J. Mater. Sci. Technol. ›› 2026, Vol. 250: 243-256.DOI: 10.1016/j.jmst.2025.06.031
• Research article • Previous Articles Next Articles
Linxiang Liu, Qingfeng Wu*, Jiaxi Zhu, Yuhao Jia, Feng He, Lei Wang, Jincheng Wang, Junjie Li, Zhijun Wang*
Received:2025-03-14
Revised:2025-06-06
Accepted:2025-06-06
Published:2026-04-10
Online:2025-07-20
Contact:
*E-mail addresses: Linxiang Liu, Qingfeng Wu, Jiaxi Zhu, Yuhao Jia, Feng He, Lei Wang, Jincheng Wang, Junjie Li, Zhijun Wang. Concurrently enhancing precipitation strengthening of FCC and B2 phases in dual-phase high-entropy alloys via Ti and Ta microalloying[J]. J. Mater. Sci. Technol., 2026, 250: 243-256.
| [1] D.B. Miracle, O.N. Senkov, Acta Mater. 122(2017) 448-511. [2] J. Chen, X. Zhou, W. Wang, B. Liu, Y. Lv, W. Yang, D. Xu, Y. Liu, J. Alloys Compd. 760(2018) 15-30. [3] E.P. George, W.A. Curtin, C.C. Tasan, Acta Mater. 188(2020) 435-474. [4] Y. Lu, Y. Dong, S. Guo, L. Jiang, H. Kang, T. Wang, B. Wen, Z. Wang, J. Jie, Z. Cao, H. Ruan, T. Li, Sci. Rep. 4(2014) 1-5. [5] Y. Lu, X. Gao, L. Jiang, Z. Chen, T. Wang, J. Jie, H. Kang, Y. Zhang, S. Guo, H. Ruan, Y. Zhao, Z. Cao, T. Li, Acta Mater. 124(2017) 143-150. [6] X. Gao, Y. Lu, B. Zhang, N. Liang, G. Wu, G. Sha, J. Liu, Y. Zhao, Acta Mater. 141(2017) 59-66. [7] T. Xu, Q. Chen, L. Ji, H. Wang, S. Qu, A. Feng, Intermetallics 160 (2023) 107942. [8] J. Lu, H. Zhang, G. Ren, Y. Chen, L. Luo, H. Cai, X. Shan, X. Zhang, X. Zhao, Compos. Part B-Eng. 269(2024) 111097. [9] X. Liu, X. Shi, J. Wang, Y. Jia, Z. Wang, F. He, J. Li, J. Wang, J. Mater. Sci. 59 (2024) 10444-10460. [10] Q. Wu, Z. Wang, X. Hu, T. Zheng, Z. Yang, F. He, J. Li, J. Wang, Acta Mater. 182(2020) 278-286. [11] Q. Wu, F. He, J. Li, H.S. Kim, Z. Wang, J. Wang, Nat. Commun. 13(2022) 4697. [12] Q. Wu, Y. Jia, Z. Wang, F. He, Y. Wei, J. Li, J. Wang, Scr. Mater. 219(2022) 114875. [13] Y. Jia, Z. Wang, Q. Wu, F. He, J. Li, J. Wang, Mater. Sci. Eng. A 858 (2022) 144190. [14] T. Xiong, S. Zheng, J. Pang, X. Ma, Scr. Mater. 186(2020) 336-340. [15] L. Liu, Z. Wang, Q. Wu, Y. Jia, Q. Xu, F. He, J. Li, J. Wang, Scr. Mater. 232(2023) 115502. [16] Y. Zhao, X. Fu, Y. Lu, Q. Yu, Mater. Today Nano 20 (2022) 100263. [17] J.Y. He, H. Wang, H.L. Huang, X.D. Xu, M.W. Chen, Y. Wu, X.J. Liu, T.G. Nieh, K. An, Z.P. Lu, Acta Mater. 102(2016) 187-196. [18] T. Yang, Y.L. Zhao, Y. Tong, Z.B. Jiao, J. Wei, J.X. Cai, X.D. Han, D. Chen, A. Hu, J.J. Kai, K. Lu, Y. Liu, C.T. Liu, Science 362 (2018) 933-937. [19] W. Lu, X. Luo, Y. Yang, K. Yan, B. Huang, P. Li, Mater. Sci. Eng. A 780 (2020) 139218. [20] W. Lu, J. Gong, B. Huang, Y. Wang, X.S. Yang, X. Luo, R. Hu, Y. Yang, Scr. Mater. 