J. Mater. Sci. Technol. ›› 2024, Vol. 191: 233-249.DOI: 10.1016/j.jmst.2023.11.074
• Research Article • Previous Articles Next Articles
Sang-Cheol Jina, Ye Jin Kima, Dong Hee Leea, Sang-Ho Hanb, Sumi Joa,*, Sung Hyuk Parka,*
Received:
2023-09-09
Revised:
2023-11-11
Accepted:
2023-11-27
Online:
2024-08-20
Contact:
*E-mail addresses: sumi.jo@knu.ac.kr (S. Jo), sh.park@knu.ac.kr (S.H. Park).
Sang-Cheol Jin, Ye Jin Kim, Dong Hee Lee, Sang-Ho Han, Sumi Jo, Sung Hyuk Park. Recrystallization behavior and microstructure evolution of Mg-5Bi-3Al alloy during very high-speed extrusion[J]. J. Mater. Sci. Technol., 2024, 191: 233-249.
[1] Q. Luo, J. Li, B. Li, B. Liu, H. Shao, Q. Li, J. Magnes. Alloy. (2019) 58-71. [2] Q. Li, X. Lin, Q. Luo, Y. Chen, J. Wang, B. Jiang, F. Pan, Int. J. Miner. Metall. Mater. 29(2022) 32-48. [3] Q. Li, Y. Lu, Q. Luo, X. Yang, Y. Yang, J. Tan, Z. Dong, J. Dang, J. Li, Y. Chen, B. Jiang, S. Sun, F. Pan, J. Magnes. Alloy. 9(2021) 1912-1941. [4] Z. Zeng, M. Salehi, A. Kopp, S. Xu, M. Esmaily, N. Birbilis, J. Magnes. Alloy. 10(2022) 1511-1541. [5] D.L. Atwell, M.R. Barnett, Metall. Mater. Trans. A 38 (2007) 3032-3041. [6] W.Z. Misiolek, R.M. Kelly, ASM Handbook 14 (2005) 522-527. [7] S.C. Jin, J.W. Cha, J. Go, J.H. Bae, S.H. Park, J. Magnes. Alloy. 11(2023) 249-258. [8] H. Yu, Y.M. Kim, B.S. You, H.S. Yu, S.H. Park, Mater. Sci. Eng. A 559 (2013) 798-807. [9] S. Schumann, H. Friedrich, in: Proceedings of the 60th Annual IMA World Mag-nesium Conference, International Magnesium Association, Stuttgart, Germany, 2003, pp. 35-41. [10] S.H. Park, S.H. Kim, H.S. Kim, J. Yoon, B.S. You, J. Alloy. Compd. 667(2016) 170-177. [11] M.G. Jiang, C. Xu, T. Nakata, H. Yan, R.S. Chen, S. Kamado, Mater. Sci. Eng. A 667 (2016) 233-239. [12] M.G. Jiang, C. Xu, T. Nakata, H. Yan, R.S. Chen, S. Kamado, Mater. Sci. Eng. A 678 (2016) 329-338. [13] J. Go, S.C. Jin, H. Kim, H. Yu, S.H. Park, J. Alloy. Compd. 843(2020) 156026. [14] J.W. Cha, S.C. Jin, S.H. Park, Mater. Sci. Eng. A 862 (2023) 144490. [15] J.W. Cha, S.C. Jin, J.G. Jung, S.H. Park, J. Magnes. Alloy. 10(2022) 2833-2846. [16] S.C. Jin, J.W. Cha, J.H. Lee, T. Lee, S.H. Han, S.H. Park, J. Magnes. Alloy. 10(2022) 3100-3112. [17] M.G. Jiang, C. Xu, H. Yan, G.H. Fan, T. Nakata, C.S. Lao, R.S. Chen, S. Kamado, E.H. Han, B.H. Lu, Acta Mater. 157(2018) 53-71. [18] S. Meng, H. Yu, L. Li, J. Qin, S.K. Woo, Y. Go, Y.M. Kim, S.H. Park, W. Zhao, F. Yin, B.S. You, K.S. Shin, J. Alloy. Compd. 834(2020) 155216. [19] S. Meng, H. Yu, H. Zhang, H. Cui, S.H. Park, W. Zhao, B.S. You, Mater. Sci. Eng. A 690 (2017) 80-87. [20] J. Xie, Z. Zhang, S. Liu, J. Zhang, J. Wang, Y. He, L. Lu, Y. Jiao, R. Wu, Int. J. Miner. Metall. Mater. 30(2023) 82-91. [21] G.E. Dieter, New York, 1986. [22] S.H. Park, B.S. You, R.K. Mishra, A.K. Sachdev, Mater. Sci. Eng. A 598 (2014) 396-406. [23] J.D. Robson, D.T. Henry, B. Davis, Acta Mater. 57(2009) 2739-2747. [24] S.W. Lee, S.H. Kim, W.K. Jo, W.H. Hong, W. Kim, B.G. Moon, S.H. Park, J. Alloy. Compd. 791(2019) 700-710. [25] M.R. Barnett, Z. Keshavarz, A.G. Beer, D. Atwell, Acta Mater. 