J. Mater. Sci. Technol. ›› 2023, Vol. 168: 88-102.DOI: 10.1016/j.jmst.2023.02.064
• Research Article • Previous Articles Next Articles
Chaoneng Daia,c, Jingfeng Wanga,b,c,*, Yuanlang Pana,c, Kai Mab,c, Yinhong Pengb,c, Ye Wangb,c, Danqian Wangb,c,*, Chunhua Ranb,c, Jinxing Wangb,c, Yanlong Mad
Received:
2023-01-03
Revised:
2023-02-24
Accepted:
2023-02-25
Published:
2024-01-01
Online:
2023-12-25
Contact:
*College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China. E-mail addresses: jingfengwang@163.com (J. Wang), wang.danqian@cqu.edu.cn (D. Wang)
Chaoneng Dai, Jingfeng Wang, Yuanlang Pan, Kai Ma, Yinhong Peng, Ye Wang, Danqian Wang, Chunhua Ran, Jinxing Wang, Yanlong Ma. Achieving exceptionally high strength and rapid degradation rate of Mg-Er-Ni alloy by strengthening with lamellar γ′ and bulk LPSO phases[J]. J. Mater. Sci. Technol., 2023, 168: 88-102.
[1] J. Sun, W.B. Du, J.J. Fu, K. Liu, S.B. Li, Z.H. Wang, H.X. Liang, J. Magnes. Alloy. 10(2022) 2649-2672. [2] W.J. Yin, F. Briffod, T. Shiraiwa, M. Enoki, J. Magnes. Alloy. 10(2022) 2158-2172. [3] S.Z. Wu, X.G. Qiao, S.H. Qin, Y.Q. Chi, M.Y. Zheng, Mater. Sci. Eng. A 831 (2022) 1421981. [4] X.J. Zhou, W.Y. Xiong, G. Zeng, H.C. Xiao, J. Zhang, X.Z. Lu, X.M. Chen, Mater. Sci. Eng. A 805 (2021) 140596. [5] B.Q. Shi, L.Y. Zhao, D.C. Chen, C.Q. Li, Y. Dong, D. Wu, R.S. Chen, W. Ke, Mater. Sci. Eng. A 772 (2020) 138786. [6] C.Y. Zhu, L. Zhou, J.X. Zheng, B. Chen, Mater. Lett. 235(2019) 71-75. [7] Y.H. Zhou, Q. Luo, B. Jiang, Q. Li, F.S. Pan, Scr. Mater. 208(2022) 114345. [8] Y.H. Zhou, C. Liu, Q. Luo, Q. Li, Mater. Charact. 193(2022) 112288. [9] C. Liu, X.H. Yang, J.C. Peng, B. Liu, Q. Luo, Q. Li, K.C. Chou, Scr. Mater. 226(2023) 115264. [10] Y.L. Guo, B. Liu, W. Xie, Q. Luo, Q. Li, Scr. Mater. 193(2021) 127-131. [11] Y.J. Feng, L. Wei, X.B. Chen, M.C. Li, Y.F. Cheng, Q. Li, Corros. Sci. 159(2019) 108133. [12] X.W. Wang, W. Wang, W. Chen, D.M. Chen, Mater. Charact. 177(2021) 111157. [13] K. Ma, S.J. Liu, C.N. Dai, X.Y. Liu, J. Ren, Y.L. Pan, Y.H. Peng, C. Su, J.F. Wang, F.S. Pan, J. Mater. Sci.Technol. 91(2021) 121-133. [14] L. Liu, S.R. Yu, E.Y. Liu, Y. Zhao, B.Y. Wang, Y.F. Niu, J. Alloy. Compd. 853(2021) 157125. [15] J.F. Wang, S.Q. Gao, X.Y. Liu, X. Peng, K. Wang, S.J. Liu, W.Y. Jiang, S.F. Guo, F.S. Pan, J. Magnes. Alloy. 