reactive environment
topic TN600 Metallurgy
url http://irep.iium.edu.my/5465/
http://irep.iium.edu.my/5465/
http://irep.iium.edu.my/5465/
http://irep.iium.edu.my/5465/1/AMR.264-265.1433.pdf