J. Mater. Sci. Technol. ›› 2026, Vol. 255: 118-133.DOI: 10.1016/j.jmst.2025.07.052
• Research Article • Previous Articles Next Articles
Weihang Lua,c, Qi Ana,b,*, Cunyu Wanga, Naonao Gaoa, Lujun Huanga,b,*, Delong Gonga, Fengbo Sunc, Laibo Sunc, Jingyu Pangd, Hongwei Zhangd, Lin Genga,c
Received:2025-05-21
Revised:2025-07-14
Accepted:2025-07-14
Published:2026-06-01
Online:2025-08-28
Contact:
* E-mail addresses: anqi1993@hit.edu.cn (Q. An), huanglujun@hit.edu.cn (L. Huang) .
Weihang Lu, Qi An, Cunyu Wang, Naonao Gao, Lujun Huang, Delong Gong, Fengbo Sun, Laibo Sun, Jingyu Pang, Hongwei Zhang, Lin Geng. Insights into multi-effects of single element Mo in Ti-rich Ti40Nb30V25-xZr5Mox refractory complex concentrated alloys: Strength-ductility synergy and high-temperature strengthening[J]. J. Mater. Sci. Technol., 2026, 255: 118-133.
| [1] D. Raabe, C.C. Tasan, E.A. Olivetti, Nature 575 (2019) 64-74. [2] T.M. Pollock, Nat. Mater. 15(2016) 809-815. [3] D.B. Miracle, O.N. Senkov, Acta Mater. 122(2017) 448-511. [4] 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. [5] R. Feng, B. Feng, M.C. Gao, C. Zhang, J.C. Neuefeind, J.D. Poplawsky, Y. Ren, K. An, M. Widom, P.K. Liaw, Adv. Mater. 33(2021) 2102401. [6] F. Wang, G.H. Balbus, S. Xu, Y. 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. [7] O.N. Senkov, G.B. Wilks, J.M. Scott, D.B. Miracle, Intermetallics 19 (2011) 698-706. [8] C.C. Juan, M.H. Tsai, C.W. Tsai, W.L. Hsu, C.M. Lin, S.K. Chen, S.J. Lin, J.W. Yeh, Mater. Lett. 184(2016) 200-203. [9] Z. Wang, S. Chen, S. Yang, Q. Luo, Y. Jin, W. Xie, L. Zhang, Q. Li, J. Mater. Sci.Technol. 151(2023) 41-65. [10] Y.C. Liao, P.S. Chen, P.H. Tsai, J.S.C. Jang, K.C. Hsieh, H.W. Chang, C.Y. Chen, J.C. Huang, H.J. Wu, Y.C. Lo, C.W. Huang, I.Y. Tsao, Intermetallics 143 (2022) 107470. [11] S. Zherebtsov, N. Yurchenko, E. Panina, M. Tikhonovsky, N. Stepanov, Intermetallics 116 (2020) 106652. [12] N. Yurchenko, E. Panina, A. Tojibaev, S. Zherebtsov, N. Stepanov, Mater. Res. Lett. 10(2022) 813-823. [13] L. Wang, J. Ding, S. Chen, K. Jin, Q. Zhang, J. Cui, B. Wang, B. Chen, T. Li, Y. Ren, S. Zheng, K. Ming, W. Lu, J. Hou, G. Sha, J. Liang, L. Wang, Y. Xue, E. Ma, Nat. Mater. 22(2023) 950-957. [14] Y. Jia, G. Wang, S. Wu, Y. Mu, Y. Yi, Y. Jia, P.K. Liaw, T. Zhang, C.T. Liu, Appl. Mater. Today 27 (2022) 101429. [15] Y. Jia, C. Ren, S. Wu, Y. Mu, L. Xu, Y. Jia, W. Yan, J. Yi, G. Wang, J. Mater. Sci.Technol. 149(2023) 73-87. [16] S. Zeng, Y. Zhou, H. Li, H. Zhang, H. Zhang, Z. Zhu, J. Mater. Sci.Technol. 