J. Mater. Sci. Technol. ›› 2025, Vol. 231: 245-255.DOI: 10.1016/j.jmst.2024.12.031
• Research article • Previous Articles Next Articles
Wenjun Maa,b,c, Yanfang Wanga,b,c,*, Siying Wanga,b,c, Lei Gaoa,b,c, Fei Caoa,b,c, Yihui Jianga,b,c, Shuhua Lianga,b,c,*
Received:2024-11-05
Revised:2024-12-14
Accepted:2024-12-16
Published:2025-10-01
Online:2025-01-24
Contact:
*E-mail addresses: Wenjun Ma, Yanfang Wang, Siying Wang, Lei Gao, Fei Cao, Yihui Jiang, Shuhua Liang. Enhancing high-temperature properties in laser powder bed fusion of Cu-Cr-Zr alloy via heat-stable dislocations and dual-nanoprecipitates[J]. J. Mater. Sci. Technol., 2025, 231: 245-255.
| [1] Z.Y. Zhang, L.X. Sun, N.R. Tao, J. Mater. Sci.Technol. 48(2020) 18-22. [2] L.X. Sun, N.R. Tao, K. Lu, Scr. Mater. 99(2015) 73-76. [3] P. Lassègue, C. Salvan, E.D. Vito, R. Soulas, M. Herbin, A. Hemberg, T. Godfroid, T. Baffie, G. Roux, Addit. Manuf. 39(2021) 101888. [4] X.W. Zhang, X. Zhou, Q.J. Wang, B. Liang, in: Proceedings of the 2015 International Conference on Power Electronics and Energy Engineering, Hong Kong, China, 2015. [5] P.R. Gradl, C. Protz, K. Cooper, C. Garcia, D. Ellis, L. Evans, in: Proceedings of the 2019 AIAA Propulsion and Energy Forum, Indianapolis, IN, U.S., 2019. [6] S.J. Zinkle, Phys. Scr. T167(2016) 014004. [7] X.X. Zhang, Y.L. Yuan, S.Q. Zhao, J. Zhang, Q.Z. Yan, Nucl. Mater. Energy 30 (2022) 101123. [8] J.H. Kim, T.S. Byun, D.T. Hoelzer, C.H. Park, J.T. Yeom, J.K. Hong, Mater. Sci. Eng. A 559 (2013) 111-118. [9] L.J. Cao, C. Hou, F.W. Tang, S.H. Liang, J.H. Luan, Z.B. Jiao, C. Liu, X.Y. Song, Z.R. Nie, Compos. Part B-Eng. 208(2021) 108600. [10] S.J. Zhang, R.G. Li, H.J. Kang, Z.N. Chen, W. Wang, C.L. Zou, T.J. Li, T.M. Wang, Mater. Sci. Eng. A 680 (2017) 108-114. [11] I.S. Batra, G.K. Dey, U.D. Kulkarni, S. Banerjee, J. Nucl. Mater. 299(2001) 91-100. [12] J.P. Qu, S.P. Yue, W.S. Zhang, X.H. Chen, Z.K. Guo, B.W. Dong, Z. Ren, J.C. Jie, T.J. Li, J. Alloy. Compd. 910(2022) 164945. [13] G. Purcek, H. Yanar, M. Demirtas, D.V. Shangina, N.R. Bochvar, S.V. Dobatkin, J. Alloy. Compd. 816(2020) 152675. [14] A. Vinogradov, V. Patlan, Y. Suzuki, K. Kitagawa, V.I. Kopylov, Acta Mater. 50(2002) 1639-1651. [15] J. Bi, L.K. Wu, S.D. Li, Z.Y. Yang, X.D. Jia, M.D. Starostenkov, G.J. Dong, J. Mater. Res.Technol. 26(2023) 4606-4628. [16] X. Yang, Y.L. Wang, W.Q. Zhang, Y. Qi, B.P. Zhang, H. Zhang, H.H. Zhu, Mater. Sci. Eng. A 878 (2023) 145222. [17] J. Bi, Z.L. Lei, Y.B. Chen, X. Chen, Z. Tian, N.N. Lu, X.K. Qin, J.W. Liang, J. Mater. Sci.Technol. 69(2021) 200-211. [18] A.B. Spierings, K. Dawson, P. Dumitraschkewitz, S. Pogatscher, K. Wegener, Addit. Manuf. 