Strengthening and toughening mechanism of weld metal of 690 MPa-grade high-strength steel
Two different types of weld metals with a yield strength of 690 MPa were prepared. The microstructure analysis and mechanical property tests were carried out, and the strengthening and toughening mechanism of the weld metals was revealed. The results show that the nickel equivalent (Nieq) of the tra...
| Published in: | Hanjie xuebao |
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| Main Authors: | , , , , , |
| Format: | Article |
| Language: | Chinese |
| Published: |
Editorial Office of Transactions of the China Welding Institution, Welding Journals Publishing House
2025-07-01
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| Subjects: | |
| Online Access: | https://doi.org/10.12073/j.hjxb.20240108001 |
| _version_ | 1848664396465700864 |
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| author | Tianyou KANG Lei SUN Xinghua WANG Yuxiang ZHANG Renfu WANG Youjing ZHANG |
| author_facet | Tianyou KANG Lei SUN Xinghua WANG Yuxiang ZHANG Renfu WANG Youjing ZHANG |
| author_sort | Tianyou KANG |
| collection | DOAJ |
| container_title | Hanjie xuebao |
| description | Two different types of weld metals with a yield strength of 690 MPa were prepared. The microstructure analysis and mechanical property tests were carried out, and the strengthening and toughening mechanism of the weld metals was revealed. The results show that the nickel equivalent (Nieq) of the traditional 690 MPa-grade weld metal is small, and the segregation of alloy elements in the inter-dendritic region can be negligible. The weld metal forms a relatively uniform structure dominated by coarse grain bainite (GB). Because the coarse GB has little resistance to crack propagation, its low temperature toughness is poor. A new type of 690 MPa-grade weld metal is prepared by increasing Nieq. The Nieq is relatively large, and due to the significant segregation of Mn and Ni in the inter-dendritic region, the stability of undercooled austenite in the inter-dendritic region is greater than that in the dendrite region. Therefore, a complex phase structure with acicular ferrite (AF) in the dendrite and lath martensite (LM) in the inter-dendritic region is developed. In this structure, AF is the main toughening phase, and LM is the main strengthening phase. The yield strength of the weld metal is 738 MPa, and the impact absorption energy at −50 ℃ is 122 J, which achieves a good matching between strength and toughness. |
| format | Article |
| id | doaj-art-f71fea4dbe0d4eefabcd6cdfd2b5907b |
| institution | Directory of Open Access Journals |
| issn | 0253-360X |
| language | zho |
| publishDate | 2025-07-01 |
| publisher | Editorial Office of Transactions of the China Welding Institution, Welding Journals Publishing House |
| record_format | Article |
| spelling | doaj-art-f71fea4dbe0d4eefabcd6cdfd2b5907b2025-10-31T05:33:30ZzhoEditorial Office of Transactions of the China Welding Institution, Welding Journals Publishing HouseHanjie xuebao0253-360X2025-07-0146711412010.12073/j.hjxb.20240108001hjxb-46-4-kangtianyouStrengthening and toughening mechanism of weld metal of 690 MPa-grade high-strength steelTianyou KANG0Lei SUN1Xinghua WANG2Yuxiang ZHANG3Renfu WANG4Youjing ZHANG5Luoyang Ship Material Research Institute, Luoyang, 471000, ChinaLuoyang Ship Material Research Institute, Luoyang, 471000, ChinaLuoyang Ship Material Research Institute, Luoyang, 471000, ChinaLuoyang Ship Material Research Institute, Luoyang, 471000, ChinaLuoyang Ship Material Research Institute, Luoyang, 471000, ChinaLuoyang Ship Material Research Institute, Luoyang, 471000, ChinaTwo different types of weld metals with a yield strength of 690 MPa were prepared. The microstructure analysis and mechanical property tests were carried out, and the strengthening and toughening mechanism of the weld metals was revealed. The results show that the nickel equivalent (Nieq) of the traditional 690 MPa-grade weld metal is small, and the segregation of alloy elements in the inter-dendritic region can be negligible. The weld metal forms a relatively uniform structure dominated by coarse grain bainite (GB). Because the coarse GB has little resistance to crack propagation, its low temperature toughness is poor. A new type of 690 MPa-grade weld metal is prepared by increasing Nieq. The Nieq is relatively large, and due to the significant segregation of Mn and Ni in the inter-dendritic region, the stability of undercooled austenite in the inter-dendritic region is greater than that in the dendrite region. Therefore, a complex phase structure with acicular ferrite (AF) in the dendrite and lath martensite (LM) in the inter-dendritic region is developed. In this structure, AF is the main toughening phase, and LM is the main strengthening phase. The yield strength of the weld metal is 738 MPa, and the impact absorption energy at −50 ℃ is 122 J, which achieves a good matching between strength and toughness.https://doi.org/10.12073/j.hjxb.20240108001690 mpa-grade high-strength steelweld metalcomplex phase structurealloy segregationstrengthening and toughening mechanism |
| spellingShingle | Tianyou KANG Lei SUN Xinghua WANG Yuxiang ZHANG Renfu WANG Youjing ZHANG Strengthening and toughening mechanism of weld metal of 690 MPa-grade high-strength steel 690 mpa-grade high-strength steel weld metal complex phase structure alloy segregation strengthening and toughening mechanism |
| title | Strengthening and toughening mechanism of weld metal of 690 MPa-grade high-strength steel |
| title_full | Strengthening and toughening mechanism of weld metal of 690 MPa-grade high-strength steel |
| title_fullStr | Strengthening and toughening mechanism of weld metal of 690 MPa-grade high-strength steel |
| title_full_unstemmed | Strengthening and toughening mechanism of weld metal of 690 MPa-grade high-strength steel |
| title_short | Strengthening and toughening mechanism of weld metal of 690 MPa-grade high-strength steel |
| title_sort | strengthening and toughening mechanism of weld metal of 690 mpa grade high strength steel |
| topic | 690 mpa-grade high-strength steel weld metal complex phase structure alloy segregation strengthening and toughening mechanism |
| url | https://doi.org/10.12073/j.hjxb.20240108001 |
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