130(2022) 64-74. [17] P. Kumar, S.J. Kim, Q. Yu, J. Ell, M. Zhang, Y. Yang, J.Y. Kim, H.K. Park, A.M. Minor, E.S. Park, R.O. Ritchie, Acta Mater. 245(2023) 118620. [18] W. Lu, Q. An, C. Wang, S. Wang, L. Huang, F. Sun, R. Chen, L. Geng, Mater. Sci. Eng. A 860 (2022) 144335. [19] W. Lu, D. Liu, C. Wang, Q. An, R.O. Ritchie, L. Huang, S. Jin, N. Gao, L. Sun, L. Geng, Compos. Part B-Eng. 281(2024) 111555. [20] W. Huang, X. Wang, J. Qiao, X. Shi, P.K. Liaw, Y. Wu, Mater. Sci. Eng. A 902 (2024) 146634. [21] C. Zhang, H. Wang, X. Wang, Y.T. Tang, Q. Yu, C. Zhu, M. Xu, S. Zhao, R. Kou, X. Wang, B.E.MacDonald, R.C. Reed, K.S. Vecchio, P. Cao, T.J. Rupert, E.J. Lavernia, Acta Mater. 245(2023) 118602. [22] Y. Jia, S. Wu, Y. Mu, L. Xu, C. Ren, K. Sun, J. Yi, Y. Jia, W. Yan, G. Wang, Adv. Sci. 10(2023) 2207535. [23] L. Huang, Q. An, L. Geng, S. Wang, S. Jiang, X. Cui, R. Zhang, F. Sun, Y. Jiao, X. Chen, C. Wang, Adv. Mater. 33 (2021) 20 0 0688. [24] Q. Hu, S. Guo, J.L. Guo, F.F. Luo, J.W. Wang, J. Alloy. Compd. 906(2022) 164186. [25] J.O. Andersson, T. Helander, L. Höglund, P. Shi, B. Sundman, Calphad 26 (2002) 273-312. [26] S.J. Clark, M.D. Segall, C.J. Pickard, P.J. Hasnip, M.I.J.Probert, K. Refson, M.C. Payne, Z. Krist. Cryst. Mater. 220(2005) 567-570. [27] 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. [28] P.P. Cao, H.L. Huang, S.H. Jiang, X.J. Liu, H. Wang, Y. Wu, Z.P. Lu, J. Mater. Sci.Technol. 122(2022) 243-254. [29] Y. Zhou, S. Zeng, H. Li, H. Zhang, H. Zhang, Z. Zhu, Mater. Sci. Eng. A 874 (2023) 145091. [30] Q. Shen, X. Wu, Q. Wei, J. Zhang, J. Xu, X. Wang, G. Luo, Mater. Sci. Eng. A 882 (2023) 145448. [31] M. Wang, Z.L. Ma, Z.Q. Xu, X.W. Cheng, Scr. Mater. 191(2021) 131-136. [32] O.N. Senkov, S. Gorsse, D.B. Miracle, Acta Mater. 175(2019) 394-405. [33] T. Li, S. Wang, W. Fan, Y. Lu, T. Wang, T. Li, P.K. Liaw, Acta Mater. 246(2023) 118728. [34] S. Wei, S.J. Kim, J. Kang, Y. Zhang, Y. Zhang, T. Furuhara, E.S. Park, C.C. Tasan, Nat. Mater. 19(2020) 1175-1181. [35] B. Wang, Q. Wang, N. Lu, X. Liang, B. Shen, J. Mater. Sci.Technol. 123(2022) 191-200. [36] Z. An, S. Mao, T. Yang, C.T. Liu, B. Zhang, E. Ma, H. Zhou, Z. Zhang, L. Wang, X. Han, Mater. Horiz. 8(2021) 948-955. [37] G. Taylor, Proc. R. Soc. Lond. A 145 (1934) 388-404. [38] Q. Ding, Y. Zhang, X. Chen, X. Fu, D. Chen, S. Chen, L. Gu, F. Wei, H. Bei, Y. Gao, M. Wen, J. Li, Z. Zhang, T. Zhu, R.O. Ritchie, Q. Yu, Nature 574 (2019) 223-227. [39] D. Cui, X. Liu, Z. Yang, B. Guo, Z. Wang, J. Li, J. Wang, F. He, Scr. Mater. 