J. Mater. Sci. Technol. ›› 2025, Vol. 223: 163-172.DOI: 10.1016/j.jmst.2024.10.037
• Research article • Previous Articles Next Articles
Lijun Jinga, Qian Lib, Jian Cuia, Yixiang Wanga, Zhankun Zhaoa, Tao Yangb,c, Yilu Zhaoa,*
Received:
2024-06-02
Revised:
2024-09-03
Accepted:
2024-10-20
Published:
2025-07-10
Online:
2024-11-24
Contact:
*E-mail address: Lijun Jing, Qian Li, Jian Cui, Yixiang Wang, Zhankun Zhao, Tao Yang, Yilu Zhao. Segregation-assisted yield anomaly in a Co-rich chemically complex intermetallic alloy at high temperatures[J]. J. Mater. Sci. Technol., 2025, 223: 163-172.
[1] A.T. Paxton, Y.Q. Sun, Philos. Mag. A 78 (1998) 85-104. [2] V. Paidar, D.P. Pope, V. Vitek, Acta Metall. 32(1984) 435-448. [3] V. Vitek, D.P. Pope, J.L.Bassani, in: F.R.N. Nabarro, M.S. Duesbery (Eds.), Dislocations in Solids, Elsevier, 1996, pp. 135-185. [4] S. Gupta, C.A. Bronkhorst, Int. J. Plast. 137(2021) 102896. [5] K. Aoki, Mater. Trans. 31(1990) 443-448. [6] S. Kobayashi, Y. Tsukamoto, T. Takasugi, H. Chinen, T. Omori, K. Ishida, S. Zaefferer, Intermetallics 17 (2009) 1085-1089. [7] T. Takasugi, C.L. Ma, S. Hanada, Mater. Sci. Eng. A (1995) 407-412192-193. [8] C.T. Liu, E.P. George, W.C. Oliver, Intermetallics 4 (1996) 77-83. [9] Y.X. Chen, M.Y. Yao, X.J. Wan, W.X. Xu, Intermetallics 8 (2000) 585-588. [10] T. Yang, B.X. Cao, T.L. Zhang, Y.L. Zhao, W.H. Liu, H.J. Kong, J.H. Luan, J.J. Kai, W. Kuo, C.T. Liu, Mater. Today 52 (2022) 161-174. [11] T. Yang, Y.L. Zhao, W.P. Li, C.Y. Yu, J.H. Luan, D.Y. Lin, L. Fan, Z.B. Jiao, W.H. Liu, X.J. Liu, J.J. Kai, J.C. Huang, C.T. Liu, Science 369 (2020) 427-432. [12] B. Xiao, J. Zhang, S. Liu, Y. Zhou, J. Ju, J.;J. Kai, Y. Zhao, X. Yang, L. Xu, S. Zhao, T. Yang, Acta Mater 262 (2024) 119459. [13] Y.L. Zhao, W.C. Xiao, Z.K. Zhao, Q. Li, J. Cui, J.H. Luan, C.T. Liu, P.K. Liaw, T. Yang, Scr. Mater. 229(2023) 115371. [14] B. Xiao, J. Zhang, S. Liu, Y. Zhao, L. Xu, C.T. Liu, T. Yang, J. Mater. Sci.Technol. 160(2023) 28-33. [15] F.R. Long, S.I. Baik, D.W. Chung, F. Xue, E.A. Lass, D.N. Seidman, D.C. Dunand, Acta Mater. 196(2020) 396-408. [16] J. Zhang, S. Ma, Y. Xiong, B. Xu, S. Zhao, Acta Mater. 219(2021) 117238. [17] A .A .N. Németh, D.J. Crudden, D.E.J. Armstrong, D.M. Collins, K. Li, A.J. Wilkinson, C.R.M. Grovenor, R.C. Reed, Acta Mater. 126(2017) 361-371. [18] Y. Fujimoto, Y. Kaneno, T. Takasugi, MRS Proc.1128 (2008) 1128;U05-31. [19] Y. Fujimoto, Y. Kaneno, M. Yoshida, T. Takasugi, Mater. Sci. Eng. A 528 (2011) 4104-4110. [20] S. Miura, K. Ohkubo, T. Mohri, Mater. Trans. 48(2007) 2403-2408. [21] N.L. Okamoto, T. Oohashi, H. Adachi, K. Kishida, H. Inui, P. Veyssière, Philos. Mag. 91(2011) 3667-3684. [22] V.K. Sikka, Intermetallic-based High-Temperature Materials, NACE International, TXUS, Houston, 1999. [23] D.;M. Wee, O.Noguchi, Y. Oya, T. Suzuki, Trans. Jpn. Inst. Met. 21(1980) 237-247. [24] W.C. Xiao, Y.L. Zhao, T. Yang, in: Z. Jiao, T. Yang (Eds.), Advanced Multicomponent Alloys: From Fundamentals to Applications, Springer Nature Singapore, Singapore, 2022, pp. 91-103. [25] W.W. Xu, J.J. Han, Y. Wang, C.P. Wang, X.J. Liu, Z.K. Liu, Acta Mater. 