副教授 硕士生导师
电子邮箱:
入职时间:2016-03-08
学历:博士研究生毕业
在职信息:在职
CURRICULUM VITAE
Xiahe Liu
Affiliation: The Institute of Resource and Environment,
School of Metallurgy, Northeastern University
Shenyang, Liaoning 110819, CHINA
Tel: 0086-15840112296
Email: liuxiahe@smm.neu.edu.cn
Address: 1 Aomen road, Heping district, Shenyang
Personal Data: Date of Birth: 22-08-1983, Unmarried
Personal background
Associate Professor 2016.3-present
Northeastern University(NEU), Shenyang, CHINA
Job in Surface modification and resource reservation, Chief participant
Project: Corrosion and protection of galvanized steel and welding materials in severe environments
Jointedly supported by National Natural Science Foundation of China (NSFC) (Grant No. 51701038), NSFC (Grant No. 5160010677) and Fundamental Research Funds for the Central Universities (Grant No. N162503002)
Visiting Scholar 2019.12-2020.01
Department of Nuclear Engineering, University of California at Berkeley, Berkeley, CA, US
Job in Corrosion Thoery of overpack material for the isolation of high‐level nuclear waste, Chief participant
Project: Corrosion and protection of carbon steel in the concrete pore water environments
Jointedly supported by ONDRAF/NIRAS, the Belgian Agency for Radioactive Waste and Enriched Fissile Materials.
Associate Professor 2014.1-2016.3
Sichuan Institute of Materials and Technology (SIMT), Mianyang, China
Job in Corrosion Science and Protection, Chief participant
Project: Corrosion and protection of steels in marine environments, electrochemical planting for carbon steels in atmospheric environments.
Ph. D. 2008.9-2014.1 GPA: 81.6/100
Institute of Metal Research (IMR), Chinese Academy of Sciences (CAS), Shenyang
Major in Corrosion Science and Protection, Chief participant
Project: Effects of Zn injection on corrosive performances of nuclear-grade stainless steels and nickel-based alloys in high temperature aqueous solution
Jointly supported by National Science and Technology Major Project (Grant No. 2011ZX06004-010), National Basic Research Program of China (Grant No. 2011CB610506) and the Innovation Fund of IMR, CAS. (Supervised by Prof. E-H Han and X. Wu)
B. E. 2004.9-2008.6 GPA: 82.5/100
Dept. of MSE, Central South University (CSU), Changsha, China
Major in Materials Processing Engineering, Chief participant
Project: Studies of quench sensitivity and corrosive behavior for aluminum alloys
Supported by 973 project (Grant No. 2005CB623700) (Supervised by Prof. X. Zhang and Y. Deng)
Research interests
1. I am interested in the uniform corrosion, corrosion fatigue, hydrogen embrittlement and stress corrosion cracking of nuclear-grade structural materials and nuclear fuels in the advanced nuclear reactor, like Very High Temperature Reactor (VHTR), Supercritical Water Reactor (SCWR), and Molten Salt Reactor (MSR) et al;
2. I am astonished about the corrosion resistance and surface modification of environment-friendly galvanized steel and welding materials, the photocatalysis and biocompatibility of TiO2 Nanotube Array Coating
3. I am good at analyzing corrosion behaviors and corrosion evolvements of metals and alloys by using electrochemical techniques, like potentiodynamic polarization curve, MS, EIS et al, and I am familiar with the conventional techniques of surface analysis, such as SEM, XPS, XRD, TEM, IR, UV-Vis et al;
4. I can figure out expertly the crystal structure of specimen by XRD and other analysis softwares, and I am familiar with the thermodynamic calculations of oxides by E-pH diagram, oxide solubility.