244(2024) 116031. [40] Z. Lei, X. Liu, Y. Wu, H. Wang, S. Jiang, S. Wang, X. Hui, Y. Wu, B. Gault, P. Kontis, D. Raabe, L. Gu, Q. Zhang, H. Chen, H. Wang, J. Liu, K. An, Q. Zeng, T.G. Nieh, Z. Lu, Nature 563 (2018) 546-550. [41] C. Wang, W. Lu, F. Sun, L. Huang, Q. An, F. Meng, J. Jin, J. Pang, H. Zhang, L. Geng, Mater. Sci. Eng. A 941 (2025) 148574. [42] Y. Jia, G. Li, C. Ren, Y. Mu, K. Sun, S. Wu, X. Bian, Y. Jia, G. Wang, J. Mater. Sci.Technol. 206(2025) 234-247. [43] R. Huang, L. Zhang, A. Amar, P.K. Liaw, T. Wang, T. Li, Y. Lu, Int. J. Plast. 181(2024) 104079. [44] S.S. Sohn, H. Song, B.C. Suh, J.H. Kwak, B.J. Lee, N.J. Kim, S. Lee, Acta Mater. 96(2015) 301-310. [45] J.P. Couzinié, L. Lilensten, Y. Champion, G. Dirras, L. Perrière, I. Guillot, Mater. Sci. Eng. A 645 (2015) 255-263. [46] V.V. Bulatov, L.L. Hsiung, M. Tang, A. Arsenlis, M.C. Bartelt, W. Cai, J.N. Florando, M. Hiratani, M. Rhee, G. Hommes, T.G. Pierce, T.D. De La Rubia, Nature 440 (2006) 1174-1178. [47] D.D. Zhang, J.Y. Zhang, J. Kuang, G. Liu, J. Sun, Acta Mater. 220(2021) 117288. [48] X.F. Xie, Z.M. Xie, R. Liu, Q.F. Fang, C.S. Liu, W.Z. Han, X. Wu, Acta Mater. 228(2022) 117765. [49] P. Kumar, S.J. Kim, Q. Yu, J. Ell, M. Zhang, Y. Yang, J.Y. Kim, H.-K. Park, A.M. Minor, E.S. Park, R.O. Ritchie, Acta Mater. 245(2023) 118620. [50] J. Cui, B. Dou, S. Liu, J. Zhou, N. Cui, S. Sun, H. Cai, L. Wang, Y. Xue, J. Alloy. Compd. 1004(2024) 175979. [51] M. Akmal, H.W. Seong, H.J. Ryu, J. Mater. Sci.Technol. 109(2022) 176-185. [52] Y.L. Hu, L.H. Bai, Y.G. Tong, D.Y. Deng, X.B. Liang, J. Zhang, Y.J. Li, Y.X. Chen, J. Alloy. Compd. 827(2020) 153963. [53] Y. Tong, L. Bai, X. Liang, Y. Chen, Z. Zhang, J. Liu, Y. Li, Y. Hu, Intermetallics 126 (2020) 106928. [54] J. Zhang, Q. Xu, Y. Hu, C. Mao, X. Zhou, X. Lu, M. Zhang, Y. Tong, K. Tang, P. Peng, Carbon 153 (2019) 104-115. [55] Y. Tian, B. Xu, Z. Zhao, Int. J. Refract. Met. Hard Mater. 33(2012) 93-106. [56] L.R. Dong, J. Zhang, Y.Z. Li, Y.X. Gao, M. Wang, M.X. Huang, J.S. Wang, K.X. Chen, Science 385 (2024) 422-427. [57] S.C. Deevi, Prog. Mater. Sci. 118(2021) 100769. [58] S. Jiang, L. Huang, X. Gao, G. Liu, R. Zhang, Y. Jiao, S. Peng, Q. An, S. Wang, L. Geng, Acta Mater. 203(2021) 116456. [59] H. Li, Y. Han, H. Feng, G. Zhou, Z. Jiang, M. Cai, Y. Li, M. Huang, J. Mater. Sci.Technol. 141(2023) 184-192. [60] S. Xu, Y. Su, W.R. Jian, I.J. Beyerlein, Acta Mater. 202(2021) 68-79. [61] M. Chandran, S.K. Sondhi, J. Appl. Phys. 109(2011) 103525. [62] S.H. Zhang, D. Legut, R.F. Zhang, Comput. Phys. Commun. 240(2019) 60-73. [63] V. Vítek, Philos. Mag. 18(1968) 773-786. [64] S.P. Wang, J. Xu, Intermetallics 95 (2018) 59-72. [65] S. Zeng, Y. Zhou, H. Gao, H. Li, J. Chen, H. Zhang, H. Fu, A. Wang, H. Zhang, H. Zhao, Z. Zhu, Sci. China Mater. 