J. Mater. Sci. Technol. ›› 2025, Vol. 231: 270-285.DOI: 10.1016/j.jmst.2025.01.027
• Research article • Previous Articles Next Articles
Jiale Jianga, Yunjie Lia,*, Yi Liua, Jian Kanga, Xiaolin Lib, Guo Yuana,*, Guodong Wanga
Received:2024-12-07
Revised:2025-01-24
Accepted:2025-01-25
Published:2025-10-01
Online:2025-03-03
Contact:
*E-mail addresses: Jiale Jiang, Yunjie Li, Yi Liu, Jian Kang, Xiaolin Li, Guo Yuan, Guodong Wang. Tailoring banded-equiaxed heterogeneous structure and martensite variants to achieve high toughness and high ductility in a newly designed 2.4 GPa high-strength steel[J]. J. Mater. Sci. Technol., 2025, 231: 270-285.
| [1] G.Y. Jing, W.P. Huang, H.H. Yang, Z.M. Wang, J. Mater. Sci.Technol. 48(2020) 44-56. [2] J. Liu, J. Li, X. Cheng, H. Wang, J. Mater. Sci.Technol. 34(2018) 643-652. [3] L.F. Sun, Z.F. He, N. Jia, Y.X. Guo, S. Jiang, Y.L. Yang, Y.X. Liu, X.J. Guan, Y.F. Shen, H.L. Yan, P.K. Liaw, Sci. Adv. 10 (2024) eadq6398. [4] L. Liu, Q. Yu, Z. Wang, J. Ell, M.X. Huang, R.O. Ritchie, Science 368 (2020) 1347-1352. [5] C. Hu, C.P. Huang, Y.X. Liu, A. Perlade, K.Y. Zhu, M.X. Huang, Acta Mater. 245(2023) 118629. [6] Q. Zhou, L.H. Qian, J. Tan, J.Y. Meng, F.C. Zhang, Mater. Sci. Eng. A 578 (2013) 370-376. [7] S.S. Kasana, S. Sharma, O.P. Pandey, Arch. Civ. Mech. Eng. 22(2022) 126. [8] F. Du, P. Zhou, P. Guo, C. Li, L. Deng, X. Wang, J. Jin, Materials 15 (2022) 8927. [9] Y. Tomita, T. Okawa, Mater. Sci. Technol. 11(2013) 245-251. [10] L.J. Wang, S.H. Jiang, B. Peng, B.H. Bai, X.C. Liu, C.R. Li, X.J. Liu, X.Y. Yuan, H.H. Zhu, Y. Wu, H. Wang, X.B. Zhang, Z.P. Lu, J. Mater. Sci.Technol. 161(2023) 245-257. [11] Y.J. Li, L.L. Li, J. Kang, N.T. Niu, H. Xi, Y. Liu, G. Yuan, G.D. Wang, Scr. Mater. 233(2023) 115521. [12] D.P. Yang, P.J. Du, D. Wu, H.L. Yi, J. Mater. Sci.Technol. 75(2021) 205-215. [13] Y.J. Li, G. Yuan, L.L. Li, J. Kang, F.K. Yan, P.J. Du, D. Raabe, G.D. Wang, Science 379 (2023) 168-173. [14] B.B. He, B. Hu, H.W. Yen, G.J. Cheng, Z.K. Wang, H.W. Luo, M.X. Huang, Science 357 (2017) 1029-1032. [15] X. Zhou, C. Jia, P. Mi, H. Zhang, W. Yan, W. Wang, M. Sun, S. van der Zwaag, L.Rong, J. Mater. Sci. Technol. 209(2025) 311-328. [16] H.J. Wang, H. Feng, H.B. Li, S.C. Zhang, H.C. Zhu, Z.H. Jiang, Mater. Sci. Eng. A 914 (2024) 147131. [17] F.G. Liu, W.J. Zhang, X. Lin, C.P. Huang, F.C. Liu, W.D. Huang, P.F. Wang, X. Li, Mater. Today Commun. 25(2020) 101452. [18] T.W. Yin, Y.F. Shen, W.Y. Xue, N. Jia, Y.J. Li, Int. J. Plast. 