J. Mater. Sci. Technol. ›› 2024, Vol. 192: 161-172.DOI: 10.1016/j.jmst.2024.01.010
• Research Article • Previous Articles Next Articles
Yazhou Zhang, Zuming Liu*, Daoyan Jiang, Shupeng Ye, Tao Liu, Lei Chen, Cai Chen
Received:
2023-09-07
Revised:
2023-12-17
Accepted:
2024-01-04
Published:
2024-09-01
Online:
2024-02-01
Contact:
* E-mail address: lzm@csu.edu.cn (Z. Liu).
Yazhou Zhang, Zuming Liu, Daoyan Jiang, Shupeng Ye, Tao Liu, Lei Chen, Cai Chen. Improving the strength-ductility of laser powder bed fusion René 104 through high-density stacking faults induced by Sc and Y microalloying[J]. J. Mater. Sci. Technol., 2024, 192: 161-172.
[1] Y. Gao, J.S. Stölken, M. Kumar, R.O. Ritchie, Acta Mater. 55(2007) 3155-3167. [2] W. Ying, F. Han, J. Wang, Proc. Inst. Mech. Eng. Pt. B 234 (2020) 1087-1101. [3] S. Karthikeyan, R.R. Unocic, P.M. Sarosi, G.B. Viswanathan, D.D. Whitis, M.J. Mills, Scr. Metall. 54(2006) 1157-1162. [4] Z. Hu, S. Gao, L. Zhang, X. Shen, H.L. Seet, S.M.L. Nai, J. Wei, Mater. Sci. Eng. A 848 (2022) 143345. [5] T. Zhang, C.T. Liu, Adv. Powder Mater. 1 (2021) 100014. [6] G. Del Guercio, D. McCartney, N. Aboulkhair, S. Robertson, R. Maclachlan, C. Tuck, M. Simonelli, Addit. Manuf. 54(2022) 102776. [7] C. Chen, B. Huang, Z. Liu, Y. Li, D. Zou, T. Liu, Y. Chang, L. Chen, Addit. Manuf. 63(2023) 103410. [8] A. Mostafaei, R. Ghiaasiaan, I.T. Ho, S. Strayer, K.-C. Chang, N.Shamsaei, S. Shao, S. Paul, A.C. Yeh, S. Tin, A.C. To, Prog. Mater. Sci. 136(2023) 101108. [9] S. Griffiths, H. Ghasemi Tabasi, T. Ivas, X. Maeder, A. De Luca, K. Zweiacker, R. Wróbel, Addit. Manuf. 36(2020) 101443. [10] X. Dang, Y. Li, K. Chen, U. Ramamurty, S. Luo, X. Liang, W. He, Addit. Manuf. 59(2022) 103095. [11] J. Xu, Y. Ding, Y. Gao, H. Wang, Y. Hu, D. Zhang, Mater. Des. 209(2021) 109940. [12] Q. Luo, L. Yin, T.W. Simpson, A.M. Beese, Addit. Manuf. 56(2022) 102915. [13] D. Shoukr, P. Morcos, T. Sundermann, T. Dobrowolski, C. Yates, J.R. Jain, R. Arróyave, I. Karaman, A. Elwany, Addit. Manuf. 73(2023) 103646. [14] B. Feng, C. Wang, Q. Zhang, Y. Ren, L. Cui, Q. Yang, S. Hao, Mater. Sci. Eng. A 840 (2022) 142965. [15] K. Peng, Central South University, 2019. (in Chinese). [16] Z.A.Sentyurina, F.A. Baskov, P.A. Loginov, Y.Y. Kaplanskii, A.V. Mishukov, Addit. Manuf. 37(2021) 101629. [17] Q. Han, Y. Gu, R. Setchi, F. Lacan, R. Johnston, S.L. Evans, S. Yang, Addit. Manuf. 30(2019) 100919. [18] X. Cheng, Y. Zhao, Z. Qian, J. Wu, J. Dong, Z. Ma, Y. Liu, Mater. Sci. Eng. A 824 (2021) 141867. [19] D. Tomus, P.A. Rometsch, M. Heilmaier, X. Wu, Addit. Manuf. 16(2017) 65-72. [20] W. Zhou, Y. Tian, Q. Tan, S. Qiao, H. Luo, G. Zhu, D. Shu, B. Sun, Addit. Manuf. 58(2022) 103016. [21] Z. Sun, Y. Ma, D. Ponge, S. Zaefferer, E.A. Jagle, B. Gault, A.D. Rollett, D. Raabe, Nat. Commun. 13(2022) 4361. [22] Y.T. Tang, C. Panwisawas, J.N. Ghoussoub, Y. Gong, J.W.G.Clark, A.A.N. Németh, D.G. McCartney, R.C. Reed, Acta Mater. 202(2021) 417-436. [23] M. Cloots, P.J. Uggowitzer, K. Wegener, Mater. Des. 89(2016) 770-784. [24] B. Geddes, H. Leon, X. Huang, State of Ohio, 2010. [25] B. Nong, Central South University, 2021. (in Chinese). [26] L. Xiao, D.L. Chen, M.C. Chaturvedi, Mater. Sci. Eng. A 437 (2006) 157-171. [27] Y. Zhao, Z. Ma, L. Yu, Y. Liu, Acta Mater. 247(2023) 323-337. [28] N.J. Harrison, I. Todd, K. Mumtaz, Acta Mater. 94(2015) 59-68. [29] G. Wang, L. Huang, L. Tan, Z. Qin, C. Chen, F. Liu, Y. Zhang, Mater. Sci. Eng. A 859 (2022) 167-184. [30] K. Kakehi, S. Banoth, Y.