J. Mater. Sci. Technol. ›› 2026, Vol. 248: 199-211.DOI: 10.1016/j.jmst.2025.05.052
• Research article • Previous Articles Next Articles
Zhiwen Lia,b, Baoxian Sua,*, Chen Liuc, Zhe Lia, Qingda Zhanga, Zhaoqi Jianga, Binbin Wanga, Ruirun Chena, Liang Wanga,b,*, Yanqing Sua,b
Received:2025-02-14
Revised:2025-04-23
Accepted:2025-05-08
Published:2026-03-20
Online:2025-07-01
Contact:
*E-mail addresses: Zhiwen Li, Baoxian Su, Chen Liu, Zhe Li, Qingda Zhang, Zhaoqi Jiang, Binbin Wang, Ruirun Chen, Liang Wang, Yanqing Su. Dislocation behavior and slip plane preferences in refractory multi-principal element alloys: Insights into strength-ductility trade-offs[J]. J. Mater. Sci. Technol., 2026, 248: 199-211.
| [1] J.W. Yeh, S.J. Lin, T.S. Chin, J.Y. Gan, S.K. Chen, T.T. Shun, C.H. Tsau, S.Y. Chou, Metall. Mater. Trans. A 35 (2004) 2533-2536. [2] B. Cantor, I.T.H.Chang, P. Knight, A.J.B. Vincent, Mater. Sci. Eng. A 375-377(2004) 213-218. [3] D.B. Miracle, O.N. Senkov, Acta Mater. 122(2017) 448-511. [4] E.P. George, D. Raabe, R.O. Ritchie, Nat. Rev. Mater. 4(2019) 515-534. [5] N.N. Guo, L. Wang, L.S. Luo, X.Z. Li, Y.Q. Su, J.J. Guo, H.Z. Fu, Mater. Des. 81(2015) 87-94. [6] O.N. Senkov, D.B. Miracle, K.J. Chaput, J.-P. Couzinie, J.Mater. Res. 33(2018) 3092-3128. [7] O.N. Senkov, C.F. Woodward, Mater. Sci. Eng. A 529 (2011) 311-320. [8] O.N. Senkov, G.B. Wilks, D.B. Miracle, C.P. Chuang, P.K. Liaw, Intermetallics 18 (2010) 1758-1765. [9] O.N. Senkov, G.B. Wilks, J.M. Scott, D.B. Miracle, Intermetallics 19 (2011) 698-706. [10] O.N. Senkov, S.L. Semiatin, J. Alloys Compd. 649(2015) 1110-1123. [11] O.N. Senkov, A.L. Pilchak, S.L. Semiatin, Metall. Mater. Trans. A 49 (2018) 2876-2892. [12] L. Lilensten, J.P. Couzinié, L. Perrière, A. Hocini, C. Keller, G. Dirras, I. Guillot, Acta Mater. 142(2018) 131-141. [13] P.F. Ji, B.H. Chen, S.G. Liu, B. Li, C.Q. Xia, X.Y. Zhang, M.Z. Ma, R.P. Liu, J. Mater. Sci.Technol. 110(2022) 227-238. [14] C. Gadelmeier, Y. Yang, U. Glatzel, E.P. George, Cell Rep. Phys. Sci. 3(2022) 100991. [15] S.Y. Chen, Y. Tong, K.K. Tseng, J.W. Yeh, J.D. Poplawsky, J.G. Wen, M.C. Gao, G. Kim, W. Chen, Y. Ren, R. Feng, W.D. Li, P.K. Liaw, Scr. Mater. 158(2019) 50-56. [16] S. Sheikh, S. Shafeie, Q. Hu, J. Ahlström, C. Persson, J. Veselý, J. Zýka, U. Klement, S. Guo, J. Appl. Phys. 120(2016) 164902. [17] W.J. Lai, H. Liu, X. Yu, Y.L. Yi, W. Li, S.F. Zhou, S.G. Cui, X.J. Wang, Mater. Sci. Eng. A 813 (2021) 141135. [18] Z.B. An, S.C. Mao, Y.N. Liu, L. Wang, H. Zhou, B. Gan, Z. Zhang, X.D. Han, J. Mater. Sci.Technol. 79(2021) 109-117. [19] W.J. Huang, J.X. Hou, X.J. Wang, J.W. Qiao, Y.C. Wu, Intermetallics 151 (2022) 107735. [20] W.J. Lai, F. Vogel, X.Y. Zhao, B.B. Wang, Y.L. Yi, D.Q. You, X. Tong, W. Li, X. Yu, X.J. Wang, Mater. Res. Lett. 10(2022) 133-140. [21] L. Qi, D.C. Chrzan, Phys. Rev. Lett. 112(2014) 115503. [22] L. Wang, C. Fu, Y.D. Wu, R.G. Li, Y.D. Wang, X.D. Hui, Mater. Sci. Eng. A 763 (2019) 138147. [23] R.R. Eleti, N. Stepanov, S. Zherebtsov, Scr. Mater. 