J. Mater. Sci. Technol. ›› 2026, Vol. 265: 165-176.DOI: 10.1016/j.jmst.2025.11.044
• Research Article • Previous Articles Next Articles
Xiaoyue Lia, Zhaolong Maa,b,c,d,*, Yuxue Liua, Haiyang Lia, Xingwang Chenga,b,c,d
Received:2025-06-27
Revised:2025-11-21
Accepted:2025-11-21
Published:2026-09-10
Online:2025-12-02
Contact:
* E-mail address: z.l.ma@bit.edu.cn (Z. Ma).
Xiaoyue Li, Zhaolong Ma, Yuxue Liu, Haiyang Li, Xingwang Cheng. A two-step high-throughput design strategy of refractory medium-entropy composites with strength-plasticity synergy from room temperature to 2000 °C[J]. J. Mater. Sci. Technol., 2026, 265: 165-176.
| [1] Q. Zeng, X. Chen, Prog. Aerosp. Sci. 140(2023) 100927. [2] A.B. Peters, D. Zhang, S. Chen, C. Ott, C. Oses, S. Curtarolo, I. McCue, T.M. Pollock, S.E. Prameela, Nat. Commun. 15(2024) 3328. [3] J. Kim, S. Jeong, W.D. Kim, J. Choi, Y. Hwang, Aerosp. Sci. Technol. 145(2024) 108889. [4] X. Wang, Y. He, Y. Zheng, J. Ma, H.I. Schlaberg, Chin. J. Aeronaut. 27(2014) 1401-1412. [5] X. Zheng, R. Bai, D. Wang, X. Cai, F. Wang, M. Xia, J. Yu, Rare Metal Mat. Eng. 40(2011) 1871-1875. [6] A. Luo, K.S. Shin, D.L. Jacobson, Mater. Sci. Eng. A 148 (1991) 219-229. [7] D.B. Miracle, O.N. Senkov, C. Frey, S. Rao, T.M. Pollock, Acta Mater. 266(2024) 119692. [8] O.N. Senkov, D.B. Miracle, K.J. Chaput, J.-P. Couzinie, J.Mater. Res. 33(2018) 3092-3128. [9] S. Praveen, H.S. Kim, Adv. Eng. Mater. 20(2018) 1700645. [10] M. Srikanth, A.R. Annamalai, A. Muthuchamy, C.-P. Jen, Crystals 11 (2021) 612. [11] Y. Tian, W. Zhou, Q. Tan, M. Wu, S. Qiao, G. Zhu, A. Dong, D. Shu, B. Sun, Trans. Nonferrous Met. Soc. China 32 (2022) 3487-3515. [12] O.N. Senkov, G.B. Wilks, J.M. Scott, D.B. Miracle, Intermetallics 19 (2011) 698-706. [13] M. Wang, Z.L. Ma, Z.Q. Xu, X.W. Cheng, Scr. Mater. 191(2021) 131-136. [14] S.H. Chen, J.S. Zhang, S. Guan, T. Li, J.Q. Liu, F.F. Wu, Y.C. Wu, Mater. Sci. Eng. A 835 (2022) 142701. [15] L. Zhan, J. Hou, T. Wu, M. Zhang, J. Wu, G. Wang, Y. Chen, H. Li, X. Xu, T. Zhou, C. Wang, J. Alloy. Compd. 1010(2025) 177173. [16] S. Chen, X. Yang, K. Dahmen, P. Liaw, Y. Zhang, Entropy 16 (2014) 870-884. [17] Y. Wan, J. Mo, X. Wang, Z. Zhang, B. Shen, X. Liang, Acta Metall. Sin. Engl. Lett. 34(2021) 1585-1590. [18] C. Li, S. Chen, X. Chen, X. Yue, J. Liu, J. Zhang, Y. Wu, Intermetallics 167 (2024) 108213. [19] S. Jain, R. Jain, K.R. Rao, A. Bhowmik, Mater. Today Commun. 41(2024) 110813. [20] Y. Chen, J. Wang, W. Zheng, Q. Li, M. Yu, T. Ying, X. Zeng, Acta Mater. 263(2024) 119521. [21] I. Toda-Caraballo, P.E.J.Rivera-Díaz-del-Castillo, Acta Mater. 85(2015) 14-23. [22] F. Maresca, W.A. Curtin, Acta Mater. 182(2020) 235-249. [23] S. Sheikh, S. Shafeie, Q. Hu, J. Ahlström, C. Persson, J. Veselý, J. Zýka, U. Klement, S. Guo, J. Appl. Phys. 120(2016) 164902. [24] X. Huang, L. Zheng, H. Xu, H. Fu, Mater. Des. 239(2024) 112797. [25] E. Kozeschnik, W. Rindler, B. Buchmayr, Int. J. Mater. Res. 98(2007) 826-831. [26] Z. Su, C. Jin, Z. Zeng, S. Zhang, X. Meng, S. Xu, J. Alloy. Compd. 