-L. Kuo, S.Hayashi, Scr. Metall. 183(2020) 71-74. [31] W. Bian, H. Zhang, X. Zhang, M. Gao, J. Li, Q. Li, Y. Cui, H. Zhang, Mater. Sci. Eng. A 755 (2019) 190-200. [32] B. Wei, Z. Liu, B. Cao, B. Nong, Y. Zhang, H. Zhou, Y. Ai, J. Alloy. Compd. 895(2022) 162663. [33] J. Yang, F. Li, Z. Wang, X. Zeng, J. Mater. Sci.Technol. 225(2015) 229-239. [34] B. Wei, Z. Liu, B. Nong, B. Cao, X. Lv, Y. Ren, Y. Ai, J. Alloy. Compd. 867(2021) 158377. [35] B. Wei, Z. Liu, B. Cao, B. Nong, Y. Zhang, Y. Ren, H. Zhou, S. Wei, J. Alloy. Compd. 881(2021) 160413. [36] Z. An, S. Mao, Y. Liu, L. Yang, A. Vayyala, X. Wei, Acta Mater. 243(2023) 118516. [37] Z. Shu, Z. Chen, L. Wang, X. Wei, W. Li, Z. Zheng, Opt. Laser Technol. 128(2020) 106222. [38] Q. Han, Y. Gu, S. Soe, F. Lacan, R. Setchi, Opt. Laser Technol. 124(2020) 105984. [39] X. Zhang, H. Chen, L. Xu, J. Xu, X. Ren, X. Chen, Mater. Des. 183(2019) 108105. [40] Y. Li, W. Kan, Y. Zhang, M. Li, X. Liang, Y. Yu, F. Lin, Addit. Manuf. 47(2021) 102371. [41] W. Zhou, G. Zhu, R. Wang, C. Yang, Y. Tian, L. Zhang, A. Dong, D. Wang, D. Shu, B. Sun, Mater. Sci. Eng. A 791 (2020) 139745. [42] C. Guo, Z. Yu, X. Hu, G. Li, F. Zhou, Z. Xu, S. Han, Y. Zhou, R.M. Ward, Q. Zhu, Compos. Pt. B-Eng. 230(2022) 109555. [43] Z. Li, S. Zhao, R.O. Ritchie, M.A. Meyers, Prog. Mater. Sci. 102(2019) 296-345. [44] S. Ma, L. Carroll, T. Pollock, Acta Mater. 55(2007) 5802-5812. [45] D. Wei, X. Li, J. Jiang, W. Heng, Y. Koizumi, W.M. Choi, B.J. Lee, H.S. Kim, H. Kato, A. Chiba, Scr. Mater. 165(2019) 39-43. [46] X. Xie, G. Chen, P. McHugh, J. Tien, Scr. Metall. 16(1982) 483-488. [47] R. Zhang, S. Zhao, J. Ding, Y. Chong, T. Jia, C. Ophus, M. Asta, R.O. Ritchie, A.M. Minor, Nature 581 (2020) 283-287. [48] Y.L. Hu, X. Lin, S.Y. Zhang, Y.M. Jiang, X.F. Lu, H.O. Yang, W.D. Huang, J. Alloy. Compd. 767(2018) 330-344. [49] X. Liu, R. Hu, X. Luo, C. Yang, X. Gao, Mater. Sci. Eng. A 853 (2022) 143744. [50] S.L. Shang, C.L. Zacherl, H.Z. Fang, Y. Wang, Y. Du, Z.K. Liu, J. Phys.-Condens. Matter 24 (2012) 505403. [51] Z. Zhang, Q. Fu, J. Wang, R. Yang, P. Xiao, F. Ke, C. Lu, Int. J. Mech. Sci. 215(2022) 106953. [52] H. Zhang, S. Wang, Comput. Mater. Sci. 50(2011) 2162-2166. [53] F. Yan, W. Xiong, E.J. Faierson, Materials 10 (2017) 1260. [54] P. Gao, Z. Wang, J. Alloy. Compd. 854(2021) 157172. [55] Y. Zi, J. Meng, C. Zhang, Y. Yang, Y. Zhou, Y. Ding, J. Alloy. Compd. 789(2019) 472-484. [56] D. Herzog, V. Seyda, E. Wycisk, C. Emmelmann, Acta Mater. 117(2016) 371-392. [57] C. Yang, Z. Zhang, T. Cai, P. Zhang, Z. Zhang, Sci. Rep. 5(2015) 1-7. [58] Y. Tian, L. Zhao, S. Chen, A. Shibata, Z. Zhang, N. Tsuji, Sci. Rep. 5(2015) 1-9. [59] R. Li, M. Wang, Z. Li, P. Cao, T. Yuan, H. Zhu, Acta Mater. 193(2020) 83-98. [60] X. Liu, Y. Liu, Z. Zhou, K. Wang, Q. Zhan, X. Xiao, Mater. Sci. Eng. A 813 (2021) 141171. [61] E.I.Galindo-Nava, L.D. Connor, C.M.F. Rae, Acta Mater. 98(2015) 377-390. [62] E. Nembach, Scr. Metall. Mater. 24(1990) 787-792. [63] X. Wang, B.L. Zheng, K.H. Yu, S. Jiang, E.J. Lavernia, J.M. Schoenung, Addit. Manuf. 46(2021) 102154. [64] Z. Zhu, Q. Nguyen, F. Ng, X. An, X. Liao, P. Liaw, S. Nai, J. Wei, Scr. Metall. 154(2018) 20-24. [65] B. Yang, Z. Shang, J. Ding, J. Lopez, W. Jarosinski, Acta Mater. 222(2022) 117404. [66] D.L. Holt, J. Appl. Phys. 41(1970) 3197-3201. [67] J. Xu, H. Gruber, R. Boyd, S. Jiang, R.L. Peng, J.J. Moverare, Materials 10 (2020) 100657. |
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