67(2024) 311-320. [66] S.M. Chen, Z.J. Ma, S. Qiu, L.J. Zhang, S.Z. Zhang, R. Yang, Q.M. Hu, Acta Mater. 225(2022) 117582. [67] W. Lai, F. Vogel, X. Zhao, B. Wang, Y. Yi, D. You, X. Tong, W. Li, X. Yu, X. Wang, Mater. Res. Lett. 10(2022) 133-140. [68] F.R.N.Nabarro, Proc. Phys. Soc. 59(1947) 256. [69] X. Yan, P.K. Liaw, Y. Zhang, J. Mater. Sci.Technol. 110(2022) 109-116. [70] T. Li, T. Liu, S. Zhao, Y. Chen, J. Luan, Z. Jiao, R.O. Ritchie, L. Dai, Nat. Commun. 14(2023) 3006. [71] A. Poudel, P.R. Gradl, S. Shao, N. Shamsaei, Mater. Sci. Eng. A 889 (2024) 145826. [72] X. Chen, L. Huang, S. Ma, F. Sun, S. Wang, L. Geng, J. Mater. Sci.Technol. 206(2025) 1-14. [73] F. Otto, A. Dlouhý, Ch. Somsen, H.Bei, G. Eggeler, E.P. George, Acta Mater. 61(2013) 5743-5755. [74] Z. Xia, Y. Cui, Y. Shen, M. Arroussi, R. Liu, L. Yang, Q. Jia, R. Yang, Mater. Sci. Eng. A 830 (2022) 142303. [75] J. Han, J. Dong, S. Zhang, C. Zhang, S. Xiao, Y. Chen, Mater. Sci. Eng. A 715 (2018) 41-48. |
| [1] | Zhanxuan Wang, Yongkang Zhou, Heling Zheng, Mingyang Wang, Xintian Li, Xiancheng Li, Zhengkun Li, Zhonghua Du, Lizhi Xu, Zhengwang Zhu. Mechanical response and deformation mechanism of Zr-Ti-Nb-Ta-Al refractory high-entropy alloy under the synergistic effects of temperature and strain rate [J]. J. Mater. Sci. Technol., 2026, 240(0): 65-79. |
| [2] | Yitong Zou, Langlang Huo, Bing Liu, Mengdong Ma, Song Zhao, Guangqian Li, Zitai Liang, Yuqing Chang, Baozhong Li, Hao Ding, Ke Tong, Lei Sun, Zewen Zhuge, Hang Zhou, Zhisheng Zhao, Yongjun Tian. Disordered graphitic carbon/nanodiamond composites: A material of exceptional strength and electrical conductivity [J]. J. Mater. Sci. Technol., 2026, 240(0): 80-86. |
| [3] | Yi Zhou, Guangjie Huang, Shiwei Pan, Yunchang Xin, Xinde Huang, Yu Cao. Revisiting the homogenization process in 2024 Al alloy: Role of temperatures on phase transformation and mechanical performance [J]. J. Mater. Sci. Technol., 2026, 240(0): 129-143. |
| [4] | Jietao Feng, Canfeng Fang, Rong Wang, Yuanjiang Tu, Xiao Feng, Wu Gao, Min Liu, Yingmin Wang. Modification of detrimental π-Fe phase in Al-7Si-0.6Mg alloy [J]. J. Mater. Sci. Technol., 2026, 240(0): 313-322. |
| [5] | Moxi Yele, Gegen Sarula, Jie Yang, Long Yang, Hao Zhang, Longfu Chen, Xiangmei Zhang, Jiahui Wang, Tianyu Wang, Chengzhong Jin, Benliang Liang, Luting Yan. Integrated structural-functional MXene-GNs/ANF flexible composite film with enhanced thermal conductivity and electromagnetic interference shielding performance [J]. J. Mater. Sci. Technol., 2026, 241(0): 200-210. |
