Evaluation of sustainable micro-alloyed HSLA steel for pipeline application

Sustainable micro-alloyed materials play a major role in advanced technology for the development of optimum material integrity properties in various structures. During the past decades, efforts have focused on high strength low alloy steels (HSLA) to expand its application to various fields such as...

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Main Authors: Musa, M. H. A., Maleque, Md. Abdul, Hossain, M.S., Ravishankar, S.R., Al-Shiblib, A., Coyle, E.D.
Format: Proceeding Paper
Language:English
English
English
English
Published: 2020
Subjects:
Online Access:http://irep.iium.edu.my/79579/
http://irep.iium.edu.my/79579/1/Brochure%20Acceptance%20letter%20Program%20book.pdf
http://irep.iium.edu.my/79579/2/Abstract%20IGRC%20final.pdf
http://irep.iium.edu.my/79579/3/Full%20paper%20final%20March%2020.pdf
http://irep.iium.edu.my/79579/4/IGRC2020%20Poster%202020.pdf
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author Musa, M. H. A.
Maleque, Md. Abdul
Hossain, M.S.
Ravishankar, S.R.
Al-Shiblib, A.
Coyle, E.D.
author_facet Musa, M. H. A.
Maleque, Md. Abdul
Hossain, M.S.
Ravishankar, S.R.
Al-Shiblib, A.
Coyle, E.D.
author_sort Musa, M. H. A.
building IIUM Repository
collection Online Access
description Sustainable micro-alloyed materials play a major role in advanced technology for the development of optimum material integrity properties in various structures. During the past decades, efforts have focused on high strength low alloy steels (HSLA) to expand its application to various fields such as shipbuilding, oil and gas pipelines, building construction due to its high strength to weight ratio, good weldability. However, there are major challenges associated with the welding zone and welding processes which have a significant effect on the integrity of welded structures and their performance in service especially in the oil and gas pipeline. Therefore, the aim of this research is to evaluate the modified heat affected zone (HAZ) of HSLA steel using TIG torch melting technique at variable energy input and addition of micro alloying elements (Ti and V) for optimum material integrity properties. The micro-alloying addition showed a significant influence on the mechanical properties of HAZ compared to the response value without micro-alloying addition. With this positive outcome on the mechanical properties of the HAZ, it can be recommended to use this technique and can develop a new sustainable advanced HSLA steel material for oil and gas industry sector.
first_indexed 2025-11-14T17:46:29Z
format Proceeding Paper
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institution International Islamic University Malaysia
institution_category Local University
language English
English
English
English
last_indexed 2025-11-14T17:46:29Z
publishDate 2020
recordtype eprints
repository_type Digital Repository
spelling iium-795792020-04-20T01:47:01Z http://irep.iium.edu.my/79579/ Evaluation of sustainable micro-alloyed HSLA steel for pipeline application Musa, M. H. A. Maleque, Md. Abdul Hossain, M.S. Ravishankar, S.R. Al-Shiblib, A. Coyle, E.D. T11.95 Industrial directories T173.2 Technological change T175 Industrial research. Research and development TN600 Metallurgy Sustainable micro-alloyed materials play a major role in advanced technology for the development of optimum material integrity properties in various structures. During the past decades, efforts have focused on high strength low alloy steels (HSLA) to expand its application to various fields such as shipbuilding, oil and gas pipelines, building construction due to its high strength to weight ratio, good weldability. However, there are major challenges associated with the welding zone and welding processes which have a significant effect on the integrity of welded structures and their performance in service especially in the oil and gas pipeline. Therefore, the aim of this research is to evaluate the modified heat affected zone (HAZ) of HSLA steel using TIG torch melting technique at variable energy input and addition of micro alloying elements (Ti and V) for optimum material integrity properties. The micro-alloying addition showed a significant influence on the mechanical properties of HAZ compared to the response value without micro-alloying addition. With this positive outcome on the mechanical properties of the HAZ, it can be recommended to use this technique and can develop a new sustainable advanced HSLA steel material for oil and gas industry sector. 2020 Proceeding Paper NonPeerReviewed application/pdf en http://irep.iium.edu.my/79579/1/Brochure%20Acceptance%20letter%20Program%20book.pdf application/pdf en http://irep.iium.edu.my/79579/2/Abstract%20IGRC%20final.pdf application/pdf en http://irep.iium.edu.my/79579/3/Full%20paper%20final%20March%2020.pdf application/pdf en http://irep.iium.edu.my/79579/4/IGRC2020%20Poster%202020.pdf Musa, M. H. A. and Maleque, Md. Abdul and Hossain, M.S. and Ravishankar, S.R. and Al-Shiblib, A. and Coyle, E.D. (2020) Evaluation of sustainable micro-alloyed HSLA steel for pipeline application. In: International Gas Research Conference 2020 (IGRC 2020), 24-26 Feb 2020, Muscat, Oman. (Unpublished)
spellingShingle T11.95 Industrial directories
T173.2 Technological change
T175 Industrial research. Research and development
TN600 Metallurgy
Musa, M. H. A.
Maleque, Md. Abdul
Hossain, M.S.
Ravishankar, S.R.
Al-Shiblib, A.
Coyle, E.D.
Evaluation of sustainable micro-alloyed HSLA steel for pipeline application
title Evaluation of sustainable micro-alloyed HSLA steel for pipeline application
title_full Evaluation of sustainable micro-alloyed HSLA steel for pipeline application
title_fullStr Evaluation of sustainable micro-alloyed HSLA steel for pipeline application
title_full_unstemmed Evaluation of sustainable micro-alloyed HSLA steel for pipeline application
title_short Evaluation of sustainable micro-alloyed HSLA steel for pipeline application
title_sort evaluation of sustainable micro-alloyed hsla steel for pipeline application
topic T11.95 Industrial directories
T173.2 Technological change
T175 Industrial research. Research and development
TN600 Metallurgy
url http://irep.iium.edu.my/79579/
http://irep.iium.edu.my/79579/1/Brochure%20Acceptance%20letter%20Program%20book.pdf
http://irep.iium.edu.my/79579/2/Abstract%20IGRC%20final.pdf
http://irep.iium.edu.my/79579/3/Full%20paper%20final%20March%2020.pdf
http://irep.iium.edu.my/79579/4/IGRC2020%20Poster%202020.pdf