代表性论文: (1).Y. Ran, M. Zhang,R.S. Han, J.W. Qiao. Competition between work hardening and softening in dislocation-mediated metallic glass matrix composites. Journal of Alloys and Compounds, 2023, 938: 168435 (2).M. Zhang, J.X. Hou, H.J. Yang, et al. Tensile strength prediction of dual-phase Al0.6CoCrFeNi high-entropy alloys. International Journal of Minerals, Metallurgy and Materials,2020,10(27):1341-1346 (3).J.X. Hou, M. Zhang, H.J. Yang, et al. Deformation Behavior of Al0.25CoCrFeNi High-Entropy Alloy after Recrystallization. Metals,2017, 7(4): 111. (4).J.X. Hou, M. Zhang, S.G Ma, et al. Strengthening in Al0.25CoCrFeNi high-entropy alloys by cold rolling. Materials Science & Engineering A,707(2017): 593-601 (5).Z.H. Xia, M. Zhang, Y. Zhang, et al. Effects of Ni-P amorphous films on mechanical and corrosion properties of Al0.3CoCrFeNi high-entropy alloys. Intermetallics,94(2018): 65-72 (6).J.X. Hou, M. Zhang, H.J. Yang, et al. Surface strengthening in Al0.25CoCrFeNi high-entropy alloy by boronizing. Materials Letters,238(2019): 258–260 (7).M. Zhang, X.P. Song, L. Yu, et al. In situ observation of fatigue crack initiation and propagation behavior of a high-Nb TiAl alloy at 750 ℃. Material Science and Engineering: A.2015, 622: 30-36 (8).M. Zhang, X.P. Song, L. Yu, et al. Fatigue small crack growth threshold determination of a high-Nb TiAl alloy at different temperatures by in-situ observation. International Journal of Minerals, Metallurgy and Materials.2013, 20(12): 1192-1197 (9).X.S. Wang, M. Zhang, X.P. Song. Fatigue Failure Analyses on a Ti-45Al-8Nb-0.2W-0.2B-0.1Y Alloy at Different Temperatures. Materials. 2012, 5(11): 2280-2291 (10).张敏,李宏良,宋西平,等.高 Nb-TiAl 合金的高温循环变形机制.北京科技大学学报.2014,36(7):919-924 |