245(2024) 116045. [21] Y.L. Zhao, T. Yang, Y.R. Li, L. Fan, B. Han, Z.B. Jiao, D. Chen, C.T. Liu, J.J. Kai, Acta Mater. 188(2020) 517-527. [22] G. Sauthoff, Intermetallics 8 (2000) 1101-1109. [23] R. Darolia, D.F. Lahrman, R.D. Field, J.R. Dobbs, K.M. Chang, E.H. Goldman, D. G.Konitzer, in: C.T. Liu, R.W. Cahn, G. Sauthoff (Eds.), Ordered Intermetallic-s-Physical Metallurgy and Mechanical Behaviour, Springer, Dordrecht, 1992, pp. 679-698. [24] R.D. Noebe, R.R. Bowman, M.V. Nathal, Int. Mater. Rev. 38(1993) 193-232. [25] K. Bochenek, M. Basista, Prog. Aerosp. Sci. 79(2015) 136-146. [26] R.D. Noebe, F.J. Ritzert, A. Misra, R. Gibala, NASA Tech. Memo, 1991 https://ntrs.nasa.gov/search.jsp?R=19910018010. [27] R.C.Reed, in: The Superalloys, Cambridge University Press, UK, 2006, pp. 152-153. [28] D.J. Crudden, A. Mottura, N. Warnken, B. Raeisinia, R.C. Reed, Acta Mater. 75(2014) 356-370. [29] J. Joseph, M. Annasamy, S.R. Kada, P.D. Hodgson, M.R. Barnett, D.M. Fabijanic, Mater. Sci. Eng. A 835 (2022) 142620. [30] D.D. Zhang, J. Kuang, H. Xue, J.Y. Zhang, G. Liu, J. Sun, J. Mater. Sci.Technol. 132(2023) 201-212. [31] K. Ishida, R. Kainuma, N. Ueno, T. Nishizawa, Metall. Trans. A 22 (1991) 441-446. [32] R. Yang, J.A. Leake, R.W. Cahn, Philos. Mag. A Phys.Condens. Matter, Struct. Defects Mech. Prop. 65(1992) 961-980. [33] R. Yang, J.A. Leake, R.W. Cahn, High Temp. Alum. Intermet. 152(1992) 227-236. [34] J. Lapin, T. Pelachová, O. Bajana, Intermetallics 8 (2000) 1417-1427. [35] J. Lapin, A. Vaňo, Scr. Mater. 50(2004) 571-575. [36] W.F. Gale, Z.A.M.Abdo, J. Mater. Sci. 34(1999) 4425-4437. [37] W.F. Gale, Intermetallics 4 (1996) 585-587. [38] E. Pekarskaya, G.A. Botton, C.N. Jones, C.J. Humphreys, Intermetallics 8 (2000) 903-913. [39] Z. Yang, Z. Wang, Q. Wu, T. Zheng, P. Zhao, J. Zhao, J. Chen, Appl. Phys. A-Mater.Sci. Process. 125(2019) 1-6. [40] Y. Jia, Z. Wang, Q. Wu, Y. Wei, X. Bai, L. Liu, J. Wang, X. Liu, L. Wang, F. He, J. Li, J. Wang, Acta Mater. 262(2024) 119427. [41] W.H. Tian, M. Hibino, M. Nemoto, Intermetallics 6 (1998) 121-129. [42] B. Bartova, D. Schryvers, Z. Yang, S. Ignacova, P. Sittner, Scr. Mater. 57(2007) 37-40. [43] R. Kainuma, M. Ise, C.C. Jia, H. Ohtani, K. Ishida, Intermetallics 4 (1996) S151-S158. [44] Y. Zhou, P. Nash, S.M. Bessa, G.T. Ferrigatto, B.S.V.P. Madureira, A.S. Magalhães, A. Oliveira, G.C. Pereira, L.G. Ribeiro, L.P. dos Santos, A.A. da Silva, J.D. Silva, A.G. Silva, J.M. de Souza, Y.S. Torres, R.L. da Silva, B.F.R.F. de Cunha, J. Phase Equilibria Diffus. 