168(2023) 103704. [19] X.C. Yang, C.N. Li, D. Liu, J.S. Wang, J.M. Wang, L.Z. Ba, C. Wang, Q.Y. Duan, Y.Z. Ju, X.J. Di, Mater. Sci. Eng. A 914 (2024) 147118. [20] Y.J. Li, D. Liu, W.N. Zhang, J. Kang, D. Chen, G. Yuan, G.D. Wang, Mater. Lett. 230(2018) 36-39. [21] A.P. Bentley, G.C. Smith, Metall. Mater. Trans. A 17 (1986) 1593-1600. [22] T. Ungár, S. Ott, P.G. Sanders, A. Borbely, J.R. Weertman, Acta Mater. 46(1998) 3693-3699. [23] R.A. Renzetti, H.R.Z. Sandim, R.E. Bolmaro, P.A. Suzuki, Möslang, Mater. Sci. Eng. A 534 (2012) 142-146. [24] E.J. Seo, L. Cho, Y. Estrin, B.C.De Cooman, Acta Mater. 113(2016) 124-139. [25] M.C. Niu, K. Yang, J. Luan, W. Wang, Z. Jiao, J. Mater. Sci.Technol. 104(2022) 52-58. [26] H.L. Zhang, M.Y. Sun, Y.X. Liu, D.P. Ma, B. Xu, M.X. Huang, D.Z. Li, Y.Y. Li, Acta Mater. 211(2021) 116878. [27] S.H. Jiang, H. Wang, Y. Wu, X.J. Liu, H.H. Chen, M.J. Yao, B. Gault, D. Ponge, D. Raabe, A. Hirata, M.W. Chen, Y.D. Wang, Z.P. Lu, Nature 544 (2017) 460-464. [28] T.Q. Liu, Z.X. Cao, H. Wang, G.L. Wu, J.J. Jin, W.Q. Cao, Scr. Mater. 178(2020) 285-289. [29] Z.S. Chai, L.Y. Wang, Z. Wang, Q. Lu, J. Hu, W.W. Sun, J.F. Wang, W. Xu, Scr. Mater. 224(2023) 115108. [30] A. Rosenauer, S. Teusl, A. Landefeld, D. Brandl, G. Ressel, T. Hönigmann, M. Stadler, C. Turk, E. Maawad, M. Stockinger, R. Schnitzer, Mater. Sci. Eng. A 895 (2024) 146220. [31] Z. Liu, Z. Wei, X. Zou, E. Brodu, D. Said, C. Furtado, J. Xie, K. Vanmeensel, Mater. Sci. Eng. A 892 (2024) 146069. [32] X.D. Li, Z.D. Yin, Mater. Lett. 24(1995) 239-242. [33] S.S. Xu, J. Li, Y. Cui, Y. Zhang, L. Sun, J. Li, J. Luan, Z. Jiao, X. Wang, C. Liu, Z. Zhang, Int. J. Plast. 128(2020) 102677. [34] S.R.E. Hoseini, H. Arabi, H. Razavizadeh, Vacuum 82 (2008) 521-528. [35] X.H. Shi, W.D. Zeng, Q.Y. Zhao, W.W. Peng, C. Kang, J. Alloys Compd. 679(2016) 184-190. [36] H.L. Zhang, G.Q. Zhang, H.C. Zhou, Z.H. Liu, B. Xu, L.H. Hao, M.Y. Sun, D.Z. Li, Mater. Sci. Eng. A 851 (2022) 143659. [37] K.S. Kim, Y.K. Kim, S. Yang, B. Koo, K.A. Lee, Materialia 20 (2021) 101244. [38] Y.H. Gao, S.Z. Liu, X.B. Hu, Q.Q. Ren, Y. Li, V.P. Dravid, C.X. Wang, Mater. Sci. Eng. A 759 (2019) 298-302. [39] Y. Zhang, D. Zhan, X. Qi, Z. Jiang, Mater. Sci. Eng. A 730 (2018) 41-49. [40] X.C. Li, J.X. Zhao, J.H. Cong, R.D.K.Misra, X.M. Wang, X.L. Wang, C.J. Shang, J. Mater. Sci. Technol. 84(2021) 49-58. [41] T. Tomida, Acta Mater. 146(2018) 25-41. [42] Z.H. Wang, H.D. Sun, X.G. Guo, P. Wang, N. Liu, D.L. Yu, H.W. Zhang, J. Mater. Sci.Technol. 160(2023) 148-160. [43] X.G. Zhang, G. Miyamoto, Y. Toji, S. Nambu, T. Koseki, T. Furuhara, Acta Mater. 144(2018) 601-612. [44] S.B. Zhang, X. Chen, Z. Moumni, Y.J. He, Int. J. Plast. 108(2018) 1-20. [45] C.L. Mao, C.X. Liu, L.M. Yu, H.J. Li, Y.C. Liu, Mater. Des. 197(2021) 109252. [46] T. Kaneshita, G. Miyamoto, T. Furuhara, Acta Mater. 