61(2013) 5437-5448. [26] R.L. Fleischer, D.M. Dimiduk, H.A. Lipsitt, Annu. Rev. Mater. Sci. 19(1989) 231-263. [27] Y.Q. Sun, P.M.Hazzledine, in: F.R.N. Nabarro, M.S. Duesbery (Eds.), Dislocations in Solids, Elsevier, 1996, pp. 27-68. [28] J.W. Edington, Practical Electron Microscopy in Materials Science, 1 ed., Red Globe Press London, Macmillan, 1974. [29] S. Takeuchi, E. Kuramoto, Acta Metall. 21(1973) 415-425. [30] Y.;L. Chiu, P.Veyssière, Philos. Mag. 83(2003) 179-202. [31] A. Korner, H.P. Karnthaler, C. Hitzenberger, Philos. Mag. A 56 (1987) 73-88. [32] Y.M.Wang;Koh, Mater. Sci. Technol. 33(2017) 934-943. [33] G. Chen, Y. Peng, G. Zheng, Z. Qi, M. Wang, H. Yu, C. Dong, C.T. Liu, Nat. Mater. 15(2016) 876-881. [34] Q. Zhu, Q. Huang, Y. Tian, S. Zhao, Y. Chen, G. Cao, K. Song, Y. Zhou, W. Yang, Z. Zhang, X. An, H. Zhou, J. Wang, Sci. Adv. 8 (2022) eabn8299. [35] Z. Chen, K. Kishida, H. Inui, M. Heilmaier, U. Glatzel, G. Eggeler, Acta Mater. 238(2022) 118224. [36] T. Takasugi, O. Izumi, Acta Metall. 33(1985) 39-48. [37] F. Liu, A.C.F. Cocks, E. Tarleton, J. Mech. Phys. Solids 176 (2023) 105300. [38] D.G. Morris, M. Leboeuf, Philos. Mag. Lett. 70(1994) 29-39. [39] N.L. Okamoto, S. Takemoto, Z.M.T.Chen, M. Yamaguchi, H.Inui, Int. J. Plast. 97(2017) 145-158. [40] A.B. Parsa, M. Sirrenberg, D. Bürger, M.J. Mills, A. Dlouhy, G. Eggeler, Mater. Sci. Eng. A 899 (2024) 146403. [41] R.W. Kozar, A. Suzuki, W.W. Milligan, J.J. Schirra, M.F. Savage, T.M. Pollock, Metall. Mater. Trans. A 40 (2009) 1588-1603. [42] T. Parthasarathy, S. Rao, D.M.Dimiduk, Superalloys(2004) 887-8962004. [43] P. Lu, Y. Ge, X. Jin, P. Li, X. Ji, D. Zhao, Z. Wang, X. Fan, Mech. Mater. 170(2022) 104326. [44] Q. Wang, Y. Wu, J. Chen, J. Song, C. Xiao, X. Hui, Int. J. Fatigue 165 (2022) 107223. [45] A. Bezold, N. Volz, M. Lenz, C.H. Zenk, E. Spiecker, M. Mills, M. Göken, S. Neumeier, Scr. Mater. 200(2021) 113928. [46] A.;C. Yeh, T.K. Tsao, K.C.Chang Y.J.Chang, J.;W. Yeh, M.;S. Chiou, S.;R. Jian, C.;M. Kuo, W.R. Wang, H. Murakami, Metall. Mater. Eng. 1(2015) 107. [47] E.I.Galindo;Nava, R.Schlütter, O.M.D.M. Messé, C. Argyrakis, C.M.F. Rae, Int. J. Plast. 169(2023) 103729. [48] C. Chen, F. Xu, J. Song, Int. J. Plast. 177(2024) 103982. [49] G.B. Viswanathan, S. Karthikeyan, P.M. Sarosi, R.R. Unocic, M.J. Mills, Philos. Mag. 86(2006) 4823-4840. [50] L. Kovarik, R.R. Unocic, J. Li, P. Sarosi, C. Shen, Y. Wang, M.J. Mills, Prog. Mater. Sci. 54(2009) 839-873. [51] G.B. Viswanathan, R. Shi, A. Genc, V.A. Vorontsov, L. Kovarik, C.M.F.Rae, M.J. Mills, Scr. Mater. 94(2015) 5-8. [52] X. Wu, S.K. Makineni, C.H. Liebscher, G. Dehm, J. Rezaei Mianroodi, P. Shanthraj, B. Svendsen, D. Bürger, G. Eggeler, D. Raabe, B. Gault, Nat. Commun. 11(2020) 389. [53] S.K. Makineni, M. Lenz, S. Neumeier, E. Spiecker, D. Raabe, B. Gault, Scr. Mater. 157(2018) 62-66. [54] S. Lu, S. Antonov, L. Li, C. Liu, X. Zhang, Y. Zheng, H.L. Fraser, Q. Feng, Acta Mater. 