38(2017) 630-645. [45] A. Shafiei, S. Khani Moghanaki, M. Amirjan, J. Mater. Res.Technol. 26(2023) 2419-2431. [46] Special Metals Alloy technical bulletins Inconel 718, Special Metals alloy technical bulletins inconel 718, Inconel alloy 718, https://www.specialmetals.com/documents/technical-bulletins/inconel/inconel-alloy-718.pdf, September 7, 2007. [47] Special Metals Alloy technical bulletins Waspaloy, Special metals al-loy technical bulletins Waspaloy, https://www.specialmetals.com/documents/technical-bulletins/waspoloy.pdf, September 4, 2004. [48] F. Sun, Y.F. Gu, J.B. Yan, Z.H. Zhong, M. Yuyama, J. Alloys Compd. 657(2016) 565-569. [49] H. Shang, Q. Ma, Q. Gao, H. Zhang, H. Li, Mater. Charact. 192(2022) 112242. [50] J.L. Yuan, Z. Wang, X. Jin, P.D. Han, J.W. Qiao, Mater. Sci. Eng. A 853 (2022) 143712. [51] C. Sun, P. Li, S. Xi, Y. Zhou, S. Li, X. Yang, Mater. Sci. Eng. A 728 (2018) 144-150. [52] Z. Li, L. Fu, J. Peng, H. Zheng, X. Ji, Y. Sun, S. Ma, A. Shan, Mater. Charact. 159(2020) 109989. [53] L. Gao, Y. Wu, N. An, J. Chen, X. Liu, R. Bai, X. Hui, Mater. Sci. Eng. A 898 (2024) 145995. [54] J. Sun, W. Zhao, P. Yan, S. Li, Z. Dai, L. Jiao, T. Qiu, Mater. Sci. Eng. A 850 (2022) 143570. [55] F. Yang, L. Wang, Z. Wang, Q. Wu, K. Zhou, X. Lin, W. Huang, J. Mater. Sci.Technol. 106(2022) 128-132. [56] H. Jiang, W. Wu, S. Yan, X. Qiu, H. Guo, S. Zhu, B. Zhang, Coatings 13 (2023) 1836. [57] Q. Wang, Y. Ma, B. Jiang, X. Li, Y. Shi, C. Dong, P.K. Liaw, Scr. Mater. 120(2016) 85-89. [58] P. Zhang, Y. Yuan, Y.F. Gu, J.B. Yan, Y.Y. Dang, J.T. Lu, J.C. Wang, J. Alloys Compd. 825(2020) 154012. [59] P. Zhang, Y. Yuan, L. Zhong, Y.F. Gu, J.B. Yan, J.T. Lu, Z. Yang, Materialia 16 (2021) 101061. [60] Q. Wang, Y. Ma, B. Jiang, X. Li, Y. Shi, C. Dong, P.K. Liaw, Scr. Mater. 120(2016) 85-89. [61] D.D. Zhang, J.Y. Zhang, J. Kuang, G. Liu, J. Sun, Acta Mater. 233(2022) 117981. [62] Z. Li, L. Fu, J. Peng, H. Zheng, X. Ji, Y. Sun, Mater. Charact. 159(2020) 109989. [63] Q. Wu, Z. Wang, F. He, Z. Yang, J. Li, J. Wang, J. Mater. Sci.Technol. 128(2022) 71-81. [64] B. Cao, Y. Zhao, T. Yang, C.T. Liu, Adv. Eng. Mater. 23(2021) 1-11. [65] L.X. Wang, S. Xiang, Y.B. Tan, W. Shi, Y.Q. Cai, X.M. Ji, Mater. Sci. Eng. A 853 (2022) 143705. [66] F. He, S. Wei, J.L. Cann, Z. Wang, J. Wang, C.C. Tasan, Acta Mater. 220(2021) 117314. [67] L. Liu, Q. Wu, J. Zhu, Y. Jia, F. He, L. Wang, J. Wang, J. Li, Z. Wang, J. Alloys Compd. 1020(2025) 179332. [68] J.H. Hwang, T.T.T.Trang, O. Lee, G.Park, A. Zargaran, N.J. Kim, Acta Mater. 191(2020) 1-12. [69] B. Gwalani, V. Soni, M. Lee, S.A. Mantri, Y. Ren, R. Banerjee, Mater. Des. 121(2017) 254-260. [70] R.L. Fleischer, Acta Metall. 