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Effect of Bainite to Ferrite Yield Strength Ratio on the Deformability of Mesostructures for Ferrite/Bainite Dual-Phase Steels

The strength and plasticity balance of F/B dual-phase X80 pipeline steels strongly depends on deformation compatibility between the soft phase of ferrite and the hard phase of bainite; thus, the tensile strength of ferrite and bainite, as non-negligible factors affecting the deformation compatibilit...

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Autores principales: Qiao, Gui-Ying, Zhao, Zhong-Tao, Shi, Xian-Bo, Shan, Yi-Yin, Gu, Yu, Xiao, Fu-Ren
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8465738/
https://www.ncbi.nlm.nih.gov/pubmed/34576577
http://dx.doi.org/10.3390/ma14185352
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author Qiao, Gui-Ying
Zhao, Zhong-Tao
Shi, Xian-Bo
Shan, Yi-Yin
Gu, Yu
Xiao, Fu-Ren
author_facet Qiao, Gui-Ying
Zhao, Zhong-Tao
Shi, Xian-Bo
Shan, Yi-Yin
Gu, Yu
Xiao, Fu-Ren
author_sort Qiao, Gui-Ying
collection PubMed
description The strength and plasticity balance of F/B dual-phase X80 pipeline steels strongly depends on deformation compatibility between the soft phase of ferrite and the hard phase of bainite; thus, the tensile strength of ferrite and bainite, as non-negligible factors affecting the deformation compatibility, should be considered first. In this purely theoretical paper, an abstract representative volume elements (RVE) model was developed, based on the mesostructure of an F/B dual-phase X80 pipeline steel. The effect of the yield strength difference between bainite and ferrite on tensile properties and the strain hardening behaviors of the mesostructure was studied. The results show that deformation first occurs in ferrite, and strain and stress localize in ferrite prior to bainite. In the modified Crussard-Jaoul (C-J) analysis, as the yield strength ratio of bainite to ferrite ([Formula: see text]) increases, the transition strain associated with the deformation transformation from ferrite soft phase deformation to uniform deformation of ferrite and bainite increases. Meanwhile, as the uncoordinated deformation of ferrite and bainite is enhanced, the strain localization factor (SLF) increases, especially the local strain concentration. Consequently, the yield, tensile strength, and yield ratio (yield strength/tensile strength) increase with the increase in [Formula: see text]. Inversely, the strain hardening exponent and uniform elongation decrease.
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spelling pubmed-84657382021-09-27 Effect of Bainite to Ferrite Yield Strength Ratio on the Deformability of Mesostructures for Ferrite/Bainite Dual-Phase Steels Qiao, Gui-Ying Zhao, Zhong-Tao Shi, Xian-Bo Shan, Yi-Yin Gu, Yu Xiao, Fu-Ren Materials (Basel) Article The strength and plasticity balance of F/B dual-phase X80 pipeline steels strongly depends on deformation compatibility between the soft phase of ferrite and the hard phase of bainite; thus, the tensile strength of ferrite and bainite, as non-negligible factors affecting the deformation compatibility, should be considered first. In this purely theoretical paper, an abstract representative volume elements (RVE) model was developed, based on the mesostructure of an F/B dual-phase X80 pipeline steel. The effect of the yield strength difference between bainite and ferrite on tensile properties and the strain hardening behaviors of the mesostructure was studied. The results show that deformation first occurs in ferrite, and strain and stress localize in ferrite prior to bainite. In the modified Crussard-Jaoul (C-J) analysis, as the yield strength ratio of bainite to ferrite ([Formula: see text]) increases, the transition strain associated with the deformation transformation from ferrite soft phase deformation to uniform deformation of ferrite and bainite increases. Meanwhile, as the uncoordinated deformation of ferrite and bainite is enhanced, the strain localization factor (SLF) increases, especially the local strain concentration. Consequently, the yield, tensile strength, and yield ratio (yield strength/tensile strength) increase with the increase in [Formula: see text]. Inversely, the strain hardening exponent and uniform elongation decrease. MDPI 2021-09-16 /pmc/articles/PMC8465738/ /pubmed/34576577 http://dx.doi.org/10.3390/ma14185352 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Qiao, Gui-Ying
Zhao, Zhong-Tao
Shi, Xian-Bo
Shan, Yi-Yin
Gu, Yu
Xiao, Fu-Ren
Effect of Bainite to Ferrite Yield Strength Ratio on the Deformability of Mesostructures for Ferrite/Bainite Dual-Phase Steels
title Effect of Bainite to Ferrite Yield Strength Ratio on the Deformability of Mesostructures for Ferrite/Bainite Dual-Phase Steels
title_full Effect of Bainite to Ferrite Yield Strength Ratio on the Deformability of Mesostructures for Ferrite/Bainite Dual-Phase Steels
title_fullStr Effect of Bainite to Ferrite Yield Strength Ratio on the Deformability of Mesostructures for Ferrite/Bainite Dual-Phase Steels
title_full_unstemmed Effect of Bainite to Ferrite Yield Strength Ratio on the Deformability of Mesostructures for Ferrite/Bainite Dual-Phase Steels
title_short Effect of Bainite to Ferrite Yield Strength Ratio on the Deformability of Mesostructures for Ferrite/Bainite Dual-Phase Steels
title_sort effect of bainite to ferrite yield strength ratio on the deformability of mesostructures for ferrite/bainite dual-phase steels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8465738/
https://www.ncbi.nlm.nih.gov/pubmed/34576577
http://dx.doi.org/10.3390/ma14185352
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