188(2020) 118-123. [24] Z.B. An, S.C. Mao, T. Yang, C.T. Liu, B. Zhang, E. Ma, H. Zhou, Z. Zhang, L.H. Wang, X.D. Han, Mater. Horiz. 8(2021) 948-955. [25] F.L. Wang, G.H. Balbus, S.Z. Xu, Y.Q. Su, J. Shin, P.F. Rottmann, K.E. Knipling, J.-C. Stinville, L.H. Mills, O.N. Senkov, I.J. Beyerlein, T.M. Pollock, D.S. Gianola, Science 370 (2020) 95-101. [26] S.B. Wang, M.X. Wu, D. Shu, G.L. Zhu, D.H. Wang, B.D. Sun, Acta Mater. 201(2020) 517-527. [27] H. Chen, T. Hanemann, S. Seils, D. Schliephake, A.S. Tirunilai, M. Heilmaier, K.-P. Weiss, A. Kauffmann, Crystals 11 (2021) 81. [28] D.C. Cui, Y.Y. Zhang, L.X. Liu, Y. Li, L. Wang, Z.J. Wang, J.J. Li, J.C. Wang, F. He, J. Mater. Sci.Technol. 157(2023) 11-20. [29] T. Tsuru, S. Han, S. Matsuura, Z.H. Chen, K. Kishida, I. Iobzenko, S.I. Rao, C. Woodward, E.P. George, H. Inui, Nat. Commun. 15(2024) 1706. [30] D.H. Cook, P. Kumar, M.I. Payne, C.H. Belcher, P. Borges, W.Q. Wang, F. Walsh, Z.H. Li, A. Devaraj, M.W. Zhang, M. Asta, A.M. Minor, E.J. Lavernia, D. Apelian, R.O. Ritchie, Science 384 (2024) 178-184. [31] Z.B. An, A. Li, S.C. Mao, T. Yang, L.Y. Zhu, R. Wang, Z.X. Wu, B. Zhang, R.W. Shao, C. Jiang, B.X. Cao, C.J. Shi, Y. Ren, C. Liu, H.B. Long, J.F. Zhang, W. Li, F. He, L.G. Sun, J.B. Zhao, L.Y. Yang, X.Y. Zhou, X. Wei, Y.M. Chen, Z.G. Lu, F.Z. Ren, C.-T. Liu, Z.D. Zhang, X. Han, Nature 625 (2024) 697-702. [32] M. Methfessel, A.T. Paxton, Phys. Rev. B 40 (1989) 3616-3621. [33] G. Kresse, D. Joubert, Phys. Rev. B 59 (1999) 1758-1775. [34] J.P. Perdew, K. Burke, M. Ernzerhof, Phys. Rev. Lett. 77(1996) 3865-3868. [35] A. Van De Walle, P. Tiwary, M. De Jong, D.L. Olmsted, M. Asta, A. Dick, D. Shin, Y. Wang, L.Q. Chen, Z.K. Liu, Calphad 42 (2013) 13-18. [36] M. Beyramali Kivy, M.Asle Zaeem, Scr. Mater. 139(2017) 83-86. [37] B.B. Yang, C.Y. Shi, R.L. Lai, D.F. Shi, D.K. Guan, G.M. Zhu, Y.J. Cui, G.Q. Xie, Y.P. Li, A. Chiba, J. LLorca, Scr. Mater. 214(2022) 114648. [38] Q. Wan, K. Hua, Y.L. Tong, Y.H. Wu, F. Zhang, X.L. Li, H.F. Wang, Mater. Charact. 189(2022) 111960. [39] Q. He, S.H. Yoshida, N. Tsuji, Scr. Mater. 231(2023) 115442. [40] Z.W. Li, B.X. Su, L. Wang, C. Liu, Z. Li, Q.D. Zhang, B.B. Wang, X. Xue, R.R. Chen, Y.Q. Su, Rare Metals (2024). [41] V. Vitek, Prog. Mater. Sci. 36(1992) 1-27. [42] S.Z. Xu, E. Hwang, W.-R. Jian, Y.Q. Su, I.J. Beyerlein, Intermetallics 124 (2020) 106844. [43] M. Akmal, H.W. Seong, H.J. Ryu, J. Mater. Sci.Technol. 109(2022) 176-185. [44] N.N. Kumar, R. Tewari, P.V. Durgaprasad, B.K. Dutta, G.K. Dey, Comput. Mater. Sci. 77(2013) 260-263. [45] B.C. Chen, S.Z. Li, J. Ding, X.D. Ding, J. Sun, E. Ma, Scr. Mater. 