J. Mater. Sci. Technol. ›› 2025, Vol. 224: 35-45.DOI: 10.1016/j.jmst.2024.11.014
• Research Article • Previous Articles Next Articles
Yao-Jie Konga, Hong-Ying Lia,b,c,*, Hui-Jin Taoa, Wen-Jian Liua
Received:
2024-09-07
Revised:
2024-11-01
Accepted:
2024-11-01
Published:
2025-07-20
Online:
2025-01-16
Contact:
*E-mail address: lhying@csu.edu.cn (H.-Y. Li)
Yao-Jie Kong, Hong-Ying Li, Hui-Jin Tao, Wen-Jian Liu. The precipitation evolution and coarsening resistance of dilute Al-Zr-Er-Yb (-Sc) alloys[J]. J. Mater. Sci. Technol., 2025, 224: 35-45.
[1] J. Jin, S.N. Geng, L.S. Shu, P. Jiang, X.Y. Shao, C. Han, L.Y. Ren, Y.T. Li, L. Yang, X.Q. Wang, Nat. Commun. 15 (2024) 1748. [2] R. Cui, L. Wang, Y. Su, B. Li, L. Yao, B. Wang, L. Luo, R. Chen, J. Guo, X. Tan, Acta Mater. 266 (2024) 119682. [3] Y.L. Müller, A.R. Natarajan, Acta Mater. 274 (2024) 119995. [4] J.P. Hou, L. Chen, Q. Wang, Y. Zhang, X.H. Zhou, J. Hong, Z.J. Zhang, Q.L. Yuan, Z.F. Zhang, Mater. Sci. Eng. A 849 (2022) 143490. [5] S.Y. Jiang, R.H. Wang, Sci. Rep. 8 (2018) 6202. [6] K.E. Knipling, D.C. Dunand, D.N. Seidman, Acta Mater. 56 (2008) 1182-1195. [7] L.P. Ding, M.Q. Zhao, F.J.H.Ehlers, Z.H. Jia, Z.Z. Zhang, Y.Y. Weng, D. Schryvers, Q.Liu, H. Idrissi, J. Mater. Sci. Technol. 185 (2024) 186-206. [8] B. Forbord, H. Hallem, J. Royset, K. Marthinsen, Mater. Sci. Eng. A 475 (2008) 241-248. [9] Q. Shao, E.M. Elgallad, A. Maltais, X.G. Chen, J. Mater. Res.Technol. 25 (2023) 7528-7545. [10] A.R. Farkoosh, D.C. Dunand, D.N. Seidman, Acta Mater. 219 (2021) 117268. [11] Y. Deng, Z.M. Yin, Q.L. Pan, G.F. Xu, Y.L. Duan, Y.J. Wang, J. Alloys Compd. 695 (2017) 142-153. [12] M. Zha, T. Tian, H.L. Jia, H.M. Zhang, H.Y. Wang, J. Mater. Sci.Technol. 140 (2023) 67-78. [13] A. Deschamps, L. Lae, P. Guyot, Acta Mater. 55 (2007) 2775-2783. [14] Z.H. Gao, H.Y. Li, J.J. Liu, X.C. Lu, X. Ou-Yang, J. Alloys Compd. 592 (2014) 100-104. [15] K.E. Knipling, R.A. Karnesky, C.P. Lee, D.C. Dunand, D.N. Seidman, Acta Mater. 58 (2010) 5184-5195. [16] R.Y. Barkov, A.V. Mikhaylovskaya, O.A. Yakovtseva, I.S. Loginova, A.S. Prosviryakov, A.V. Pozdniakov, J. Alloys Compd. 855 (2021) 157367. [17] C. Booth-Morrison, D.C. Dunand, D.N. Seidman, Acta Mater. 59 (2011) 7029-7042. [18] D. Erdeniz, W. Nasim, J. Malik, A.R. Yost, S. Park, A. De Luca, N.Q. Vo, I. Kara-man, B.Mansoor, D.N. Seidman, D.C. Dunand, Acta Mater. 124 (2017) 501-512. [19] L. Liu, J.T. Jiang, X.Y. Cui, B. Zhang, L. Zhen, S.P. Ringer, J. Mater. Sci.Technol. 99 (2022) 61-72. [20] H.Y. Li, D.S. Huang, W. Kang, J.J. Liu, X. Ou Yang, D.W. Li, J. Mater. Sci.Technol. 32 (2016) 1049-1053. [21] S.P. Wen, K.Y. Gao, H. Huang, W. Wang, Z.R. Nie, J. Alloys Compd. 574 (2013) 92-97. [22] M. Leibner, M. Vlach, V. Kodetová, H. Kudrnová, J. Veselý, S. Zikmund, J. Čížek, O. Melikhova, F. Lukáč, Mater. Charact. 186 (2022) 111781. [23] M.E.Van Dalen, D.C. Dunand, D.N. Seidman, J. Mater. Sci. Technol. 41 (2006) 7814-7823. [24] M.E.Van Dalen, T.Gyger, D.C. Dunand, D.N. Seidman, Acta Mater. 59 (2011) 7615-7626. [25] Q. Luo, Y. Guo, B. Liu, Y. Feng, J. Zhang, Q. Li, K. Chou, J. Mater. Sci.Technol. 