996(2024) 174824. [27] H. Hyer, L. Zhou, A. Mehta, S. Park, T. Huynh, S. Song, Y. Bai, K. Cho, B. McWilliams, Y. Sohn, Acta Mater. 208(2021) 116698. [28] S. Kou, Acta Mater. 88(2015) 366-374. [29] G. Luo, S. Jiang, Q. Wei, K. Kang, Y. Qian, J. Zhang, Y. Sun, Q. Shen, Int. J. Refract. Met. Hard Mater. 99(2021) 105574. [30] H.T. He, J.X. Fang, Z. Yang, T. Sun, B. Ma, H.T. Chen, T.T. Guo, W.B. Wang, Y.J. Wang, Mater. Sci. Eng. A 915 (2024) 147217. [31] Y. Wan, X. Wang, Z. Zhang, J. Mo, B. Shen, X. Liang, J. Alloy. Compd. 889(2021) 161645. [32] Y. Wan, Y. Cheng, Y. Chen, Z. Zhang, Y. Liu, H. Gong, B. Shen, X. Liang, Engineering 30 (2023) 110-120. [33] Z.Q. Xu, Z.L. Ma, Y. Tan, M. Wang, Y. Zhao, X.W. Cheng, J. Alloy. Compd. 900(2022) 163517. [34] X. Wang, T. Li, D. Xu, Y. Wu, Q. Wang, P.K. Liaw, Y. Lu, Acta Mater. 296(2025) 121229. [35] D. Xu, X. Wang, Y. Lu, Adv. Funct. Mater. 34(2024) 2408941. [36] X. Wang, G. Luo, Q. Wei, Y. Sun, W. Huang, J. Peng, J. Zhang, Q. Shen, Scr. Mater. 255(2025) 116393. [37] B. Sun, J. Mo, Q. Wang, Y. Chen, Z. Zhang, B. Shen, X. Liang, J. Mater. Sci.Technol. 166(2023) 145-154. [38] L. Qi, D.C. Chrzan, Phys. Rev. Lett. 112(2014) 115503. [39] K.R. Ravi, R.M. Pillai, K.R. Amaranathan, B.C. Pai, M. Chakraborty, J. Alloy. Compd. 456(2008) 201-210. [40] J. Zhang, Z. Jie, M. Liu, M. Guo, Trans. Nonferrous Met. Soc. China 34 (2024) 2881-2888. [41] A.K. Dahle, S. Karlsen, L. Arnberg, Int. J. Cast Met.Res. 9(1996) 103-112. [42] S. Croft, Phys. Bull. 38(1987) 149-149. [43] C. Acemi, B. Vela, E. Norris, W. Trehern, K.C. Atli, C. Cleek, R. Arróyave, I. Karaman, Acta Mater. 281(2024) 120379. [44] Biochem. Educ. 21(1993) 109-110, doi: 10.1016/0307-4412(93)90067-A. [45] C.N. Singman, J. Chem. Educ. 61(1984) 137. [46] H. Cui, N. Liu, R. Zhou, D. Li, J. Cheng, Comput. Mater. Sci. 202(2022) 110940. [47] Y. Waseda, K. Hirata, M. Ohtani, High Temp.-High Press. 7(1975) 221-226. [48] J.-O. Andersson, T. Helander, L. Höglund, P. Shi, B. Sundman, Calphad 26 (2002) 273-312. [49] H. Mao, H.-L. Chen, Q.Chen, J. Phase Equilibria Diffus. 38(2017) 353-368. [50] F. Yang, J. Wang, Y. Zhang, Z. Wu, Z. Zhang, F. Zhao, J. Huot, J. Grobiv´c Novakovi´c, N. Novakovi´c, Int. J. Hydrog. Energy 47 (2022) 11236-11249. [51] J. Emmerlich, D. Music, A. Houben, R. Dronskowski, J.M. Schneider, Phys. Rev. B 76 (2007) 224111. [52] S. Jiang, B. Wu, Z. Xu, G. Duan, X. Du, P. Mao, C. Esling, J. Mater. Res.Technol. 33(2024) 5193-5203. [53] X. Zhang, J. Tian, M.T. Xue, F. Jiang, S.Z. Li, B.Z. Zhang, J. Ding, X.P. Li, E. Ma, X.D. Ding, J. Sun, Acta Metall. Sin. 58(2022) 1253-1260. [54] Y. Zou, P. Okle, H. Yu, T. Sumigawa, T. Kitamura, S. Maiti, W. Steurer, R. Spolenak, Scr. Mater. 128(2017) 95-99. [55] D. Narayanan, A. Martinez, B. Mansoor, I. Karaman, H. Castaneda, Electrochim. Acta 522 (2025) 145942. [56] A. Elsayed, T. Guleria, H. Tian, B.P. Sahu, K.C. Atli, A. Olleak, A. Elwany, R. Arroyave, D. Lagoudas, I. Karaman, Acta Mater. 296(2025) 121175. [57] L. Kaserer, D. Brennsteiner, J. Braun, V. Goettgens, I. Letofsky-Papst, B. Mayr-Schmoelzer, B. Distl, G. Leichtfried, Int. J. Refract. Met. Hard Mater. 