师资队伍

代表论著

发表于: 2023-06-15 11:44 点击:

[1] S.Q. Zhang, L.M. Qi, S.L. Liu, Z.X. Peng, Y.F. Cheng, F. Huang, J. Liu*. Synergistic effects of Nb and Mo on hydrogen-induced cracking of pipeline steels: A combined experimental and numerical study. Journal of Materials Science & Technology, 2023, 158: 156-170.

[2] Z.Y. Cheng, Z.X. Peng, B.L. Zhong, H.J. Liu, Z.H. Lu, S.C Zhu, J. Liu*. Substitution behavior of Cu doped into Fe3Si and its effect on the electronic structure and mechanical properties based on first-principles calculation. Intermetallics, 2023, 160: 107918.

[3] D. Liu, J. Liu*, S.C. Wu, F. Huang. Corrosion fatigue-cracking behaviors of low alloy steels in seawater for offshore engineering structures. Metallurgical and Materials Transactions A, 2022, 53: 2369–2382.

[4] P. Cheng, J. Liu*, X.Q. Huang, F. Huang, T. Pang. Effect of silicon on the corrosion behaviour of 690 MPa weathering bridge steel in simulated industrial atmosphere. Construction and Building Materials, 2022, 328: 127030.

[5] S.Q. Zhang, W.Q. Chen, F. Huang, Y.F. Cheng, K.L. Li, Q. Hu, J. Liu*. The significant effect of tantalum on the hydrogen-induced cracking of pipeline steel: Morphology, hydrogen permeation, and theoretical studies. Corrosion Science, 2022, 200: 110213.

[6] Z.X. Peng, J. Liu*, F. Huang, S.Q. Zhang, Q. Hu, Z. Wang, Y.C. Wang. The significance of inclusion morphology and composition in governing hydrogen transportation and trapping in steels. International Journal of Hydrogen Energy, 2021, 46(56): 28811-28822.

[7] Z.Y. Cheng, J. Liu*, Z. Xiang, J. Jia, O. Volkova, M. Wendler. Effect of Cu addition on microstructure, texture and magnetic properties of 6.5 wt.% Si electrical steel. Journal of Magnetism and Magnetic Materials, 2021, 519: 167471.

[8] Z.X. Peng, J. Liu*, F. Huang, Q. Hu, C.S Cao, S.P. Hou. Comparative study of non-metallic inclusions on the critical size for HIC initiation and its influence on hydrogen trapping. International Journal of Hydrogen Energy. 2020, 45(22): 12616-12628.

[9] M.J. Dai, J. Liu*, F. Huang, Q. Hu, C.S Cao, Y.F. Cheng. Derivation of the mechanistic relationship of pit initiation on pipelines resulting from cathodic protection potential fluctuations. Corrosion Science, 2020, 163: 108226.

[10] M.J. Dai, J. Liu*, F. Huang, Y.H. Zhang, Y.F. Cheng. Effect of cathodic protection potential fluctuations on pitting corrosion of X100 pipeline steel in acidic soil environment. Corrosion Science, 2018, 143: 428-437.


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