222(2023) 115048. [46] S.Z. Xu, Y.Q. Su, W.-R. Jian, I.J. Beyerlein, Acta Mater. 202(2021) 68-79. [47] N.N. Kumar, R. Tewari, P.V. Durgaprasad, B.K. Dutta, G.K. Dey, Comput. Mater. Sci. 77(2013) 260-263. [48] X.C. Zhang, S. Cao, L.J. Zhang, R. Yang, Q.M. Hu, J. Mater. Sci.Technol. 22(2023) 3413-3422. [49] T.Y. Wang, J.Y. Li, M. Wang, C.Z. Li, Y.Q. Su, S.Z. Xu, X.G.Li, npj Comput.Mater. 10(2024) 143. [50] N.K. Chen, R. Maddin, JOM 3 (1951) 937-944. [51] C. Woodward, S.I. Rao, Phys. Rev. Lett. 88(2002) 216402. [52] L.A. Gypen, A. Deruyttere, J. Mater. Sci. 12(1977) 1028-1033. [53] K.H. Xun, B.Z. Zhang, Q. Wang, Z. Zhang, J. Ding, E. Ma, J. Mater. Sci.Technol. 135(2023) 221-230. [54] C. Lee, F. Maresca, R. Feng, Y. Chou, T. Ungar, M. Widom, K. An, J.D. Poplawsky, Y.-C. Chou, P.K. Liaw, W.A. Curtin, Nat. Commun. 12(2021) 5474. [55] S. Yin, Y.X. Zuo, A. Abu-Odeh, H. Zheng, X.G. Li, J. Ding, S.P. Ong, M. Asta, R.O. Ritchie, Nat. Commun. 12(2021) 4873. [56] R. Gröger, Model. Simul. Mater. Sci. Eng. 30(2022) 085007. [57] H. Zheng, L.T.W.Fey, X.G. Li, Y.J. Hu, L. Qi, C.Chen, S.Z. Xu, I.J. Beyerlein, S.P. Ong, npj Comput. Mater. 9(2023) 89. [58] F. Moitzi, L. Romaner, A.V. Ruban, M. Hodapp, O.E.Peil, npj Comput.Mater. 10(2024) 152. [59] G. Laplanche, P. Gadaud, L. Perrière, I. Guillot, J.P. Couzinié, J. Alloys Compd. 799(2019) 538-545. [60] K. Li, W. Chen, G.X. Yu, J.Y. Zhang, J. Sun, J. Alloys Compd. 875(2021) 159982. [61] P.A. Gordon, T. Neeraj, Y. Li, J. Li, Model. Simul. Mater. Sci. Eng. 18(2010) 085008. [62] X.Y. Wang, F. Maresca, P.H. Cao, Acta Mater. 234(2022) 118022 . |
| [1] | Qiankun Yang, Weisong Wu, Wei Zhang, Yong Zhang, Dingshun Yan, Zhiming Li. Synergetic mechanisms of nanoprecipitation and TRIP-TWIP effects in strong and ductile micro-alloyed metastable interstitial high-entropy alloys [J]. J. Mater. Sci. Technol., 2026, 242(0): 238-254. |
| [2] | Yu Tian, Fei Chen. Atomistic simulations of dislocation behaviors in Cr-Mn-Fe-Co-Ni high-entropy alloys with different Cr/Ni ratio [J]. J. Mater. Sci. Technol., 2025, 220(0): 30-42. |
| [3] | Shenghao Zhou, Jianghuai Yuan, Haichen Wu, Kaihang Wang, Guanshui Ma, Lei Zhang, Zhenyu Wang, Aiying Wang. Size-dependent uniform deformation transitions enabling hardness and toughness enhancement of nanocrystalline Cr2AlC MAX phase [J]. J. Mater. Sci. Technol., 2025, 232(0): 170-180. |
| [4] | YaoZu Shen, ZhengQi Wang, XianZhen Wang, XiaoBin Zhang, Yuan Wu, JinWei Zhu, YuChen Zhao, Wei Liu, XiongJun Liu, Hui Wang, SuiHe Jiang, ZhaoPing Lu. Enhancing mechanical properties of refractory multi-principal element alloys via compositionally complex carbides [J]. J. Mater. Sci. Technol., 2025, 232(0): 191-201. |
| [5] | Dong Liu, Dapeng Yang, Yong Hou, Yunjie Li, Guodong Wang, Hongliang Yi. Strain rate effects on mechanical properties, microstructural evolution, and deformation mechanisms of high manganese steels [J]. J. Mater. Sci. Technol., 2025, 237(0): 219-255. |