| [6] | Canjuan Xiao, Weijin Cai, Ruidi Li, Song Ni, Wenting Jiang, Zhangwei Wang, Khurram Yaqoob, Zibin Chen, Yi Huang, Min Song. Semi-coherent and coherent nanoprecipitation induced superior strength-ductility combination in additively manufactured CoCrMoW alloy [J]. J. Mater. Sci. Technol., 2026, 242(0): 1-14. |
| [7] | Dengke Liu, Xuewen Zong, Pengsheng Xue, Zhongtang Gao, Yan Zhang, Hongzhi Zhou, Bingheng Lu. Effect of heat treatment on microstructure evolution, strengthening-toughening and corrosion behavior of high-strength LA103Z Mg-Li alloy fabricated by wire-arc additive manufacturing [J]. J. Mater. Sci. Technol., 2026, 243(0): 115-128. |
| [8] | Qiang Wang, Zhao-Hui Zhang, Xing-Wang Cheng, Xiao-Tong Jia, Yang-Yu He, Jin-Zhao Zhou, Yuan-Hao Sun. Fabrication of high-performance (TiC + (TiZr)5Si3)/TA15 composites via spark plasma extrusion [J]. J. Mater. Sci. Technol., 2026, 244(0): 142-148. |
| [9] | Z.X. Xie, X.G. Fan, L. Wang, M. Zhan, F. Ma. Stepwise cooling spinning to achieve isotropic strength-ductility synergy of titanium alloy tube [J]. J. Mater. Sci. Technol., 2026, 244(0): 156-172. |
| [10] | Zheng Tian, Lichu Zhou, Caijuan Shi, Runguang Li, Fei Yang, Yiping Xia, Xiaodan Zhang, Jianqing Jiang, Feng Fang. Achieving a saturated tensile strength of face-centered cubic Al2.5Ti2.5(CoCrFeNi)95 high-entropy alloy via severe cold drawing [J]. J. Mater. Sci. Technol., 2026, 244(0): 173-179. |
| [11] | Yiying Zhu, Bailin Wang, Huancai Li, Guijun Bi, Guiyong Xiao, Chuanzhong Chen, Xianghai An, Fei Weng. Development of CoCrNi-based alloys: Insights into elemental doping and additive manufacturing [J]. J. Mater. Sci. Technol., 2026, 245(0): 88-109. |
| [12] | Wentao Chen, Kehuan Wang, Gang Liu. Enhancement of high-temperature performance in titanium alloys through rapid heating: A novel boundary engineering approach [J]. J. Mater. Sci. Technol., 2026, 245(0): 249-255. |
| [13] | Chengde Gao, Jingwei Hu, Xiong Yao, Hao Pan, Cijun Shuai. Competitive microstructural evolution on the soft magnetic and mechanical properties of FeSiB amorphous/nanocrystalline alloys fabricated by laser-beam powder bed fusion [J]. J. Mater. Sci. Technol., 2026, 246(0): 28-43. |
| [14] | 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. |
| [15] | Liwei Wang, Boxin Wei, Dong Wang, Lei Chen, Yujin Wang. (Ti, Ta)C-(Ti, Ta)B2-SiC based ceramics with core-rim structure by in-situ reaction sintering at low temperature: Formation mechanism and enhanced mechanical properties [J]. J. Mater. Sci. Technol., 2026, 246(0): 167-186. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