8(2020) 127-133. [16] Z.H. Han, K. Zhang, J. Yang, R. Wei, C.J. Zhang, Mater. Corros. 70(2019) 537-548. [17] H.Y. Niu, K.K. Deng, K.B. Nie, C.J. Wang, W. Liang, Y.C. Wu, Mater. Chem. Phys. 249(2020) 123131. [18] J.B. Lyu, J.H. Kim, H.X. Liao, J. She, J.F. Song, J. Peng, F.S. Pan, B. Jiang, Mater. Sci. Eng. A 773 (2020) 138735. [19] L. Zhang, S.J. Zhang, K.X. Ouyang, Y.H. Zhou, H. Huang, P. Xu, Adv. Eng. Mater. 23(2021) 2100368. [20] J. Wang, T. Li, H.X. Li, Y.Z. Ma, K.N. Zhao, C.L. Yang, J.S. Zhang, J. Magnes. Alloy. 9(2021) 1632-1643. [21] S.F. Luo, N. Wang, Y. Wang, J.M. Chen, H. Qin, S. Kong, T. Bai, W.J. Lu, L. Xiao, X.K. Ma, X.Y. Yang, J.X. Zhang, Mater. Sci. Eng. A 849 (2022) 143476. [22] H. Liu, K. Yan, J.L. Yan, F. Xue, J.P. Sun, J.H. Jiang, A.B. Ma, T. Nonferr. Metal.Soc. 27(2017) 63-72. [23] S.Z. Wu, X.G. Qiao, M.Y. Zheng, J. Mater. Sci.Technol. 45(2020) 117-124. [24] K.F. Khaled, Corros. Sci. 52(2010) 3225-3234. [25] C. Xu, T. Nakata, X. Qiao, M. Zheng, K. Wu, S. Kamado, Sci. Rep. 7(2017) 40846. [26] Y. Feng, J.H. Zhang, P.F. Qin, S.J. Liu, Q. Yang, J. Meng, R.Z. Wu, J.S. Xie, Mater. Charact. 155(2019) 109823. [27] K. Ma, J.F. Wang, J. Ren, C.N. Dai, S.J. Liu, Y.H. Peng, Y.L. Pan, Mater. Charact. 181(2021) 111489. [28] M.L. Qiao, J.C. Sha, S.Q. Yin, W.H. Liu, Z. Zhao, J.Z. Cui, Z.Q. Zhang, J. Mater. Res.Technol. 18(2022) 1607-1622. [29] S. Zhang, G.Y. Yuan, C. Lu, W.J. Ding, Mater. Trans. 49(2011) 941-944. [30] Y.M. Zhu, A.J. Morton, J.F. Nie, Acta Mater. 58(2010) 2936-2947. [31] J.F. Nie, K. Oh-ishi, X.Gao, K. Hono, Acta Mater. 56(2008) 6061-6076. [32] X.J. Zhou, C.M. Liu, Y.H. Gao, S.N. Jiang, X.Z. Han, Z.Y. Chen, Metall. Mater. Trans. A 48 (2017) 3060-3072. [33] J. Zhao, B. Jiang, J. Xu, W.J. He, G.S. Huang, F.S. Pan, Mater. Sci. Eng. A 839 (2022) 142867. [34] H.X. Liao, J.H. Kim, J.B. Lv, B. Jiang, X.H. Chen, F.S. Pan, J. Alloy. Compd. 831(2020) 154873. [35] C.N. Dai, J.F. Wang, Y.L. Pan, K. Ma, Y.H. Peng, J. Ren, Y. Wang, D.Q. Wang, J.X. Wang, Y.L. Ma, Corros. Sci. 210(2023) 110806. [36] L.Y. Cui, R.C. Zeng, W. Ke, Acta. Metall. Sin. 54(2018) 1215-1234. [37] X.W. Li, Q.Y. Yu, X. Chen, Q.X. Zhang, J. Magnes. Alloy. 11(2021) 720-734. [38] S.L. Yang, J. Zhong, J. Wang, J.B. Gao, Q. Li, L.J. Zhang, J. Mater. Sci.Technol. 