Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds

There is an increasing use of predictive tools in modeling microstructural features of welds towards eliminating weld defects and optimizing mechanical properties. Significant attraction in these tools is that they forecast weld character from a variety of process parameters and thus ensure the prod...

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Main Authors: Amuda, Muhammed Olawale Hakeem, Mridha, Shahjahan
Format: Proceeding Paper
Language:English
Published: 2010
Subjects:
Online Access:http://irep.iium.edu.my/9640/1/mohamuda_smridha__MAPT2010__CW015proceedings.pdf
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author Amuda, Muhammed Olawale Hakeem
Mridha, Shahjahan
author_facet Amuda, Muhammed Olawale Hakeem
Mridha, Shahjahan
author_sort Amuda, Muhammed Olawale Hakeem
collection IIUM
description There is an increasing use of predictive tools in modeling microstructural features of welds towards eliminating weld defects and optimizing mechanical properties. Significant attraction in these tools is that they forecast weld character from a variety of process parameters and thus ensure the production of tailored weld microstructure with improved mechanical properties. In this paper, a further attempt at enhanced prediction of microstructural features of ferritic stainless steel weld is proposed. The model involves a composite scheme of finite element analysis and artificial intelligence modules. Current predictive schemes are based on exclusive two-step algorithm utilizing decomposition kinetics. The proposed model is an integrative algorithm that speeds up the prediction process with better flexibility and eliminates the needs for reaction kinetics.
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spelling oai:generic.eprints.org:96402011-12-12T14:11:59Z http://irep.iium.edu.my/9640/ Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds Amuda, Muhammed Olawale Hakeem Mridha, Shahjahan TN600 Metallurgy There is an increasing use of predictive tools in modeling microstructural features of welds towards eliminating weld defects and optimizing mechanical properties. Significant attraction in these tools is that they forecast weld character from a variety of process parameters and thus ensure the production of tailored weld microstructure with improved mechanical properties. In this paper, a further attempt at enhanced prediction of microstructural features of ferritic stainless steel weld is proposed. The model involves a composite scheme of finite element analysis and artificial intelligence modules. Current predictive schemes are based on exclusive two-step algorithm utilizing decomposition kinetics. The proposed model is an integrative algorithm that speeds up the prediction process with better flexibility and eliminates the needs for reaction kinetics. 2010-01-05 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/9640/1/mohamuda_smridha__MAPT2010__CW015proceedings.pdf Amuda, Muhammed Olawale Hakeem and Mridha, Shahjahan (2010) Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds. In: International Conference on Materials Processing Technology (MAPT 2010), 5-6 January 2010, Bangkok, Thailand.
spellingShingle TN600 Metallurgy
Amuda, Muhammed Olawale Hakeem
Mridha, Shahjahan
Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds
title Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds
title_full Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds
title_fullStr Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds
title_full_unstemmed Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds
title_short Hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds
title_sort hybrid scheme for the prediction of microstructural features of ferritic stainless steel welds
topic TN600 Metallurgy
url http://irep.iium.edu.my/9640/1/mohamuda_smridha__MAPT2010__CW015proceedings.pdf
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AT mridhashahjahan hybridschemeforthepredictionofmicrostructuralfeaturesofferriticstainlesssteelwelds