20(2018) 173-181. [19] Q.J. Wang, Y.F. Zhang, K.S. Wang, S.F. Liu, X. Zhang, H.J. Shao, Mater. Sci. Eng. A 857 (2022) 144054. [20] W.J. Ma, F. Cao, L. Gao, Y.H. Jiang, Z. Chen, H. Shi, Y.F. Wang, S.H. Liang, J. Mater. Sci.Technol. 191(2024) 122-133. [21] D.L. Zeng, Y.T. Qiu, Y.L. Yi, D.X. Sun, C.L. Shi, Y. Lu, S.F. Zhou, Wear 558-559(2024) 205591. [22] J.Q. Zhou, Y.S. Huang, Z. Li, X. Tong, D.Q. You, J.J. Yang, Q.M. Zhang, W. Li, X.J. Wang, Mater. Chem. Phys. 296(2023) 127249. [23] Y.T. Qiu, P. Ren, H. Yang, B.S. Guo, C.L. Shi, Y. Lu, L.C. Zhang, S.F. Zhou, Tribol. Int. 200(2024) 110096. [24] J.K. Li, T. Cheng, Y.B. Liu, Y.Q. Yang, W. Li, Q.S. Wei, Addit. Manuf. 54(2022) 102726. [25] H.Y. Song, C.Y. Zhao, H.N. Bai, X.K. Ren, H.F. Shao, J.Z. Chi, G.J. Dong, J. Bi, C.W. Tan, J. Alloy. Compd. 1010(2025) 177524. [26] J. Bi, J.Z. Chi, H.Y. Song, H.F. Shao, K.Q. Wang, Z.Y. Yang, X.D. Jia, G.J. Dong, Mater. Today Commun. 39(2024) 109156. [27] B.B. He, B. Hu, H.W. Yen, G.J. Cheng, Z.K. Wang, H.W. Luo, M.X. Huang, Science 357 (2017) 1029-1032. [28] Y.K. Mu, L.H. He, S.H. Deng, Y.F. Jia, Y.D. Jia, G. Wang, Q.J. Zhai, P.K. Liaw, C.T. Liu, Acta Mater. 232(2022) 117975. [29] B.L. Bramfitt, Metall. Mater. Trans. B 1 (1970) 1987-1995. [30] Y.H. Jiang, X.D. Zhang, P.T. Ca, P.T. Li, F. Cao, F. Gao, S.H. Liang, Acta Mater. 245(2023) 118659. [31] H. Jin, D.J. Lloyd, Scr. Mater. 50(2004) 1319-1323. [32] S.H. Fu, T. Cheng, Q.C. Zhang, Q. Hu, P.T. Cao, Acta Mater. 60(2012) 6650-6656. [33] J. Mola, G.Q. Luan, Q.L. Huang, C. Ullrich, O. Volkova, Y. Estrin, Acta Mater. 212(2021) 116888. [34] Y.F. Wang, X. Lin, Y.F. Zhao, Z.H. Wang, X.B. Yu, X.H. Gao, W.D. Huang, J. Mater. Sci.Technol. 136(2023) 223-235. [35] X.F. Chen, P. Dong, Y. Zeng, H.H. Yao, J.M. Chen, Mater. Charact. 214(2024) 114103. [36] Q.J. Wang, X. Zhou, B. Ling, Y. Zhou, Acta Metall. Sin. 52(2016) 1477-1483. [37] J.H. You, Nucl. Mater. Energy 5 (2015) 7-18. [38] D. Hancock, D. Homfray, M. Porton, I. Todd, B. Wynne, J. Nucl. Mater. 512(2018) 169-183. [39] M.M. Dadras, D.G. Morris, Scr. Mater. 38(1997) 199-205. [40] J.W. Davis, P.D.S. b, J.Nucl. Mater. 233-237(1996) 1593-1596. [41] X.D. Zhang, Y.H. Jiang, F. Cao, T. Yang, F. Gao, S.H. Liang, J. Mater. Sci.Technol. 172(2024) 94-103. [42] Y.J. Zhou, S.M. Yin, Q.L. Zhou, Z.L. Chen, L.H. Xue, H.P. Li, Y.W. Yan, J. Mater. Res.Technol. 21(2022) 2976-2988. [43] B.H. Tian, P. Liu, K.X. Song, Y. Li, Y. Liu, F.Z. Ren, J.H. Su, Mater. Sci. Eng.A 435-436(2006) 705-710. [44] R.P. Minneci, E.A. Lass, J.R. Bunn, H. Choo, C.J. Rawn, Int. Mater. Rev. 66(2020) 394-425. [45] C.Y. Zeng, H. Wen, B.C. Bernard, J.R. Raush, P.R. Gradl, M. Khonsari, S.M. Guo, Manuf. Lett. 28(2021) 25-29. [46] H.F. Xie, X.P. Tang, X.H. Chen, F.J. Sun, L.Y. Dong, Y.X. Tan, H. Chu, H.L. Zhou, P. Liu, S.L. Fu, J. Mater. Res.Technol. 