44 (2020) 171-190. [26] Y. Li, B. Hu, B. Liu, A. Nie, Q. Gu, J. Wang, Q. Li, Acta Mater. 187 (2020) 51-65. [27] J. Xu, Y. Li, K. Ma, Y. Fu, E. Guo, Z. Chen, Q. Gu, Y. Han, T. Wang, Q. Li, Scr. Mater. 187 (2020) 142-147. [28] Y. Li, Y. Jiang, B. Liu, Q. Luo, B. Hu, Q. Li, J. Mater. Sci.Technol. 65 (2021) 190-201. [29] C.M. Zhang, Y. Jiang, F.H. Cao, T. Hu, Y.R. Wang, D.F. Yin, J. Mater. Sci.Technol. 35 (2019) 930-938. [30] G. Kresse, J. Furthmüller, Comput. Mater. Sci. 6 (1996) 15-50. [31] G. Kresse, J. Furthmüller, Phys. Rev. B 54 (1996) 11169-11186. [32] J. Peng, S. Bahl, A. Shyam, J.A. Haynes, D. Shin, Acta Mater. 196 (2020) 747-758. [33] T.X. Yang, M.Z. Wei, Z.Y. Ding, X.J. Han, J.G. Li, Calphad 69 (2020) 101768. [34] X.Y. Zhang, X.W. Ren, H. Li, Y.X. Zhao, Y.C. Huang, Y. Liu, Z.B. Xiao, Appl. Surf. Sci. 515 (2020) 146017. [35] A. De Luca, D.C. Dunand, D.N. Seidman, Acta Mater. 119 (2016) 35-42. [36] S.P. Wen, K.Y. Gao, Y. Li, H. Huang, Z.R. Nie, Scr. Mater. 65 (2011) 592-595. [37] L. Liu, J.T. Jiang, B. Zhang, W.Z. Shao, L. Zhen, J. Mater. Sci.Technol. 35 (2019) 962-971. [38] M.E.Van Dalen, R.A. Karnesky, J.R. Cabotaje, D.C. Dunand, D.N. Seidman, Acta Mater. 57 (2009) 4081-4089. [39] K.E. Knipling, D.C. Dunand, D.N. Seidman, Int. J. Mater. Res. 97 (2006) 246-265. [40] E. Clouet, L. Laé, T. Épicier, W. Lefebvre, M. Nastar, A. Deschamps, Nat. Mater. 5 (2006) 482-488. [41] K.E. Knipling, D.N. Seidman, D.C. Dunand, Acta Mater. 59 (2011) 943-954. [42] N.Q. Vo, D. Bayansan, A. Sanaty-Zadeh, E.H. Ramos, D.C. Dunand, Materialia 4 (2018) 65-69. [43] E.A. Marquis, D.N. Seidman, Acta Mater. 49 (2001) 1909-1919. [44] M.E. Krug, Z. Mao, D.N. Seidman, D.C. Dunand, Acta Mater. 79 (2014) 382-395. [45] R.Z. Chao, X.H. Guan, R.G. Guan, D. Tie, C. Lian, X. Wang, J. Zhang, Trans. Non-ferrous Met. Soc. China 24 (2014) 3164-3169. [46] M.E. Krug, A. Werber, D.C. Dunand, D.N. Seidman, Acta Mater. 58 (2010) 134-145. [47] C.M. Zhang, Y. Jiang, X.H. Guo, K.X. Song, Acta Metall. Sin. (Engl. Lett.) 33 (2020) 1627-1634. [48] Z. Mao, W. Chen, D.N. Seidman, C. Wolverton, Acta Mater. 59 (2011) 3012-3023. [49] Y. Wang, Z.K. Liu, L.Q. Chen, C. Wolverton, Acta Mater. 55 (2007) 5934-5947. [50] C.M. Zhang, D.F. Yin, Y. Jiang, Y.R. Wang, Comput. Mater. Sci. 162 (2019) 171-177. [51] E. Clouet, M. Nastar, C. Sigli, Phys. Rev. B 69 (2004) 064109. [52] J.D. Robson, P.B. Prangnell, Acta Mater. 49 (2001) 599-613. [53] R.W. Hyland, Metall. Mater. Trans. A 23 (1992) 1947-1955. [54] C. Watanabe, T. Kondo, R. Monzen, Mater. Sci. Eng. A 35 (2004) 3003-3008. [55] M.J. Yang, H.N. Chen, A. Orekhov, Q. Lu, X.Y. Lan, K. Li, S.Y. Zhang, M. Song, Y. Kong, D. Schryvers, Y. Du, Mater. Sci. Eng. A 774 (2020) 138776. [56] M.J. Yang, A. Orekhov, Z.Y. Hu, M. Feng, S.B. Jin, G. Sha, K. Li, V. Samaee, M. Song, Y. Du, G. Van Tendeloo, D. Schryvers, Acta Mater. 220 (2021) 117310. [57] N.Q. Vo, D.C. Dunand, D.N. Seidman, Acta Mater. 63 (2014) 73-85. [58] Y. Wang, S. Zhang, R.Z. Wu, N. Turakhodjaev, L. Hou, J.H. Zhang, S. Betsofen, J. Mater. Sci.Technol. 61 (2021) 197-203. |
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