[1] P. Fernandez, G. Gonzalez, I. Alfonso, I.A. Figueroa, J. Mater. Sci.Technol. 26(2010) 1083-1088. [2] S. Valdez, M. Suarez, O.A. Fregoso, J.A.Juárez-Islas, J.Mater. Sci. Technol. 28(2012) 255-260. [3] J. Liu, Z.Y. Du, J.L. Su, J. Tang, F.L. Jiang, D.F. Fu, J. Teng, H. Zhang, J. Mater. Sci.Technol. 132(2023) 154-165. [4] P. Zhang, K.K. Shi, J.J. Bian, J.Y. Zhang, Y. Peng, G. Liu, A. Deschamps, J. Sun, Acta Mater. 207(2021) 116682. [5] K. Anderson, J. Weritz, J.G. Kaufman, Ohio, 2018. [6] K. Anderson, J. Weritz, J.G. Kaufman, Ohio, 2019. [7] K.K. Ma, H.M. Wen, T. Hua, T.D. Topping, D. Isheim, D.N. Seidman, E.J. Lavernia, J. M. Schoenung, Acta Mater. 62(2014) 141-155. [8] R.J. Dai, Z.J. Zhang, K.Q. Li, R. Liu, J.P. Hou, Z. Qu, B.S. Gong, Z.F. Zhang, Mater. Des. 248(2024) 113439. [9] Y.J. Wei, Y.Q. Li, L.C. Zhu, Y. Liu, X.Q. Lei, G. Wang, Y.X. Wu, Z.L. Mi, J.B. Liu, H.T. Wang, H.J. Gao, Nat. Commun. 5(2014) 3580. [10] Y.W. Li, L.B. Yu, X.Y. Pang, G.W. Qin, Mater. Today Commun. 43(2025) 111639. [11] X.Y. Li, L. Lu, J.G. Li, X. Zhang, H.J. Gao, Nat. Rev. Mater. 5(2020) 706-723. [12] Z.X. Shang, T.Y. Sun, J. Ding, N.A. Richter, N.M. Heckman, B.C. White, B.L. Boyce, K. Hattar, H.Y. Wang, X.H. Zhang, Sci. Adv. 9 (2023) eadd9780. [13] Q.S. Pan, K.Q. Ding, S. Guo, N. Lu, N.R. Tao, T. Zhu, L. Lu, Science 388 (2025) 82-88. [14] Y. Zhang, C.Y. He, Q. Yu, X. Li, X.G. Wang, Y. Zhang, J. Wang, C. Jiang, Y.F. Jia, X. C. Zhang, B.H. Sun, R.O. Ritchie, S.T. Tu, Nat. Commun. 15(2024) 6917. [15] Y. Lin, J. Pan, H. Zhou, H. Gao, Y. Li, Acta Mater. 153(2018) 279-289. [16] T.H. Fang, W.L. Li, N.R. Tao, K. Lu, Science 331 (2011) 1587-1590. [17] Q.S. Pan, L.X. Zhang, R. Feng, Q.H. Lu, K. An, A.C. Chuang, J.D. Poplawsky, P.K. Liaw, L. Lu, Science 374 (2021) 984-989. [18] B.H. Huang, Y.X. Ye, K. Wang, L. Zhang, Y.L. Dong, C. Ye, Surf. Coat. Technol. 474(2023) 130085. [19] M. Yang, L. Lei, Y. Jiang, F.H. Xu, C.H. Yin, Corros. Sci. 218(2023) 111211. [20] X.C. Xu, D.X. Liu, X.H. Zhang, C.S. Liu, D. Liu, J. Mater. Sci.Technol. 40(2020) 88-98. [21] S.S. Wang, J.T. Jiang, G.H. Fan, A.M. Panindre, G.S. Frankel, L. Zhen, Acta Mater. 131(2017) 233-245. [22] M. Song, K. Du, Z.Y. Huang, H. Huang, Z.R. Nie, H.Q. Ye, Acta Mater. 81(2014) 409-419. [23] A. Deschamps, F.D. Geuser, Z. Horita, S. Lee, G. Renou, Acta Mater. 66(2014) 105-117. [24] B. Dhakal, S. Swaroop, Mater. Charact. 183(2022) 111620. [25] K. Lu, Nat. Rev. Mater. 1(2016) 16019. [26] X. Zhou, X.Y. Li, K. Lu, Science 360 (2018) 526-530. [27] Q. Zhang, Y.M. Zhu, X. Gao, Y.X. Wu, C. Hutchinson, Nat. Commun. 11(2020) 5198. [28] W.W. Sun, Y.M. Zhu, R. Marceau, L.Y. Wang, Q. Zhang, X. Gao, C. Hutchinson, Science 363 (2019) 972-975. [29] K. Yasunaga, Y. Matsukawa, M. Komatsu, M. Kiritani, Mater. Res. Soc. Symp. Proc. 673(2001) 351-356. [30] M. Kiritani, Y. Satoh, Y. Kizuka, K. Arakawa, Y. Ogasawara, S. Arai, Y. Shimo-mura, Philos.Mag. Lett. 79(1999) 797-804. [31] F.E. Fujita, Mater. Sci. Eng. A 350 (2003) 216-219. [32] W.W. Deng, C.Y. Wang, H.F. Lu, X.K. Meng, Z. Wang, J.M. Lv, K.Y. Luo, J.Z. Lu, Int. J. Mach. Tool Manufact. 