Microvoids Evolution in S235JR Steel Subjected to Multi-Axial Stress State

The article presents the results of the experimental and numerical analysis of microvoids evolution in elements made of S235JR steel under multi-axial stress state. The numerical sim- ulations were based on the modified Gurson-Tvergaard-Needleman (GTN) material model, taking into account the impact...

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Main Authors: Paweł Grzegorz KOSSAKOWSKI, Wiesław TRAMPCZYNSKI
Format: Article
Language:English
Published: Institute of Fundamental Technological Research 2014-08-01
Series:Engineering Transactions
Subjects:
Online Access:https://et.ippt.pan.pl/index.php/et/article/view/101
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author Paweł Grzegorz KOSSAKOWSKI
Wiesław TRAMPCZYNSKI
author_facet Paweł Grzegorz KOSSAKOWSKI
Wiesław TRAMPCZYNSKI
author_sort Paweł Grzegorz KOSSAKOWSKI
collection DOAJ
description The article presents the results of the experimental and numerical analysis of microvoids evolution in elements made of S235JR steel under multi-axial stress state. The numerical sim- ulations were based on the modified Gurson-Tvergaard-Needleman (GTN) material model, taking into account the impact of microstructural defects on the material strength. Two ap- proaches were used, assuming a global and local damage of the structure of S235JR steel. In both cases, the evolution of microdamage (voids) and their impact on the strength and failure of the material were analysed. The results of numerical simulations were similar to the results obtained during microstructural examinations.
format Article
id doaj-art-e91af59ac40649bea64271d73e772a65
institution Kabale University
issn 0867-888X
2450-8071
language English
publishDate 2014-08-01
publisher Institute of Fundamental Technological Research
record_format Article
series Engineering Transactions
spelling doaj-art-e91af59ac40649bea64271d73e772a652025-08-20T03:49:50ZengInstitute of Fundamental Technological ResearchEngineering Transactions0867-888X2450-80712014-08-0160410.24423/engtrans.101.2012Microvoids Evolution in S235JR Steel Subjected to Multi-Axial Stress StatePaweł Grzegorz KOSSAKOWSKI0Wiesław TRAMPCZYNSKI1Kielce University of Technology Faculty of Civil Engineering and Architecture Chair of Strength of Materials and Concrete Structures, KielceKielce University of Technology Faculty of Civil Engineering and Architecture Chair of Strength of Materials and Concrete Structures, KielceThe article presents the results of the experimental and numerical analysis of microvoids evolution in elements made of S235JR steel under multi-axial stress state. The numerical sim- ulations were based on the modified Gurson-Tvergaard-Needleman (GTN) material model, taking into account the impact of microstructural defects on the material strength. Two ap- proaches were used, assuming a global and local damage of the structure of S235JR steel. In both cases, the evolution of microdamage (voids) and their impact on the strength and failure of the material were analysed. The results of numerical simulations were similar to the results obtained during microstructural examinations.https://et.ippt.pan.pl/index.php/et/article/view/101GursonGurson-Tvergaard-Needleman (GTN) material modelmulti-axial stress statesS235JR steelmicrovoidsnumerical simulations
spellingShingle Paweł Grzegorz KOSSAKOWSKI
Wiesław TRAMPCZYNSKI
Microvoids Evolution in S235JR Steel Subjected to Multi-Axial Stress State
Engineering Transactions
Gurson
Gurson-Tvergaard-Needleman (GTN) material model
multi-axial stress states
S235JR steel
microvoids
numerical simulations
title Microvoids Evolution in S235JR Steel Subjected to Multi-Axial Stress State
title_full Microvoids Evolution in S235JR Steel Subjected to Multi-Axial Stress State
title_fullStr Microvoids Evolution in S235JR Steel Subjected to Multi-Axial Stress State
title_full_unstemmed Microvoids Evolution in S235JR Steel Subjected to Multi-Axial Stress State
title_short Microvoids Evolution in S235JR Steel Subjected to Multi-Axial Stress State
title_sort microvoids evolution in s235jr steel subjected to multi axial stress state
topic Gurson
Gurson-Tvergaard-Needleman (GTN) material model
multi-axial stress states
S235JR steel
microvoids
numerical simulations
url https://et.ippt.pan.pl/index.php/et/article/view/101
work_keys_str_mv AT pawełgrzegorzkossakowski microvoidsevolutionins235jrsteelsubjectedtomultiaxialstressstate
AT wiesławtrampczynski microvoidsevolutionins235jrsteelsubjectedtomultiaxialstressstate