11(1963) 203-209. [71] R.W. Kozar, A. Suzuki, W.W. Milligan, J.J. Schirra, M.F. Savage, T.M. Pollock, Met-all. Mater. Trans. A Phys. Metall. Mater. Sci. 40(2009) 1588-1603. [72] T.M. Pollock, A.S. Argon, Acta Metall. Mater. 40(1992) 1-30. [73] S.L. Shang, J. Shimanek, S. Qin, Y. Wang, A.M. Beese, Z.K. Liu, Phys. Rev. B 101 (2020) 024102. [74] H.P. Karnthaler, E.T. Mühlbacher, C. Rentenberger, Acta Mater. 44(1996) 547-560. [75] J.H. Schneibel, E.D. Specht, W.A. Simpson, Intermetallics 4 (1996) 581-583. [76] C.T. Liu, J.A. Horton, Mater. Sci. Eng.A 192-193(1995) 170-178. [77] S.Il Baik, S.Y. Wang, P.K. Liaw, D.C. Dunand, Acta Mater. 157(2018) 142-154. [78] M. Hoffmann, R. Birringer, Acta Mater. 44(1996) 2729-2736. [79] J.F. Nie, B.C. Muddle, I.J. Polmear, Mater. Sci.Forum 217-222(1996) 1257-1262. [80] Y. Zhu, K. Ameyama, P.M. Anderson, I.J. Beyerlein, H. Gao, H.S. Kim, E. Lavernia, S. Mathaudhu, H. Mughrabi, R.O. Ritchie, N. Tsuji, X. Zhang, X. Wu, Mater. Res. Lett. 9(2021) 1-31. [81] Y. Zhu, X. Wu, Mater. Res. Lett. 7(2019) 393-398. [82] M. Yang, Y. Pan, F. Yuan, Y. Zhu, X. Wu, Mater. Res. Lett. 4(2016) 145-151. [83] P. Shi, Y. Zhong, Y. Li, W. Ren, T. Zheng, Z. Shen, B. Yang, J. Peng, P. Hu, Y. Zhang, P.K. Liaw, Y. Zhu, Mater. Today 41 (2020) 62-71. [84] F. He, Z. Yang, S. Liu, D. Chen, W. Lin, T. Yang, D. Wei, Z. Wang, J. Wang, J. Kai, Int. J. Plast. (2021) 103022. [85] Z. Yang, X. Liu, J. Zhao, Q. Zeng, K. Xu, Y. Li, C. Wang, L. Wang, J. Li, J. Wang, H.S. Kim, Z. Wang, F. He, Int. J. Plast. 176(2024) 103963. [86] Y. Jia, Q. Wu, F. He, Z. Yang, L. Liu, X. Liu, X. Bai, B. Guo, H.S. Kim, J. Li, J. Wang, Z. Wang, Int. J. Plast. 184(2025) 104213. [87] J.C. Rao, H.Y. Diao, V. Ocelík, D. Vainchtein, C. Zhang, C. Kuo, Z. Tang, W. Guo, J. D. Poplawsky, Y. Zhou, P.K. Liaw, J.T.M.De Hosson, Acta Mater. 131(2017) 206-220. [88] S. Dasari, A. Sarkar, A. Sharma, B. Gwalani, D. Choudhuri, V. Soni, S. Manda, I. Samajdar, R. Banerjee, Acta Mater. 202(2021) 448-462. [89] K.S. Chan, Metall. Trans. A, Phys. Metall. Mater. Sci. A 21 (1990) 2687-2699. |
| [1] | Xinzhi Li, Xuewei Fang, Jiarong Guo, Binbin Xu, Mugong Zhang, Hongkai Zhang, Ke Huang. On the enhanced strength-ductility synergy of magnesium alloy fabricated by laser powder bed fusion with a static magnetic field [J]. J. Mater. Sci. Technol., 2026, 242(0): 138-155. |
| [2] | 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. |
| [3] | Lian Li, Panpan Ma, Zhiyuan Du, Miaoquan Li. Enhancing strength-ductility synergy of TiBw/Ti55 composites by introducing a bimodal grain structure [J]. J. Mater. Sci. Technol., 2026, 242(0): 290-305. |