191(2023) 104061. [33] K.S. Chin, S. Idapalapati, D.T. Ardi, J. Mater. Sci.Technol. 59(2020) 100-106. [34] A. Telang, A.S. Gill, S.R. Mannava, D. Qian, V.K. Vasudevan, Surf. Coat. Technol. 344(2018) 93-101. [35] H. Zhao, F.D. Geuser, D. Geuser, A.K. da Silva, A.Szczepaniak, B. Gault, D. Ponge, D. Raabe, Acta Mater. 156(2018) 318-329. [36] M.F. Ashby, Philos. Mag. 21(1970) 399-424. [37] T. Dorin, F.D. Geuser, W. Lefebvre, C. Sigli, A. Deschamps, Mater. Sci. Eng. A 605 (2014) 119-126. [38] Y. Li, M.Y. Li, H. Yang, X.F. Dang, L.Q. Cui, Y. Jiao, Z.P. Sun, T. Guo, W.F. He, Int. J. Mach. Tool Manufact. 208(2025) 104280. [39] L. Cheng, W. Poole, J. Embury, D. Lloyd, Metall. Mater. Trans. A 34 (2003) 2473-2481. [40] G. Fribourg, Y. Bréchet, A. Deschamps, A. Simar, Acta Mater. 59(2011) 3621-3635. [41] X.C. Lu, X. Zhang, M.X. Shi, F. Roters, G.Z. Kang, D. Raabe, Int. J. Plast. 113(2019) 52-73. [42] X. Zheng, X. Du, J.H. Wu, S.Y. Shuang, J.F. Zhao, Q.H. Kan, X. Zhang, Int. J. Plast. 191(2025) 104392. [43] J.W. Christian, Oxford, 2002. [44] Y. Yang, K. Zhou, G.J. Li, Opt. Laser Technol. 109(2019) 1-7. [45] Y.F. Wang, B. Sharma, Y.T. Xu, K. Shimizu, H. Fujihara, K. Hirayama, A. Takeuchi, M. Uesugi, G.X. Cheng, H. Toda, Nat. Commun. 13(2021) 6860. [46] T.F. Chung, Y.L. Yang, B.M. Huang, Z.S. Shi, J.G. Lin, T. Ohmura, J.R. Yang, Acta Mater. 149(2018) 377-387. [47] I.M. Lifshitz, V.V. Slyozov, Phys. Chem. Solids 19 (1961) 35-50. [48] W. Shockley, NY, 1952. [49] P. Tzanetakis, J. Hillairet, G. Revel, Phys. Status Solidi B 75 (1976) 433-439. [50] R. Ivanov, A. Deschamps, F. De Geuser, Acta Mater. 157(2018) 186-195. [51] F.J. Humphreys, M. Hatherly, Amsterdam, 2004. [52] A.H. Cottrell, B.A. Bilby, Proc. Phys. Soc. A 62 (1949) 49-62. [53] E. Dontsova, J. Rottler, C.W. Sinclair, Phys. Rev. B 91 (2015) 224103. [54] J.W. Cahn, Y. Mishin, A. Suzuki, Acta Mater. 54(2006) 4953-4975. [55] M. Winning, G. Gottstein, L.S. Shvindlerman, Acta Mater. 49(2001) 211-219. [56] V. Gerold, H.P. Karnthaler, Acta Metall. 37(1989) 2177-2183. [57] K. Hockauf, M.F.X.Wagner, T. Halle, T.Niendorf, M. Hockauf, T. Lampke, Acta Mater. 80(2014) 250-263. [58] Z.F. Lei, X.J. Liu, Y. Wu, H. Wang, S.H. Jiang, S.D. Wang, X.D. Hui, Y.D. Wu, B. Gault, P. Kontis, D. Raabe, L. Gu, Q.H. Zhang, H.W. Chen, H.T. Wang, J.B. Liu, K. An, Q.S. Zeng, T.G. Nieh, Z.P. Lu, Nature 563 (2018) 546-550. [59] K.J. Lu, A. Chauhan, A.S. Tirunilai, J. Freudenberger, A. Kauffmann, M. Heilmaier, J. Aktaa, Acta Mater. 215(2021) 117089. [60] M.M. Arani, N.S. Ramesh, X. Wang, N. Parson, M. Li, W.J. Poole, Acta Mater. 231(2022) 117872. |