[1] K. Kawajiri, M. Kobayashi, K. Sakamoto, J. Clean. Prod. 253 (20) (2020) 119805. [2] X.T. Cui, H.W. Zhang, S.X. Wang, L.H. Zhang, J.H. Ko, Mater. Design 32 (2) (2011) 815-821. [3] W.S. Miller, L. Zhuang, J. Bottema, A.J. Witterbrood, P. De Smet, A. Haszler, A. Vieregge, Mater. Sci. Eng. A 280 (1)(20 0 0) 37-49. [4] S.L. Santos, R.A. Antunes, S.F. S, Mater. Design 88 (25) (2015) 1071-1081. [5] X.Y. Jiao, J. Wang, C.F. Liu, Z.P. Guo, G.D. Tong, S.L. Ma, Y. Bi, Y.F. Zhang, S. M. Xiong, J. Mater. Sci. Technol. 35 (6) (2019) 1099-1107. [6] C.Y. Hu, H. Zhu, Y.H. Wang, C. Xia, J. Geng, D. Chen, H. Zhang, M. Wang, H. Wang, J. Mater. Res.Technol. 27(2023) 2117-2131. [7] C. Hu, H. Zhao, X. Wang, J. Fu, Vacuum 180 (2020) 109561. [8] S. Ji, D. Watson, Z. Fan, M. White, Mater. Sci. Eng. A 556 (2012) 824-833. [9] A.J. Franke, F. Casarotto, R. Franke, High-pressure die-cast (HPDC) aluminum alloys for automotive applications, in: Advanced Materials in Automotive Engi- neering, Woodhead Publishing, 2012, pp. 109-148. [10] Y. Wang, Y. Guo, D. Zhao, H. Zhu, H. Zhang, M. Wang, J. Huang, Z. Chen, H. Wang, J. Alloy. Compd. 1002(2024) 175539. [11] S.X. Ji, F. Yan, Z.Y. Fan, Mater. Sci. Eng. A 626 (25) (2015) 165-174. [12] K. Yamamoto, M. Takahashi, Y. Kamikubo, Y. Sugiura, S. Iwasawa, J. Mater. Sci. Technol. 93 (10) (2021) 178-190. [13] L.Y. Yuan, L.M. Peng, J.Y. Han, B.L. Liu, W.J. Wu, J. Chen, J. Mater. Sci.Technol. 35(2019) 1017-1026. [14] Q. Luo, X. Li, Q. Li, L. Yuan, L. Peng, F. Pan, W. Ding, J. Mater. Sci.Technol. 135(2023) 97-110. [15] S.S. Li, F. Qiu, H.Y. Yang, S. Liu, T.S. Liu, L.Y. Chen, Q.C. Jiang, Mater. Sci. Eng. A 857 (2022) 114107. [16] I. El-Mahallawi, H. Abdelkader, L. Yousef, A. Amer, J. Mayer, J. Mayer, Mater. Sci. Eng. A 556 (30) (2012) 76-87. [17] S. Ma, Z. Shang, A. Shang, P. Zhang, C. Tang, Y. Huang, C.L.A. Leung, P.D. Lee, X. Zhang, X. Wang, Addit. Manuf. 70 (25) (2023) 103543. [18] J. Hashim, L. Looney, M.S.J. Hashmi, J. Mater. Process. Technol. 119 (1-3) (2001) 324-328. [19] Q. Wang, Y. Li, S. Chen, X. Liu, Z. Chen, M. Wang, H. Zhu, H. Wang, J. Phys. Chem. C 125 (10) (2021) 5937-5946. [20] H. Zhu, Q. Wang, C. Yang, Y. Wang, C. Xia, D. Zhao, H. Zhang, M. Wang, Z. Chen, H. Wang, Mater. Design 244 (2024) 113184. [21] J. Huang, L. Feng, C. Li, C. Huang, J. Li, B. Friedrich, Scr. Mater. 