133(2023) 111-122. [39] Y.P. Pang, D.K. Sun, Q.F. Gu, K.C. Chou, X.L Wang, Q. Li, Cryst. Growth Des. 16(2016) 2404-2415. [40] Q. Luo, Y.L. Guo, B. Liu, Y.J. Feng, J.Y. Zhang, Q. Li, K.C. Chou, J. Mater. Sci.Tech-nol. 44(2020) 171-190. [41] B.J. Feng, G.N. Liu, P.X. Yang, S.S. Huang, D.D. Qi, P. Chen, C.D. Wang, J. Du, S.J. Zhang, J.H. Liu, J. Magnes. Alloy. 10(2021) 1598-1608. [42] G.J. Brug, A.L.G.V.D. Eeden, M. Sluyters-Rehbach, J.H. Sluyters, J. Electroanal. Chem. 176(1984) 275-295. [43] C.H. Hsu, F. Mansfeld, Corrosion 57 (2012) 747-748. [44] M.E. Orazem, I. Frateur, B. Tribollet, V. Vivier, S. Marcelin, N. Pébère, A.L. Bunge, E.A. White, D.P. Riemer, M. Musiani, J. Electroanal. Chem. 160(2013) 215-225. [45] B. Jiang, Q. Xiang, A. Atrens, J. Song, F. Pan, Corros. Sci. 126(2017) 374-380. [46] N. Birbilis, K.D. Ralston, S. Virtanen, H.L. Fraser, C.H.J.Davies, Corros. Eng. Sci. Technol. 45(2013) 224-230. [47] . K. Ma, J.F. Wang, Y.H. Peng, C.N. Dai, Y.L. Pan, Y. Wang, D.Q. Wang, J.X. Wang, Y.L. Ma, F.S. Pan, J. Magnes. Alloy. (2022), doi: 10.1016/j.jma.2022.07.015 [48] M.C.K.Yamasaki, Z.M. Shi, A. Atrens, A.Furukawa, Y. Kawamura, Corros. Sci. 200(2022) 110237. [49] J.J. Bhattacharyya, F. Wang, N. Stanford, S.R. Agnew, Acta Mater. 146(2018) 55-62. [50] L.L. Tang, Y.H. Zhao, R.K. Islamgaliev, C.Y.A. Tsao, R.Z. Valiev, E.J. Lavernia, Y.T. Zhu, Mater. Sci. Eng. A 670 (2016) 280-291. [51] J.D. Robson, C. Paa-Rai, Acta Mater. 95(2015) 10-19. [52] X.S. Xia, K. Zhang, M.L. Ma, T. Li, J. Rare Earths 38 (2020) 1119-1125. [53] D.X. Zhang, Z. Tan, Q.H. Huo, Z.Y. Xiao, Z.G. Fang, X.Y. Yang, Mater. Sci. Eng. A 715 (2018) 389-403. [54] K. Hagihara, A. Kinoshita, Y. Sugino, M. Yamasaki, Y. Kawamura, H.Y. Yasuda, Y. Umakoshi, Acta Mater. 58(2010) 6282-6293. [55] D. Liu, Z.Y. Liu, E. Wang, Mater. Sci. Eng. A 612 (2014) 208-213. [56] X.Z. Jin, W.C. Xu, D.B. Shan, B. Guo, B.C. Jin, Mater. Des. 199(2021) 109384. [57] K. Wang, J.F. Wang, S. Huang, X.X. Dou, J.X. Wang, C.L. Wang, Mater. Sci. Eng. A 831 (2022) 142270. [58] L. Xiao, G.Y. Yang, H. Qin, J.Q. Ma, W.Q. Jie, Vacuum 181 (2020) 109651. [59] Y.H. Liu, Z.R. Zhang, J. Wang, Y. Li, H.X. Li, L.Y. Jia, J.H. Wang, J.S. Zhang, J. Magnes. Alloy. 11(2022) 720-734. |
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