姓    名:魏亮
职    称:副研究员
出生年月:1989年3月
联系电话:021-66136190
电子邮箱:weiliang1204@shu.edu.cn
个人简况

教育经历:

2011.9-2017.1 北京科技大学工学博士

2007.9-2011.7 中国矿业大学(北京) 工学学士

工作经历:

2022.1-至今 德国马普学会钢铁研究所 洪堡学者

2023.9-至今 上海大学材料基因组工程研究院 副研究员

2019.6-2023.8 上海大学材料科学与工程学院 副研究员

2017.5-2019.5 上海大学材料基因组工程研究院 师资博士后 

研究方向

(1)数据驱动高性能结构功能一体化合金/涂层设计

(2)基于高通量实验/计算和机器学习的新能源关键材料使役行为(腐蚀、氢脆等)研究及其多尺度高效评价

(3)材料表界面电化学腐蚀/钝化理论研究

(4)增材制造合金设计与服役

代表性成果

1. L. Wei*, W. M. Qin, J. Y. Chen, et al., L21-strengthened face-centered cubic high-entropy alloy with well pitting resistance, Corrosion Science 215 (2023) 111043.

2. L. Wei*, W. M. Qin, Corrosion mechanism of eutectic high-entropy alloy induced by micro-galvanic corrosion in sulfuric acid solution, Corrosion Science 206 (2022) 110525.

3. L. Zhao, L. Wei*, et al., A highly corrosion resistant and nondestructive menthol coating strategy for short-term protection of bronzes, Progress in Organic Coatings 170 (2022) 106947.

4. J. J. Nie, L. Wei*, et al., Corrosion mechanism of additively manufactured 316L stainless steel in 3.5 wt.% NaCl solution, Materials Today Communications 26 (2021), 101648.

5. J. J. Nie1, L. Wei1, et al., High-throughput characterization of microstructure and corrosion behavior of additively manufactured SS316L-SS431 graded material, Additive Manufacturing 35 (2020) 101295.

6. Y. Jiang, G. T. Zhang, J. J. Xing, H. Q. Fan, L. Wei*, et al., In situ growth and protectiveness mechanism of layered double hydroxide/oxide hierarchical structure on copper alloy in 3.5 wt% NaCl solution, Surface & Coatings Technology 397 (2020) 126042.

7. L. Wei, K. Gao, Understanding the general and localized corrosion mechanisms of Cr-containing steels in supercritical CO2-saturated aqueous environments, Journal of Alloys and Compounds 792 (2019) 328-340.

8. L. Wei, Y. Liu, F. Cheng, Q. Li, Effect of roughness on the general corrosion and pitting of (CoCrFeNi)0.89(WC)0.11 high-entropy alloy composite in 3.5 wt.% NaCl solution, Corrosion Science, 146 (2019), 44-57.

9. L. Wei, X. Pang, et al., Effect of flow rate on localized corrosion of X70 steel in supercritical CO2 environments, Corrosion Science, 136 (2018): 339-351.

10. L. Wei, K. Gao, et al., Corrosion of low alloy steel containing 0.5% chromium in supercritical CO2-saturated brine and water-saturated supercritical CO2 environments, Applied Surface Science 440 (2018): 524-534.



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