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Effects of V-N Microalloying on Low-Cycle Fatigue Property in the Welded Joints of Constructional Steel

Low-cycle fatigue testing was carried out for the welded joints of constructional steels containing 0% V + 0.0021% N and 0.10% V + 0.0078% N, and the effects of V-N microalloying on the low-cycle fatigue property of the welded joints were investigated. The results showed that when the total strain a...

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Autores principales: Cui, Kaiyu, Yang, Haifeng, Li, Zhengrong, Wang, Guodong, Zhao, Hongyun, Li, Yuxuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10488504/
https://www.ncbi.nlm.nih.gov/pubmed/37687561
http://dx.doi.org/10.3390/ma16175860
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author Cui, Kaiyu
Yang, Haifeng
Li, Zhengrong
Wang, Guodong
Zhao, Hongyun
Li, Yuxuan
author_facet Cui, Kaiyu
Yang, Haifeng
Li, Zhengrong
Wang, Guodong
Zhao, Hongyun
Li, Yuxuan
author_sort Cui, Kaiyu
collection PubMed
description Low-cycle fatigue testing was carried out for the welded joints of constructional steels containing 0% V + 0.0021% N and 0.10% V + 0.0078% N, and the effects of V-N microalloying on the low-cycle fatigue property of the welded joints were investigated. The results showed that when the total strain amplitudes were 1.2%, 1.4% and 1.6%, the mean low-cycle fatigue lives of the welded joints of steel containing 0.10% V + 0.0078% N were 5050, 2372 and 1535 cycles, respectively, which were significantly higher than those of the welded joints of steel containing 0% V + 0.0021% N; however, when the total strain amplitudes increased to 1.8% and 2.0%, the mean low-cycle fatigue lives of the welded joints of steel containing 0.10% V + 0.0078% N were 575 and 367 cycles, respectively, which were gradually lower than those of the welded joints of steel containing 0% V + 0.0021% N. The reasons causing the difference of low-cycle fatigue life were explained by the dislocation structure and precipitates in the welding heat-affected zone, plastic strain energy density of the welded joints, and fatigue fracture morphology. When the low-cycle fatigue life is between 100 and 200 cycles, the cyclic toughness of the welded joint of steel containing 0.10% V + 0.0078% N is between 57.48 and 78.22 J/cm(3), which is higher than that of the welded joint of steel containing 0% V + 0.0021% N, indicating that the welded joint of steel containing 0.10% V + 0.0078% N is able to absorb more energy in a seismic condition, therefore possessing better seismic resistance.
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spelling pubmed-104885042023-09-09 Effects of V-N Microalloying on Low-Cycle Fatigue Property in the Welded Joints of Constructional Steel Cui, Kaiyu Yang, Haifeng Li, Zhengrong Wang, Guodong Zhao, Hongyun Li, Yuxuan Materials (Basel) Article Low-cycle fatigue testing was carried out for the welded joints of constructional steels containing 0% V + 0.0021% N and 0.10% V + 0.0078% N, and the effects of V-N microalloying on the low-cycle fatigue property of the welded joints were investigated. The results showed that when the total strain amplitudes were 1.2%, 1.4% and 1.6%, the mean low-cycle fatigue lives of the welded joints of steel containing 0.10% V + 0.0078% N were 5050, 2372 and 1535 cycles, respectively, which were significantly higher than those of the welded joints of steel containing 0% V + 0.0021% N; however, when the total strain amplitudes increased to 1.8% and 2.0%, the mean low-cycle fatigue lives of the welded joints of steel containing 0.10% V + 0.0078% N were 575 and 367 cycles, respectively, which were gradually lower than those of the welded joints of steel containing 0% V + 0.0021% N. The reasons causing the difference of low-cycle fatigue life were explained by the dislocation structure and precipitates in the welding heat-affected zone, plastic strain energy density of the welded joints, and fatigue fracture morphology. When the low-cycle fatigue life is between 100 and 200 cycles, the cyclic toughness of the welded joint of steel containing 0.10% V + 0.0078% N is between 57.48 and 78.22 J/cm(3), which is higher than that of the welded joint of steel containing 0% V + 0.0021% N, indicating that the welded joint of steel containing 0.10% V + 0.0078% N is able to absorb more energy in a seismic condition, therefore possessing better seismic resistance. MDPI 2023-08-27 /pmc/articles/PMC10488504/ /pubmed/37687561 http://dx.doi.org/10.3390/ma16175860 Text en © 2023 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
Cui, Kaiyu
Yang, Haifeng
Li, Zhengrong
Wang, Guodong
Zhao, Hongyun
Li, Yuxuan
Effects of V-N Microalloying on Low-Cycle Fatigue Property in the Welded Joints of Constructional Steel
title Effects of V-N Microalloying on Low-Cycle Fatigue Property in the Welded Joints of Constructional Steel
title_full Effects of V-N Microalloying on Low-Cycle Fatigue Property in the Welded Joints of Constructional Steel
title_fullStr Effects of V-N Microalloying on Low-Cycle Fatigue Property in the Welded Joints of Constructional Steel
title_full_unstemmed Effects of V-N Microalloying on Low-Cycle Fatigue Property in the Welded Joints of Constructional Steel
title_short Effects of V-N Microalloying on Low-Cycle Fatigue Property in the Welded Joints of Constructional Steel
title_sort effects of v-n microalloying on low-cycle fatigue property in the welded joints of constructional steel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10488504/
https://www.ncbi.nlm.nih.gov/pubmed/37687561
http://dx.doi.org/10.3390/ma16175860
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