23(2023) 3322-3336. [47] X.Y. Fang, W.S. Xia, Q.S. Wei, Y.P. Wu, W.W. Lv, W.T. Guo, Metals 11 (2021) 1410. [48] J.H. Zhu, C.T. Liu, Intermetallics 10 (2002) 309-316. [49] M.N. Zhang, J.H. Wang, Y.P. Zhu, L. Zhang, P.P. Jin, Mater. Sci. Eng. A 775 (2020) 138978. [50] J.D. Boyd, R.B. Nicholson, Acta Metall. 19(1971) 1379-1391. [51] J.J. Zhang, S.R. Zhang, X.H. Cao, L.J. Li, X. Yang, Z.N. Chen, E.Y. Guo, H.J. Kang, R.G. Li, T.M. Wang, Mater. Charact. 200(2023) 112904. [52] J.P. Qu, W.S. Zhang, S.P. Yue, Q. Liu, Z.K. Guo, B.W. Dong, J.C. Jie, Z.Q. Cao, Y. Fu, T.J. Li, Mater. Sci. Eng. A 861 (2022) 144328. [53] Y.Q. Sun, L.J. Peng, G.J. Huang, H.F. Xie, X.J. Mi, X.H. Liu, Mater. Sci. Eng. A 776 (2020) 139009. [54] J.Z. Li, H. Ding, B.M. Li, W.L. Gao, J. Bai, G. Sha, Mater. Sci. Eng. A 802 (2021) 140628. [55] G.L. Xu, Y.Q. Zhu, L.J. Peng, H.F. Xie, Z.D. Li, S.H. Huang, Z. Yang, W.J. Zhang, X.J. Mi, Materials (Basel) 15(2022) 8441. [56] S.H. Zhou, R.E. Napolitano, Acta Mater. 58(2010) 2186-2196. [57] D. Turnbull, B. Vonnegut, Ind. Eng. Chem. 44(1952) 1292-1298. [58] Q.Y. Tan, J.Q. Zhang, Q. Sun, Z.Q. Fan, G. Li, Y. Yin, Y.G. Liu, M.X. Zhang, Acta Mater. 196(2020) 1-16. [59] Y.G. Liu, J.Q. Zhang, Q.Y. Tan, Y. Yin, S.Y. Liu, M. Li, M.Q. Li, Q. Liu, Y. Zhou, T. Wu, F. Wang, M.X. Zhang, Acta Mater. 220(2021) 117311. [60] Y.I. Bourezg, K. Abib, H. Azzeddine, D. Bradai, Thermochim. Acta 686 (2020) 178550. [61] Y.B. Du, Y.J. Zhou, K.X. Song, T. Huang, D. Hui, H.T. Liu, C. Cheng, J.Z. Yang, L.Y. Niu, H.W. Guo, J. Mater. Res.Technol. 14(2021) 1451-1458. [62] V.A. Phillips, Metallography 7 (1974) 137-155. [63] R.P. Singh, A. Lawley, S. Friedman, Y.V. Murty, Mater. Sci. Eng. A 145 (1991) 243-255. [64] M. Hatakeyama, T. Toyama, J. Yang, Y. Nagai, M. Hasegawa, T. Ohkubo, M. Eldrup, B.N. Singh, J. Nucl. Mater.386-388(2009) 852-855. [65] C.M. Zhang, Y. Jiang, Y.J. Zhou, X.H. Guo, K.X. Song, J. Mater. Res.Technol. 24(2023) 824-832. [66] L.X. Li, Q.J. Wang, K.S. Wang, W. Wang, Y.F. Zhang, X. Zhang, Mater. Sci. Eng. A 901 (2024) 146557. [67] D.N. Seidman, E.A. Marquis, D.C. Dunand, Acta Mater. 50(2002) 4021-4035. [68] C. Salvan, L. Briottet, T. Baffie, L. Guetaz, C. Flament, Mater. Sci. Eng. A 826 (2021) 141915. [69] M. Dixit, R.S. Mishra, K.K. Sankaran, Mater. Sci. Eng. A 478 (2008) 163- 172. [70] J.Z. Chi, H.F. Shao, H.Y. Song, X.Y. Wang, K.L. Wu, Q.L. Zheng, M.D. Starostenkov, G.J. Dong, J. Bi, Mater. Sci. Eng. A 913 (2024) 147029. [71] C.Y. Wen, Y.T. Qiu, Z.G. Zhang, K.M. Li, C. Deng, L.X. Hu, D.C. Chen, Y. Lu, S.F. Zhou, J. Alloy. Compd. 971(2024) 172675. [72] K. Saravanan, V.M.J.Sharma, A.K. Asraff, P.R. Narayanan, S.C. Sharma, K.M. George, J. Mater. Eng. Perform. 24(2015) 4721-4727. |
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