130(2025) 107156. [58] C. Morando, O. Fornaro, O. Garbellini, H. Palacio, Procedia Mater. Sci. 8(2015) 959-967. [59] G. Han, M. Li, H. Liu, W. Zhang, L. He, F. Tian, Y. Liu, Y. Yu, W. Yang, S. Guo, Adv. Mater. 34(2022) 2202943. [60] J. Xue, Z. Feng, J. Tang, C. Tang, Z. Zhao, J. Alloy. Compd. 874(2021) 159879. [61] T.J.B.Holland, S.A.T.Redfern, Mineral. Mag. 61(1997) 65-77. [62] A. Takeuchi, A. Inoue, Mater. Trans. 46(2005) 2817-2829. [63] Q. Wei, X. Xu, Q. Shen, G. Luo, J. Zhang, J. Li, Q. Fang, C.-T. Liu, M. Chen, T.-G. Nieh, J. Chen, Sci. Adv. 8 (2022) eabo2068. [64] C. Yang, L.M. Kang, X.X. Li, W.W. Zhang, D.T. Zhang, Z.Q. Fu, Y.Y. Li, L.C. Zhang, E.J. Lavernia, Acta Mater. 132(2017) 491-502. [65] Y. Shen, Z. Wang, X. Wang, X. Zhang, Y. Wu, J. Zhu, Y. Zhao, W. Liu, X. Liu, H. Wang, S. Jiang, Z. Lu, J. Mater. Sci.Technol. 232(2025) 191-201. [66] Advancing Standards Transforming Markets, ASTM E8/E8M-24: standard test methods for tension testing of metallic materials, 2024, https://doi.org/10.1520/E0008_E0008M-24. [67] T. Li, W. Jiao, J. Miao, Y. Lu, E. Guo, T. Wang, T. Li, P.K. Liaw, Mater. Sci. Eng. A 827 (2021) 142061. [68] O.N. Senkov, S.I. Rao, T.M. Butler, K.J. Chaput, J. Alloy. Compd. 808(2019) 151685. [69] H. He, J. Wang, Y. Cao, X. Yang, G. Zhao, W. Yang, J. Fang, J. Alloy. Compd. 931(2023) 167421. [70] Z.D. Han, N. Chen, S.F. Zhao, L.W. Fan, G.N. Yang, Y. Shao, K.F. Yao, Intermetallics 84 (2017) 153-157. [71] K.-K. Tseng, C.-C. Juan, S. Tso, H.-C. Chen, C.-W. Tsai, J.-W. Yeh, Entropy 21 (2018) 15. [72] C.-C. Juan, M.-H. Tsai, C.-W. Tsai, C.-M. Lin, W.-R. Wang, C.-C. Yang, S.-K. Chen, S.-J. Lin, J.-W. Yeh, Intermetallics 62 (2015) 76-83. [73] Y. Liu, Y. Zhang, H. Zhang, N. Wang, X. Chen, H. Zhang, Y. Li, J. Alloy. Compd. 694(2017) 869-876. [74] O.N. Senkov, S.V. Senkova, D.B. Miracle, C. Woodward, Mater. Sci. Eng. A 565 (2013) 51-62. [75] O.N. Senkov, S.I. Rao, G.H. Balbus, R. Wheeler, E.J. Payton, Materialia 27 (2023) 101688. [76] H. Chen, A. Kauffmann, B. Gorr, D. Schliephake, C. Seemüller, J.N. Wagner, H.-J. Christ, M.Heilmaier, J. Alloy. Compd. 661(2016) 206-215. [77] 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. [78] O.N. Senkov, C.F. Woodward, Mater. Sci. Eng. A 529 (2011) 311-320. [79] M. Wang, Z. Ma, Z. Xu, X. Cheng, J. Alloy. Compd. 803(2019) 778-785. [80] N.Yu. Yurchenko, N.D. Stepanov, S.V. Zherebtsov, M.A. Tikhonovsky, G.A. Salishchev, Mater. Sci. Eng. A 704 (2017) 82-90. [81] N.D. Stepanov, N.Y. Yurchenko, D.V. Skibin, M.A. Tikhonovsky, G.A. Salishchev, J. Alloy. Compd. 652(2015) 266-280. [82] H.T. He, J.X. Fang, J.X. Wang, T. Sun, Z. Yang, B. Ma, H.T. Chen, M. Wen, Int. J. Refract. Met. Hard Mater. 116(2023) 106349. [83] N. De Leon, B. Wang, C.R. Weinberger, L.E. Matson, G.B. Thompson, Acta Mater. 61(2013) 3905-3913. [84] L.R. Dong, J. Zhang, Y.Z. Li, Y.X. Gao, M. Wang, M.X. Huang, J.S. Wang, K.X. Chen, Science 1979 385(2024) 422-427. |
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