| [6] | Wei Song, Junying Yang, Jingjing Liang, Nannan Lu, Yizhou Zhou, Xiaofeng Sun, Jinguo Li. Temperature/stress dependence of stress rupture behavior and deformation microstructure of an advanced superalloy for additive manufacturing [J]. J. Mater. Sci. Technol., 2025, 206(0): 37-52. |
| [7] | Youhong Peng, Li Wang, Chenglu Liu, Chao Xu, Lin Geng, Guohua Fan. Revealing the exceptional cryogenic strength-ductility synergy of a solid solution 6063 alloy by in-situ EBSD experiments [J]. J. Mater. Sci. Technol., 2025, 208(0): 313-322. |
| [8] | Xudong Liu, Haoxiang Liu, Yuhao Wu, Mingyang Li, Chenxu Xing, Yixuan He. Tailoring phase transformation and precipitation features in a Al21Co19.5Fe9.5Ni50 eutectic high-entropy alloy to achieve different strength-ductility combinations [J]. J. Mater. Sci. Technol., 2024, 195(0): 111-125. |
| [9] | Yu Chen, Ronggao Cui, Jun Shen, Gang Wang. Progress on the glassy-crystal laminates: From design, microstructure to deformation and future solutions [J]. J. Mater. Sci. Technol., 2024, 172(0): 113-144. |
| [10] | Bin Zhang, Yunxia Sun, Tuo Liang, Yunzhen Li, Tian Li, Jingchao Wang, Ruiru Cai, Changlin Yang. Simultaneously enhancing the strength and ductility of as-extruded AlN/AZ91 composites via nano-precipitation and pyramidal slip [J]. J. Mater. Sci. Technol., 2024, 172(0): 240-254. |
| [11] | Wei Xiong, Amy X.Y. Guo, Shuai Zhan, Chain-Tsuan Liu, Shan Cecilia Cao. Refractory high-entropy alloys: A focused review of preparation methods and properties [J]. J. Mater. Sci. Technol., 2023, 142(0): 196-215. |
| [12] | D.D. Zhang, J. Kuang, H. Xue, J.Y. Zhang, G. Liu, J. Sun. A strong and ductile NiCoCr-based medium-entropy alloy strengthened by coherent nanoparticles with superb thermal-stability [J]. J. Mater. Sci. Technol., 2023, 132(0): 201-212. |
| [13] | Xudong Liu, Jiangkun Fan, Kai Cao, Fulong Chen, Ruihao Yuan, Degui Liu, Bin Tang, Hongchao Kou, Jinshan Li. Creep anisotropy behavior, deformation mechanism, and its efficient suppression method in Inconel 625 superalloy [J]. J. Mater. Sci. Technol., 2023, 133(0): 58-76. |
| [14] | Bijin Zhou, Leyun Wang, Jinhui Wang, Alireza Maldar, Gaoming Zhu, Hailong Jia, Peipeng Jin, Xiaoqin Zeng, Yanjun Li. Dislocation behavior in a polycrystalline Mg-Y alloy using multi-scale characterization and VPSC simulation [J]. J. Mater. Sci. Technol., 2022, 98(0): 87-98. |
| [15] | Zhaoxin Du, Qiwei He, Ruirun Chen, Fei Liu, Jingyong Zhang, Fei Yang, Xueping Zhao, Xiaoming Cui, Jun Cheng. Rolling reduction -dependent deformation mechanisms and tensile properties in a β titanium alloy [J]. J. Mater. Sci. Technol., 2022, 104(0): 183-193. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
