Numerical study of TRIP transformation in 35NCD16 steel-effects of plate orientation and some criteria

This study aims to analyze the effect of thermo mechanical coupling damage in the presence of a phase change (austenite/martensite) in 35NCD16 steel. The impact of increasing mechanical traction load, accompanied by a martensitic transformation on the scale of a single grain with boundary has been...

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Main Authors: Mounir Gaci, Fedaoui Kamel, Lazhar Baroura, Amar Talhi
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2021-12-01
Series:Fracture and Structural Integrity
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Online Access:https://www.fracturae.com/index.php/fis/article/view/3324
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author Mounir Gaci
Fedaoui Kamel
Lazhar Baroura
Amar Talhi
author_facet Mounir Gaci
Fedaoui Kamel
Lazhar Baroura
Amar Talhi
author_sort Mounir Gaci
collection DOAJ
description This study aims to analyze the effect of thermo mechanical coupling damage in the presence of a phase change (austenite/martensite) in 35NCD16 steel. The impact of increasing mechanical traction load, accompanied by a martensitic transformation on the scale of a single grain with boundary has been studied. The prediction transformation of induced plasticity (TRIP) was evaluated by taking into account the following parameters: twenty shear directions of the martensitic plates, two values of the shear deformation of the martensitic plates, energetic and thermodynamics criteria for getting in order the transformation of the martensitic plates, elastoplastic behavior of the two areas in the first case (martensitic plate and grain boundary) and elastic behavior for the grain boundary in the second case. The numerical calculation is carried out using the finite element method (FEM), implemented in the Zebulon calculation code. The developed approach is validated using the available experimental results reported in the literature. The numerical results showed that the estimation of TRIP given by the energetics criteria with the values of the shear deformation (γ0 = 0.16) are closer to the experiment results.
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institution Kabale University
issn 1971-8993
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publishDate 2021-12-01
publisher Gruppo Italiano Frattura
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series Fracture and Structural Integrity
spelling doaj-art-80bfd87e3118479da7e137b17ba452902025-01-03T01:03:15ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932021-12-011659Numerical study of TRIP transformation in 35NCD16 steel-effects of plate orientation and some criteriaMounir Gaci0Fedaoui Kamel1Lazhar Baroura2Amar Talhi3Laboratory of Mechanics, University Frères Mentouri Constantine 1, Constantine, AlgeriaUniversity Frères Mentouri Constantine 1, Constantine, AlgeriaUniversity Frères Mentouri Constantine 1, Constantine, AlgeriaMetallurgy and Materials Engineering, Foundry laboratory, Badji Mokhtar University - Annaba, Algeria This study aims to analyze the effect of thermo mechanical coupling damage in the presence of a phase change (austenite/martensite) in 35NCD16 steel. The impact of increasing mechanical traction load, accompanied by a martensitic transformation on the scale of a single grain with boundary has been studied. The prediction transformation of induced plasticity (TRIP) was evaluated by taking into account the following parameters: twenty shear directions of the martensitic plates, two values of the shear deformation of the martensitic plates, energetic and thermodynamics criteria for getting in order the transformation of the martensitic plates, elastoplastic behavior of the two areas in the first case (martensitic plate and grain boundary) and elastic behavior for the grain boundary in the second case. The numerical calculation is carried out using the finite element method (FEM), implemented in the Zebulon calculation code. The developed approach is validated using the available experimental results reported in the literature. The numerical results showed that the estimation of TRIP given by the energetics criteria with the values of the shear deformation (γ0 = 0.16) are closer to the experiment results. https://www.fracturae.com/index.php/fis/article/view/3324TRIP;elastoplastic behavior;grain boundary;martensitic transformation
spellingShingle Mounir Gaci
Fedaoui Kamel
Lazhar Baroura
Amar Talhi
Numerical study of TRIP transformation in 35NCD16 steel-effects of plate orientation and some criteria
Fracture and Structural Integrity
TRIP;
elastoplastic behavior;
grain boundary;
martensitic transformation
title Numerical study of TRIP transformation in 35NCD16 steel-effects of plate orientation and some criteria
title_full Numerical study of TRIP transformation in 35NCD16 steel-effects of plate orientation and some criteria
title_fullStr Numerical study of TRIP transformation in 35NCD16 steel-effects of plate orientation and some criteria
title_full_unstemmed Numerical study of TRIP transformation in 35NCD16 steel-effects of plate orientation and some criteria
title_short Numerical study of TRIP transformation in 35NCD16 steel-effects of plate orientation and some criteria
title_sort numerical study of trip transformation in 35ncd16 steel effects of plate orientation and some criteria
topic TRIP;
elastoplastic behavior;
grain boundary;
martensitic transformation
url https://www.fracturae.com/index.php/fis/article/view/3324
work_keys_str_mv AT mounirgaci numericalstudyoftriptransformationin35ncd16steeleffectsofplateorientationandsomecriteria
AT fedaouikamel numericalstudyoftriptransformationin35ncd16steeleffectsofplateorientationandsomecriteria
AT lazharbaroura numericalstudyoftriptransformationin35ncd16steeleffectsofplateorientationandsomecriteria
AT amartalhi numericalstudyoftriptransformationin35ncd16steeleffectsofplateorientationandsomecriteria