127(2017) 368-378. [47] Y.J. Li, D. Liu, D. Chen, J. Kang, X.H. Wang, G. Yuan, R.D.K. Misra, G.D. Wang, Mater. Sci. Eng. A 753 (2019) 197-207. [48] M.H. Huang, L.Y. Wang, C.C. Wang, Y.Z. Li, J.L. Wang, J.H. Yuan, J. Hu, M.X. Huang, W. Xu, J. Mater. Sci.Technol. 198(2024) 231-242. [49] F.G. Liu, X. Lin, J. Shi, Y.J. Zhang, P.Y. Bian, X. Li, Y.L. Hu, Addit. Manuf. 29(2019) 100795. [50] L. Morsdorf, O. Jeannin, D. Barbier, M. Mitsuhara, D. Raabe, C.C. Tasan, Acta Mater. 121(2016) 202-214. [51] K.H. Ryou, S. Nambu, T. Koseki, Mater. Sci. Eng. A 777 (2020) 139090. [52] R. Lehnert, A. Weidner, C. Schimpf, M. Wendler, H. Biermann, Materialia 8 (2019) 100498. [53] M.I. Latypov, S. Shin, B.C.De Cooman, H.S. Kim, Acta Mater. 108(2016) 219-228. [54] Y. Wang, J. Sun, T. Jiang, Y. Sun, S. Guo, Y. Liu, Acta Mater. 158(2018) 247-256. [55] E.J. Seo, L. Cho, Y. Estrin, B.C.De Cooman, Acta Mater. 113(2016) 124-139. [56] J. Ren, Q. Chen, J. Chen, Z. Liu, Mater. Sci. Eng. A 811 (2021) 141063. [57] T.M. Park, M.S. Jeong, C. Jung, W.S. Choi, P.-P. Choi, J. Han, Mater. Sci. Eng. A 802 (2021) 140681. [58] S.H.. Hong, J.H. Kim, J.H. Lee, D.W. Suh, Mater. Sci. Eng. A 886 (2023) 145686. [59] Y.G. Cho, H.J. Cho, H.S. Noh, S.H. Kim, S.J. Kim, Mater. Sci. Eng. A 916 (2024) 147368. [60] Y.J. Zhou, L. Xiao, X.L. Li, X.L. Wan, L.J. Xu, X.T. Deng, Z.D. Wang, J. Mater. Res.Technol. 32(2024) 439-451. [61] L. Huang, W. Lin, Y. Zhang, D. Feng, Y. Li, X. Chen, K. Niu, F. Liu, Acta Mater. 201(2020) 167-181. [62] Y.J. Wang, J.J. Sun, T. Jiang, Y. Sun, S.W. Guo, Y.N. Liu, Acta Mater. 158(2018) 247-256. [63] E.J. Seo, L. Cho, Y. Estrin, B.C.De Cooman, Acta Mater. 113(2016) 124-139. [64] H. Liu, X.K. Shang, B.B. He, Z.Y. Liang, Int. J. Plast. 161(2023) 103495. |
| [1] | H.Y. Bo, H.Y. Song, X.Y. Li. Effect of short-range ordering on crack propagation behavior of high-entropy alloys [J]. J. Mater. Sci. Technol., 2025, 227(0): 262-275. |
| [2] | Tingyan Yan, Yuan Liu, Jianfeng Wang, Yong Zheng, Xiaohong Zhan. Bridging microstructure and crystallography with the crack propagation behavior in Ti-6Al-4V alloy fabricated via dual laser beam bilateral synchronous welding [J]. J. Mater. Sci. Technol., 2024, 174(0): 1-14. |
| [3] | Fan Zhang, Weidong Zeng, Penghui Zhang, Haoyuan Ma, Jianwei Xu. Simultaneous enhancements of strength and toughness by multiscale lamellar structure in Ti2AlNb based intermetallic [J]. J. Mater. Sci. Technol., 2024, 174(0): 249-261. |
| [4] | Runqi Zhang, Qinyang Zhao, Dizi Guo, Yang Ying, Huan Wang, Zhongli Qiao, Yunbo Zhang, Lin Wang, Yongqing Zhao. High impact toughness of CT20 alloy induced by multi-factor coupling [J]. J. Mater. Sci. Technol., 2024, 192(0): 65-81. |