190(2020) 16-28. [55] T.M. Smith, B. Good, T.P. Gabb, B.D. Esser, A. Egan, L.J. Evans, D.W.McComb, M.J. Mills, Acta Mater. 172(2019) 55-65. [56] Y.M. Eggeler, K.V. Vamsi, T.M. Pollock, Annu. Rev. Mater. Res. 51(2021) 209-240. [57] T.M. Smith, B.D. Esser, B. Good, M.S. Hooshmand, G.B. Viswanathan, C.M.F. Rae, M. Ghazisaeidi, D.W. McComb, M.J. Mills, Metall. Mater. Trans. A 49 (2018) 4186-4198. [58] L.P. Freund, O.M.D.M. Messé, J.S. Barnard, M. Göken, S. Neumeier, C.M.F.Rae, Acta Mater. 123(2017) 295-304. [59] S. Lu, S. Antonov, F. Xue, L. Li, Q. Feng, Acta Mater. 215(2021) 117099. [60] T.M. Smith, N.A. Zarkevich, A.J. Egan, J. Stuckner, T.P. Gabb, J.W. Lawson, M.J. Mills, Commun. Mater. 2(2021) 106. [61] Y. Minamino, S.B. Jung, T. Yamane, K. Hirao, Metall. Trans. A 23 (1992) 2783-2790. [62] J. Huang, M. Meyer, V. Pontikis, Phys. Rev. Lett. 63(1989) 628-631. [63] R.C. Picu, D. Zhang, Acta Mater. 52(2004) 161-171. [64] A.H. Cottrell, B.A. Bilby, Proc. Phys. Soc. A 62 (1949) 49. [65] T.M. Smith, Y. Rao, Y. Wang, M. Ghazisaeidi, M.J. Mills, Acta Mater. 141(2017) 261-272. [66] R.W. Balluffi, S.M. Allen, W.C.Carter, in: The Diffusion Equation, Kinetics of Materials, Wiley, 2005, pp. 77-97. [67] C. Zener, J. Appl. Phys. 20(2004) 950-953. [68] E. Orowan, Proc. Phys. Soc. 52(1940) 8. [69] Y. Xia, S. Lyu, W. Li, Y. Chen, A.H.W.Ngan, Int. J. Plast. 169(2023) 103719. [70] A. Bezold, J. Vollhüter, N. Karpstein, M. Lenz, A .P.A . Subramanyam, C.H. Zenk, T. Hammerschmidt, E. Spiecker, M. Göken, S. Neumeier, Commun. Mater. 5(2024) 8. [71] L. Lu, Y. Shen, X. Chen, L. Qian, K. Lu, Science 304 (2004) 422-426. [72] B.C.De Cooman, Y.Estrin, S.K. Kim, Acta Mater. 142(2018) 283-362. [73] Q. Li, S. Xue, J. Wang, S. Shao, A.H. Kwong, A. Giwa, Z. Fan, Y. Liu, Z. Qi, J. Ding, H. Wang, J.R. Greer, H. Wang, X. Zhang, Adv. Mater. 30(2018) 1704629. [74] Y.F. Zhang, S. Xue, Q. Li, C. Fan, R. Su, J. Ding, H. Wang, H. Wang, X. Zhang, Scr. Mater. 148(2018) 5-9 . |
[1] | Xuetong Zeng, Haitao Liu, Shasha Yang, Chengtao Yu, Minghui Chen, Fuhui Wang. Microstructure and mechanical properties of in-situ nano TiC reinforced Ni-based alloy composites prepared by spark plasma sintering [J]. J. Mater. Sci. Technol., 2025, 206(0): 100-112. |
[2] | Nagasivamuni Balasubramani, Michael Moodispaw, Alan A Luo. Controlling the Fe-intermetallic phases and mechanical properties of secondary Al-9Si-1Fe alloy with Cr and Mn additions [J]. J. Mater. Sci. Technol., 2025, 206(0): 135-152. |
[3] | Shao-You Zhang, Yuan-Ting Mo, Zhen-Ming Hua, Xu Liu, Ze-Tian Liu, Hui-Yuan Wang. Improving long-term thermal stability in twin-roll cast Al-Mg-Si-Cu alloys by optimizing Mg/Si ratios [J]. J. Mater. Sci. Technol., 2025, 206(0): 164-175. |
[4] | Wei Liu, Yintao Zhang, Binghao Wang, Shifeng Liu, Yan Wang, Ling Zhang, Liang Zhang, Lai-Chang Zhang, Weijie Lu, Liqiang Wang. Achieving excellent strength-ductility-superelasticity combination in high-porosity NiTiNb scaffolds via high-temperature annealing [J]. J. Mater. Sci. Technol., 2025, 206(0): 221-233. |
