High-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels

A strategy based on representative volume element (RVE) was proposed to investigate the mechanical behavior of cold-drawn pearlitic steels at multiscale. Firstly, a finite element model based on macroscale was used to simulate the cold drawing. The partial mesh of the model was refined to obtain a R...

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Autores principales: Xutao Huang, Jianjun Wang, Sixin Zhao, Zan Yao, Chunming Liu
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Lenguaje:EN
Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/72eb12d2b6674b8690df7db48c00afc9
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spelling oai:doaj.org-article:72eb12d2b6674b8690df7db48c00afc92021-11-28T04:32:33ZHigh-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels2238-785410.1016/j.jmrt.2021.10.087https://doaj.org/article/72eb12d2b6674b8690df7db48c00afc92021-11-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2238785421012242https://doaj.org/toc/2238-7854A strategy based on representative volume element (RVE) was proposed to investigate the mechanical behavior of cold-drawn pearlitic steels at multiscale. Firstly, a finite element model based on macroscale was used to simulate the cold drawing. The partial mesh of the model was refined to obtain a RVE-scale element, and the elastic-plastic strain of this element were extracted and mapped to the RVE model. For further research, a high-resolution RVE model based on the crystal plasticity finite element method (CPFEM) was established to investigate the mechanical behavior of the pearlite. In addition, a new method of hierarchical partition was used for geometric modeling. Crucially, the simulated pole figures were in high agreement with the experimental results, both prominently showing an α-fiber texture. The final results indicated that the plasticity and strength of the pearlitic steels were determined by the coordinated deformation between pearlite nodules and the interaction between ferrite and cementite.Xutao HuangJianjun WangSixin ZhaoZan YaoChunming LiuElsevierarticlePearliteCrystal plasticityHigh-resolution multiscale modelingMechanical behaviorMining engineering. MetallurgyTN1-997ENJournal of Materials Research and Technology, Vol 15, Iss , Pp 5920-5935 (2021)
institution DOAJ
collection DOAJ
language EN
topic Pearlite
Crystal plasticity
High-resolution multiscale modeling
Mechanical behavior
Mining engineering. Metallurgy
TN1-997
spellingShingle Pearlite
Crystal plasticity
High-resolution multiscale modeling
Mechanical behavior
Mining engineering. Metallurgy
TN1-997
Xutao Huang
Jianjun Wang
Sixin Zhao
Zan Yao
Chunming Liu
High-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels
description A strategy based on representative volume element (RVE) was proposed to investigate the mechanical behavior of cold-drawn pearlitic steels at multiscale. Firstly, a finite element model based on macroscale was used to simulate the cold drawing. The partial mesh of the model was refined to obtain a RVE-scale element, and the elastic-plastic strain of this element were extracted and mapped to the RVE model. For further research, a high-resolution RVE model based on the crystal plasticity finite element method (CPFEM) was established to investigate the mechanical behavior of the pearlite. In addition, a new method of hierarchical partition was used for geometric modeling. Crucially, the simulated pole figures were in high agreement with the experimental results, both prominently showing an α-fiber texture. The final results indicated that the plasticity and strength of the pearlitic steels were determined by the coordinated deformation between pearlite nodules and the interaction between ferrite and cementite.
format article
author Xutao Huang
Jianjun Wang
Sixin Zhao
Zan Yao
Chunming Liu
author_facet Xutao Huang
Jianjun Wang
Sixin Zhao
Zan Yao
Chunming Liu
author_sort Xutao Huang
title High-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels
title_short High-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels
title_full High-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels
title_fullStr High-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels
title_full_unstemmed High-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels
title_sort high-resolution multiscale modeling of mechanical behavior of cold-drawn pearlitic steels
publisher Elsevier
publishDate 2021
url https://doaj.org/article/72eb12d2b6674b8690df7db48c00afc9
work_keys_str_mv AT xutaohuang highresolutionmultiscalemodelingofmechanicalbehaviorofcolddrawnpearliticsteels
AT jianjunwang highresolutionmultiscalemodelingofmechanicalbehaviorofcolddrawnpearliticsteels
AT sixinzhao highresolutionmultiscalemodelingofmechanicalbehaviorofcolddrawnpearliticsteels
AT zanyao highresolutionmultiscalemodelingofmechanicalbehaviorofcolddrawnpearliticsteels
AT chunmingliu highresolutionmultiscalemodelingofmechanicalbehaviorofcolddrawnpearliticsteels
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