| [5] | Dingding Lu, Ben Lin, Tianle Liu, Sanxi Deng, Youjie Guo, Jinfeng Li, Danyang Liu. Effect of grain structure on fatigue crack propagation behavior of Al-Cu-Li alloys [J]. J. Mater. Sci. Technol., 2023, 148(0): 75-89. |
| [6] | Xianghui Zhu, Xusheng Yang, Weijiu Huang, Weiyi Qiu, Xin Wang, Fei Guo, Li Hu, Miao Gong. Influence of pre-stretching on the tensile strength, fatigue properties and the in-plane anisotropy in Al-Cu-Li alloy AA2099 [J]. J. Mater. Sci. Technol., 2023, 145(0): 249-259. |
| [7] | QiZhao, Magd Abdel Wahab, Yong Ling, Zhiyi Liu. Fatigue crack propagation across grain boundary of Al-Cu-Mg bicrystal based on crystal plasticity XFEM and cohesive zone model [J]. J. Mater. Sci. Technol., 2022, 126(0): 275-287. |
| [8] | Wei Song, Hai Wang, Yi Li, Shuyuan Zhang, Ling Ren, Ke Yang. Ultrafine grained metastable Ti6Al4V5Cu alloy with high strength and excellent low-cycle fatigue property [J]. J. Mater. Sci. Technol., 2022, 129(0): 240-250. |
| [9] | Congying Xiang, Min Shen, Chongze Hu, Lok Wing Wong, Hongbo Nie, Huasheng Lei, Jian Luo, Jiong Zhao, Zhiyang Yu. Atomistic observation of in situ fractured surfaces at a V-doped WC-Co interface [J]. J. Mater. Sci. Technol., 2022, 110(0): 103-108. |
| [10] | Yiping Xia, Hao Wu, Kesong Miao, Xuewen Li, Chao Xu, Lin Geng, Honglan Xie, Guohua Fan. Effects of the layer thickness ratio on the enhanced ductility of laminated aluminum [J]. J. Mater. Sci. Technol., 2022, 111(0): 256-267. |
| [11] | Guangrong Li, Chunhua Tang, Guanjun Yang. Dynamic-stiffening-induced aggravated cracking behavior driven by metal-substrate-constraint in a coating/substrate system [J]. J. Mater. Sci. Technol., 2021, 65(0): 154-163. |
| [12] | Diao-Feng Li, Ya-Long Yang, Yong Shen, Jian Xu. Bending fatigue behavior of thin Zr61Ti2Cu25Al12 bulk metallic glass beams for compliant mechanisms application [J]. J. Mater. Sci. Technol., 2021, 89(0): 1-15. |
| [13] | Yafei Wang, Rui Chen, Xu Cheng, Yanyan Zhu, Jikui Zhang, Huaming Wang. Effects of microstructure on fatigue crack propagation behavior in a bi-modal TC11 titanium alloy fabricated via laser additive manufacturing [J]. J. Mater. Sci. Technol., 2019, 35(2): 403-408. |
| [14] | Lianghua Lin, Zhiyi Liu, Wenjuan Liu, Yaru Zhou, Tiantian Huang. Effects of Ag Addition on Precipitation and Fatigue Crack Propagation Behavior of a Medium-Strength Al-Zn-Mg Alloy [J]. J. Mater. Sci. Technol., 2018, 34(3): 534-540. |
| [15] | Z.M. Song, L.M. Lei, B. Zhang, X. Huang, G.P. Zhang. Microstructure Dependent Fatigue Cracking Resistance Ti–6.5Al–3.5Mo–1.5Zr–0.3Si Alloy [J]. J Mater Sci Technol, 2012, 28(7): 614-621. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