| [4] | Nan Chen, Dan Zheng, Pengda Niu, Tiechui Yuan, Ruidi Li. Strength-ductility synergy of additively-manufactured GH3536 superalloys achieved by dual-heterostructures [J]. J. Mater. Sci. Technol., 2026, 246(0): 140-160. |
| [5] | Hangqi Feng, Qingyu Kang, Lingling Zhou, Zhenghong He, Jinliang Du, Muxin Yang, Weijie Li, Ying Li, Fuping Yuan, Xiaolei Wu. Exceptional tensile properties induced by interlayer-compatible deformation in a gradient ultra-nanograined Cu [J]. J. Mater. Sci. Technol., 2026, 248(0): 176-188. |
| [6] | 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(0): 199-211. |
| [7] | Xiaoyang Zhang, Jinchen Yang, Huanqing Li, Ruifeng Dong, Hua Hou, Yuhong Zhao. Multiple mechanisms in Ni-rich high-entropy alloy for optimized strength and ductility across temperatures [J]. J. Mater. Sci. Technol., 2026, 250(0): 1-16. |
| [8] | 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. |
| [9] | 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. |
| [10] | Hadiseh Esmaeilpoor, Mahdi Aghaahmadi, Hyun Jong Yoo, Chan Woong Park, Tae Jin Jang, Seok Su Sohn, Jeoung Han Kim. Mechanical response and microstructural evolution of a composite joint fabricated by green laser dissimilar welding of VCoNi medium entropy alloy and 17-4PH stainless steel [J]. J. Mater. Sci. Technol., 2025, 213(0): 223-240. |
| [11] | Luke Xu, Yan Ma, Zihan Zhang, Muxin Yang, Ping Jiang, Yuntian Zhu, Xiaolei Wu, Fuping Yuan. Superior tensile properties induced by triple-level heterogeneous structures in the CoNiV-based medium-entropy alloy [J]. J. Mater. Sci. Technol., 2025, 214(0): 245-254. |
| [12] | Lingling Fan, Yukai Xiong, Ying Zeng, Ran Ni, Yuwenxi Zhang, Lingbao Ren, Hajo Dieringa, Yuanding Huang, Gaofeng Quan, Xu Zhang. The strength-ductility synergy of magnesium matrix nanocomposite achieved by a dual-heterostructure [J]. J. Mater. Sci. Technol., 2025, 215(0): 296-314. |
| [13] | Yujie Xing, Dingxuan Zhao, Jinwen Lei, Youchuan Mao, Zehua Zheng, Wei Chen, Jinyu Zhang, Xianghong Liu, Jun Sun. Enhancing strength-ductility synergy in metastable β-Ti alloys through β-subgrains-mediated hierarchical α-precipitation [J]. J. Mater. Sci. Technol., 2025, 218(0): 211-226. |
| [14] | 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. |
| [15] | Kang Tu, Bo Li, Zonglin Li,Kaisheng Ming, Shijian Zheng. Dual heterogeneous structure enabled ultrahigh strength and ductility across a broad temperature range in CrCoNi-based medium-entropy alloy [J]. J. Mater. Sci. Technol., 2025, 207(0): 46-59. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