52(2004) 5093-5103. [26] M.A. Meyers, O. Vöhringer, V.A. Lubarda, Acta Mater. 49(2001) 4025-4039. [27] A. Malik, Y. Wang, C. Huanwu, F. Nazeer, B. Ahmed, M.A. Khan, W. Mingjun, Mater. Sci. Eng. A 771 (2020) 138649. [28] Y.Z. Wu, H.G. Yan, J.H. Chen, S.Q. Zhu, B. Su, P.L. Zeng, Mater. Sci. Eng. A(2010) 3670-3675. [29] W.D. Russell, N.R. Bratton, Y. Paudel, R.D. Moser, Z.B.McClelland, C.D. Barrett, A. L. Oppedal, W.R. Whittington, H. Rhee, S. Mujahid, B. Paliwal, S.C. Vogel, H.E. Kadiri, Metals (Basel) 10(2020) 1403. [30] C. Cui, W. Zhang, W. Chen, J. He, X. Chen, J. Hou, J. Magnes. Alloy. 10(2022) 2745-2760. [31] M.G. Jiang, C. Xu, H. Yan, S.H. Lu, T. Nakata, C.S. Lao, R.S. Chen, S. Kamado, E.H. Han, Sci. Rep. 8(2018) 16800. [32] C. Bettles, M. Barnett, Cambridge, 2012. [33] M. Hao, W. Cheng, L. Wang, E. Mostaed, L. Bian, H. Wang, X. Niu, J. Magnes. Alloy. 8(2020) 899-909. [34] S.H. Park, S.G. Hong, C.S. Lee, Mater. Sci. Eng. A 570 (2013) 149-163. [35] A. Imandoust, C.D. Barrett, T. Al-Samman, K.A. Inal, H.E. Kadiri, J. Mater. Sci. 52(2017) 1-29. [36] A. Chapuis, J.H. Driver, Acta Mater. 59(2011) 1986-1994. [37] A. Chapuis, Q. Liu, J. Magnes. Alloy. 7(2019) 433-443. [38] P. Feltham, Met. Treat. Drop Forg. 23 (1956) 4 40-444. [39] Y. Huang, G. Zeng, L. Huang, Z. Zheng, C. Liu, H. Zhan, Mater. Charact. 187(2022) 111880. [40] O. Sitdikov, R. Kaibyshev, Mater. Trans. 42(2001) 1928-1937. [41] G. Wu, J. Yu, L. Jia, W. Xu, B. Dong, Z. Zhang, B. Hao, Materials (Basel) 13(2020) 4932. [42] L.F. Wang, X.H. Pan, X.X. Zhu, B. Xing, H. Zhang, L.W. Lu, H.X. Wang, W. L. Cheng, M. Vedani, Trans. Nonferrous Met. Soc. China 33 (2023) 1066-1085. [43] J. Koike, T. Kobayashi, T. Mukai, H. Watanabe, M. Suzuki, K. Maruyama, K. Hi-gashi, Acta Mater. 51(2003) 2055-2065. [44] B. Srinivasarao, N.V. Dudamell, M.T.Pérez-Prado, Mater. Charact. 75(2013) 101-107. [45] E.J. Rapperport, C.S. Hartley, Trans. Met. Soc. AIME 218 (1960) 869-877. [46] Y.B. Chun, M. Battaini, C.H.J. Davies, S.K. Hwang, Metall. Mater. Trans. A 41 (2010) 3473-3487. [47] D.B. Williams, C.B. Carter, Springer US, 1996. [48] S. Biswas, B. Beausir, L.S. Toth, S. Suwas, Acta Mater. 61(2013) 5263-5277. [49] A. Jain, O. Duygulu, D.W. Brown, C.N. Tomé, S.R. Agnew, Mater. Sci. Eng. A 486 (2008) 545-555. [50] S.M. Razavi, D.C. Foley, I. Karaman, K.T. Hartwig, O. Duygulu, L.J. Kecskes, S.N. Mathaudhu, V.H. Hammond, Scr. Mater. 67(2012) 439-442. [51] V. Herrera-Solaz, P. Hidalgo-Manrique, M.T.Pérez-Prado, D.Letzig, J. Llorca, J. Segurado, Mater. Lett. 128(2014) 199-203. [52] U.M. Chaudry, T.H. Kim, S.D. Park, Y.S. Kim, K. Hamad, J.G. Kim, Mater. Sci. Eng. A 739 (2019) 289-294. [53] Y.J. Kim, J.U. Lee, Y.M. Kim, S.H. Park, J. Magnes. Alloy. 9(2021) 1233-1245. [54] P.A. Beck, P.R. Sperry, J. Appl. Phys. 21(1950) 150-152. [55] H.J. Kim, S.C. Jin, J.G. Jung, S.H. Park, J. Mater. Sci.Technol. 71(2021) 87-97. [56] S. Lv, Q. Yang, X. Lv, F. Meng, X. Qiu, Mater. Des. 225(2023) 111568. |
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