[5] | Wei Feng, Zhixin Xia, Jixin Hou, Tao Jiang, Zhonghan Liu, Zhenxuan Xie, Chaohui Zhu, Yunhe Yu. Heterophase interfacial strengthening mechanism in CrNiCux medium-entropy alloys fabricated by laser-directed energy deposition [J]. J. Mater. Sci. Technol., 2025, 206(0): 269-281. |
[6] | Yong Fan, Jinfeng Nie, Zhigang Ding, Yujing Zhang, Xiang Chen, Wei Liu, Sen Yang, Sida Liu, Xiangfa Liu, Yonghao Zhao. A facile high-efficiency preparation strategy for Al-containing multi-component boride microcrystals with superior comprehensive performance [J]. J. Mater. Sci. Technol., 2025, 204(0): 190-203. |
[7] | Bin Zhang, Rongxin Sun, Pan Ying, Song Zhao, Yitong Zou, Lei Sun, Zihe Li, Yufei Gao, Mengdong Ma, Lingyu Liu, Chao Liu, Bo Xu. Microstructure and mechanical properties of high-pressure sintered B6O-SiC nanocomposites [J]. J. Mater. Sci. Technol., 2025, 204(0): 238-244. |
[8] | Tao Wen, Zhicheng Li, Jianying Wang, Yimou Luo, Feipeng Yang, Zhilin Liu, Dong Qiu, Hailin Yang, Shouxun Ji. From crack-prone to crack-free: Eliminating cracks in additively manufacturing of high-strength Mg2Si-modified Al-Mg-Si alloys [J]. J. Mater. Sci. Technol., 2025, 204(0): 276-291. |
[9] | Yuexing Liang, Guoai Li, Li Liu, Hao Jiang, Xiaoya Wang, Jian Cao, Jiantang Jiang, Wenzhu Shao, Liang Zhen. Influence of Cu and Ti microalloying on the multiscale microstructure evolution and mechanical properties of 7xxx alloys [J]. J. Mater. Sci. Technol., 2025, 223(0): 235-251. |
[10] | Dongyu Wei, Wenzhe Zhou, Decheng Kong, Yusheng Tian, Jian He, Rui Wang, Wenmao Huang, Qingbiao Tan, Guoliang Zhu, Baode Sun. Pre-softening HIP treatment enabled crack-healing and superior mechanical properties for René 142 superalloy fabricated via laser powder bed fusion [J]. J. Mater. Sci. Technol., 2025, 210(0): 58-71. |
[11] | Zhi Dong, Changjun Han, Guoqiang Liu, Jiao Zhang, Qinglin Li, Yanzhe Zhao, Hong Wu, Yongqiang Yang, Jianhua Wang. Revealing anisotropic mechanisms in mechanical and degradation properties of zinc fabricated by laser powder bed fusion additive manufacturing [J]. J. Mater. Sci. Technol., 2025, 214(0): 87-104. |
[12] | Xueqian Gou, Ruqing Cao, Weihua Zhou, Zheling Shen, Yi Li. Microstructures, mechanical properties, and strengthening mechanisms of the (NbMoTa)100-xCx refractory medium-entropy alloys [J]. J. Mater. Sci. Technol., 2025, 214(0): 105-119. |
[13] | Xu Wang, Yujie Zhong, Qiaodan Hu. A review of Al2O3-based eutectic ceramics for high-temperature structural materials [J]. J. Mater. Sci. Technol., 2025, 214(0): 214-232. |
[14] | Xingran Li, Qiang Li, Minghao Nie, Pengfei Jiang, Shenghong Yan, Yue Jiang, Zhihui Zhang. Constructing the discrete gradient structure for enhancing interfacial bond strength of Ti6Al4V/NiTi heterostructured materials [J]. J. Mater. Sci. Technol., 2025, 214(0): 266-271. |
[15] | Haizheng Zhang, Boyang Wu, Jiang Yi, Zhiqian Rao, Pan Wang, Shuai Wang. Elucidating the mechanism for high-temperature heat treatment induced embrittlement of laser-powder-based fusion manufactured NiTi alloy [J]. J. Mater. Sci. Technol., 2025, 216(0): 52-65. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||