
常 月
姓名:常 月
所在系所:腐蚀控制系统工程研究所
职称:副研究员
通信地址:北京市海淀区学院路30号北京科技大学新材料技术研究院
邮编:100083
办公地点:科技楼206
办公电话:
邮箱:changyue@ustb.edu.cn
个人简介
研究方向
科研业绩
1. Y Chang, Z Pan, H Luo, et al. Defeating hydrogen induced embrittlement via introducing deformation twins and microbands in nickel-based alloys, Engineering Failure Analysis 186 (2026) 110461
2. Y Chang, X Jin, H Luo, et al. Investigation on the effect of applied potential on the corrosion behavior of commercially pure nickel in an alkaline water electrolysis environment, Surfaces and Interfaces 86 (2026) 108730
3. H Cheng, H Luo, Y Chang, Insights into the degradation mechanisms of cost-effective bipolar plate in PEMWE environment under photovoltaic fluctuating inputs, Corrosion Science 259 (2026) 113490
4. Z Li, H Luo*, L Hou, Q Zhao, X Wang, Y Chang* Effect of Mn addition on the corrosion behavior of FeCrNiMnxSi alloys in simulated seawater environment, Corrosion Science 252 (2025) 112978
5. Y Chang, K Zhang, J He, et al. Effect of Dy alloying and grain boundary diffusion on the corrosion behavior and magnetic stability of sintered NdFeB magnets in a hot-humid environment, Surfaces and Interfaces 76 (2025) 107881
6. Y Chang, H Cheng, X Jin, et al. Effect of Si on the corrosion resistance of AlZrNbTi lightweight refractory high-entropy alloys in acidic environment, Corrosion Science 238 (2024) 112377
7. C Dou, H Luo, Y Chang, et al. Effect of hydrogen charging on the corrosion behavior of AlNbTiZr alloy in acidic environments, Corrosion Science 240 (2024) 112438
8. D Bi, Y Chang, H Luo, et al. Corrosion behavior and passive film characteristics of AlNbTiZrSix high-entropy alloys in simulated seawater environment, Corrosion Science 224 (2023) 111530
9. Y Chang, M Han, Y Ding, et al. Interface Engineering of CoFe-LDH Modified Ti: α-Fe2O3 Photoanode for Enhanced Photoelectrochemical Water Oxidation, Nanomaterials 2023, 13, 2579
10. Y Chang, Y Xuan, H Quan, et al. Hydrogen treated Au/3DOM-TiO2 with promoted photocatalytic efficiency for hydrogen evolution from water splitting, Chemical Engineering Journal 382 (2020) 122869
11. 一种提高半导体光电化学阴极保护耐蚀性差金属的方法,202411537723.5
12. 一种用于光电化学阴极保护的有机复合防护涂层,202310230784.6
13. 基于深度学习的高熵合金压缩力学性能预测软件V1.0,2024SR0371221
14. 基于机器学习的多主元合金腐蚀性能预测软件V1.0,2024SR0841741
15. 基于多模态大模型的先进金属材料腐蚀数据提取与标准化系统1.0,2026SR0614048