180 (15) (2020) 88-92. [22] Z. Fan, Y. Wang, Y. Zhang, T. Qin, X.R. Zhou, G.E. Thomson, T. Pennycook, T. Hashimoto, Acta Mater. 84(2015) 292-304. [23] Y. Wang, C.M. Fang, L. Zhou, T. Hashimoto, X. Zhou, Q.M. Ramasse, Z. Fan, Acta Mater. 164(2019) 428-439. [24] Y. Li, B. Hu, B. Liu, A. Nie, Q. Gu, J. Wang, Q. Li, Acta Mater. 187(2020) 51-65. [25] D. Wu, S. Ma, T. Jing, Y. Wang, L. Wang, J. Kang, Q. Wang, W. Wang, T. Li, R. Su, Acta Mater. (219) (2021) 117265. [26] Y. Li, Y. Wang, L. Hu, T. Chen, G. Ji, H. Chen, H. Wang, H. Wang, Z. Chen, Addit. Manuf. 79 (5) (2024) 103913. [27] A. Mortensen, I. Jin, Int. Mater. Rev. 37 (1) (1989) 101-128. [28] R. Shi, J.M. Meier, A .A. Luo, Metall. Mater. Trans. A 50 (2019) 3736-3747. [29] J. Han, G. Dong, S. Li, J. Zheng, J. Wang, H. Li, M.D. Starostenkov, J. Bi, J. Manuf. Process. 127 (15) (2024) 196-210. [30] J. Zhang, W. Guo, Q. Bai, X. Liu, Z. Li, Z. Sun, Y. Jin, Z. Zhao, J. Alloy. Compd. 1004(2024) 175755. [31] Y.H. Gao, L.F. Cao, C. Yang, J.Y. Zhang, G. Liu, J. Sun, Mater. Today Nano 6 (2019) 10 0 035. [32] B. Huang, Y. Liu, Z. Zhou, Z.W. Cheng, X. Liu, Vacuum 200 (2022) 111030. [33] Y.K. Xiao, H. Chen, Z.Y. Bian, T.T. Sun, H. Ding, Q. Yang, Y. Wu, Q. Lian, Z. Chen, H.W. Wang, J. Mater. Sci.Technol. 109(2022) 254-266. [34] J.H. Van Der Merwe, Philos. Mag. 45 (1) (1982). [35] 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. [36] Y. Li, Y. Jiang, B. Hu, Q. Li, Scr. Mater. 187(2020) 202-267. [37] Q. Li, G. Li, X. Lin, D. Zhu, J. Jiang, S. Shi, F. Liu, W. Huang, K. Vanmeensel, Addit. Manuf. 57(2022) 102967. [38] T.E. Quested, A.L. Greer, Acta Mater. 53 (9) (2005) 2683-2692. [39] H.K. Kim, M. Lee, K.R. Lee, J.C. Lee, Acta Mater. 61 (17) (2013) 6597-6608. [40] Y. Guan, Y. Wang, W. Song, Int. J. Mech. Sci. 234 (15) (2022) 107680. [41] C. Yang, J. Huang, J. Dai, K. Wang, M. Wang, Z. Chen, S. Zhong, X. Li, H. Wang, J. Mater. Sci.Technol. 211(2025) 226-238. [42] J. Feng, Y. Han, X. Han, X. Wang, S. Song, B. Sun, M. Chen, P. Liu, J. Mater. Sci.Technol. 156(2023) 72-82. [43] Z. Fan, F. Gao, Mteal 12 (10) (2022) 1728. [44] X. Pang, X. Chen, J. Yamh, M. Pang, W. Yang, Y. Zhan, J. Phys. Chem. Solids 131 (2019) 243-253. [45] Y. Cui, D.J.M.King, A.P. Horsfield, C.M. Gourlay, Acta Mater. 186(2020) 149-161. [46] M.A. Easton, M.A. Gibson, D. Qiu, S.M. Zhu, J. Gröbner, R. Schmod-Fezter, J.F. Nie, M.X. Zhang, Acta Mater. 60(2012) 4 420-4 430. [47] G. Diao, J. Yuan, A. He, D. Zhang, A. Kumar, R. Fang, A. Vorobyev, W. Chen, D. Li, Lubricants 12 (11) (2024) 398. [48] S. Monirim, X. Xiao, A.J. Shanani, Phys. Rev. Mater. 4(2020) 063403. [49] B.X. Dong, Q. Li, Z.F. Wang, T.S. Liu, H.Y. Yang, S.L. Shu, L.Y. Chen, F. Qiu, Q. C. Jiang, L.C. Zhang, Compos. Part B-Eng. 271(2021) 108912. [50] K.Y. Wang, R.D. Zhao, F.F. Wu, X.F. Wu, M.H. Chen, J. Xiang, S.H. Chen, J. Alloy. Compd. 813(2020) 152178. [51] Y. Jin, H. Fang, R. Chen, J. Wang, S. Sun, S. Wang, B. Saho, J. Guo, J. Mater. Sci.Technol. 159(2023) 151-162. [52] X.F. Wu, Z.C. Wang, T. Cheng, K.Y. Wang, J. Xiang, R.D. Zhao, S.H. Chen, F.F. Wu, J. Cent.South Univ. 29(2022) 795-806. [53] X. Wu, F. Wu, J. Qin, R. Zhao, J. Mater. Eng.Perform. 34(2025) 4376-4387. [54] X. Wu, F. Zhao, F. Wu, J. Qin, J. Mater. Eng. Perform. (2024), doi: 10.1007/s11665-024-09789-6. [55] Q. Tan, M. Zhang, Mater. Sci. Eng. R 158 (2024) 100773. [56] A. Prasad, L. Yuan, P. Lee, M. Patel, D. Qiu, M. Easton, D. Stjohn, Acta Mater. 195(2020) 392-403. [57] Q. Tan, Y. Yin, A. Prasad, G. Li, Q. Zhu, D.H. Stjohn, M.X. Zhang, Addit. Manuf. 49(2022) 102516. [58] Z. Xiao, W. Yu, H. Fu, Y. Deng, Y. Wu, H. Zheng, Virtual Phys. Prototyp. 18(2023), doi: 10.1080/17452759.2022.2125880. [59] D.H. Stjohn, M. Qian, M.A. Easton, P. Cao, Acta Mater. 59(2011) 4 907-4 921. [60] D. Shuangguan, S. Ahuja, D.M. Stefanescu, Metall. Trans. A 23 (1992) 669-680. [61] X. Song, X. Bian, J. Zhang, J. Zhang, J. Alloy. Compd. 479(2009) 670-673. [62] B.X. Dong, Q. Li, Z.F. Wang, T.S. Liu, H.Y. Yang, S.L. Shu, L.Y. Chen, F. Qiu Q. C. Jiang, L.C. Zhang, Compos. Part B-Eng. 217(2021) 108912. [63] Q. Yang, Y. Ma, Z. Chen, G. Ji, M.L. Wang, S.Y. Zhong, Y. Wu, V. Ji, H.W. Wang, Materialia 8 (2019) 100458. [64] J. Qin, Surf. Sci. 739(2024) 112398. [65] D. Wearing, A.P. Horsfield, W. Xu, P.D. Lee, J. Alloy. Compd. 664(2016) 460-468. [66] S. Ji, H. Yang, X. Cui, Z. Fan, Mater. Sci. Technol. 33(2017) 2223-2233. [67] E. Ghassemali, M. Riestra, T. Bogdanoff, B.S. Kumar, S. Seideddine, Proc. Eng. 207(2017) 19-24. [68] L. Jiang, H. Yang, J.K. Yee, X. Mo, T. Topping, E.J. Lavernia, J.M. Schoenung, Acta Mater. 103(2016) 128-140. [69] T. Xu, G. Li, M. Xie, M. Liu, D. Zhang, Y. Zhao, G. Chen, X. Kai, J. Alloy. Compd. 787(2019) 72-85. [70] H. Li, X. Wang, L. Chai, H. Wang, Z. Chen, Z. Xiang, T. Jin, Mater. Sci. Eng. A 720 (2018) 60-68. |