Publications
1. X. Liu, X. Wu, E.-H. Han, Electrochemical and surface analytical investigation of the effects of Zn concentrations on characteristics of oxide films on 304 stainless steel in borated and lithiated high temperature water, Electrochim. Acta, 108(2013):554 (IF:4.798)
2. X. Liu, E.-H. Han, X. Wu, Effects of pH value on characteristics of oxide films on 316L stainless steel in Zn-injected borated and lithiated high temperature water, Corros. Sci., 78(2014): 200 (IF:5.242)
3. X. Liu, X. Wu, E.-H. Han, Influence of Zn injection on characteristics of oxide film on 304 stainless steel in borated and lithiated high temperature water, Corros. Sci., 53 (2011):3337 (IF: 5.242)
4. X. Liu, X. Wu, E.-H. Han, Effect of Zn injection on established surface oxide films on 316L stainless steel in borated and lithiated high temperature water, Corros. Sci., 53 (2012):136 (IF: 5.242)
5. J. Huang, X. Liu, E.-H. Han, X. Wu, Influence of Zn on oxide films on Alloy 690 in borated and lithiated high temperature water, Corros. Sci., 53 (2011):3254 (IF: 5.242)
6. X. Liu, X. Wu, E.-H. Han, Effects of temperature on electrochemical properties of oxide films on domestic nuclear-grade 316L stainless steel in Zn-injected aqueous environment, Acta Metall. Sin., 50(2014): 64 (IF:1.292)
7. X. Liu, X. Wu, E.-H. Han, Status and development on corrosion behavior of LWRs’ structural materials in Zn-injected water chemistry, Corrosion Sci. Protect. Tech., 23 (2011):287 (IF:0.877)
Patents
1. X. Liu, X. Wu, E.-H. Han, X. Wang, 201310452061.7, 2015
2. X. Liu, X. Wu, E.-H. Han, X. Wang, ZL201320604689.X, 2014
3. X. Zhang, Y. Deng, X. Liu, et al, 200710034401.8, 2007
4. X. Liu, A. Tian, F Li, X. et al, 2018FZ30694, 2018
5. X. Liu, A. Tian, F Li, X. et al, 2018SX30701, 2018
Awards
1. Excellent student prize of president fellowships, Chinese academy of sciences, 2015;
2. The first-class scholarship in 2014 IMR “Shi Changxu” CUP;
3. Excellent paper in the 7th china corrosion conference of 2013;
4. Excellent in the 2012 Middle term inspection during the Studies for doctorate in IMR;
5. The Merit Student in the terms of 2012-2013 in IMR;
6. Many scholarships for the university-level outstanding students in CSU: 4 times on third-class, 2 times on second–class, 1 time on first–class;
7. The third-class scholarship in extra-curricular academic competition works of 2007 CSU “Shenghua Cup”
Academic conferences
1. X. Liu, X. Wu, E.-H. Han, Influence of Zn on corrosion behavior of nuclear-grade 304 SS in borated and lithiated high temperature water, The 2nd International Symposium on Materials and Reliability in Nuclear Power Plants, Shenyang, 2011
2. X. Wu, X. Liu, J. Huang, E.-H. Han, W. Ke. Characteristics of Oxide Films on Alloy 690 in Simulated PWR Primary Coolant without and with Zn Injection, The 3rd International Symposium on Materials and Reliability in Nuclear Power Plants, Shenyang, 2013
3. X. Liu, X. Wu, E.-H. Han, Effect of Zn injection on oxide films on nuclear-grade stainless steel in high temperature water, The 17th National Youth Symposium of Corrosion and Protection, Wuhan, 2012
4. X. Liu, X. Wu, E.-H. Han, Effect of temperature and pH value on the electrochemical properties of oxide films on nuclear-grade stainless steel in Zn-injected high temperature water, The 7th National congress on corrosion, Changheng, 2013
5. X. Liu, X.Wu, E.-H. Han, Effects of Zn injection on the stress corrosion cracking behavior of sensitized stainless steel in borated and lithiated high temperature water, The 3nd Int Symp on Materials and Reliability in Nuclear Power Plants.Proceedings of the International Conference on Water Chemistry of Nuclear Reactor Systems, Paris, 2012
6. X. Wu, X. Liu, E.-H. Han, W. Ke, Influence of Zn Injection on Corrosion Behavior and Oxide Film Characteristics of 304 Stainless Steel in Borated and Lithiated High Temperature Water, The 18th International Corrosion Congress, Peth, 2011
7. X. Wu, X. Liu, E.-H. Han, W. Ke, Electrochemical Corrosion Behaviour of Alloy 690 in Simulated PWR High Temperature Aqueous Environments, Nuclear Plant Chemistry Conference, Sapporo, 2014
8. X. Liu, X. Wu, E.-H. Han, X. Zhang, Z. Wang, Effects of Zn injection on the stress corrosion cracking behaviors of domestic nuclear-grade stainless steels in high temperature aqueous environment, The 17th National Congress on Fatigue and Fracture, Guilin, 2014
9. X. Liu, X. Xiong, Z. Wang, Screening of some common anodic inhibitors on carbon steel in marine environment, The 1st National Congress on Marine Corrosion, Beijing, 2014
10. X. Liu, A. Tian, L. Nie, The electrochemical Behavior of TiO2 Nanotube Array Coating in boron solution, The material congress in 2017, Ningchuan, 2017
Objective statement
1. Optimistic and self-motivated, having outstanding self-learning and environment adaptation abilities;
2. High sense of responsibility, possessing strong career-ambition and a great team spirit.
Further skills
1. English: Pass CET-6 and get graduation certificate for scholars sending abroad, and have good ability of listening, speaking, reading and writing.
2. Computer: Pass Class-3, and having skills in Matlab, MDI Jade, DM, UG, Photoshop, Materials Studio, Auto CAD, Origin, and Office Software.
3. Interest: Reading, Music, Tourism, Swimming, et al.
[1]电化学及表面改性
团队在前期研究材料电镀或钝化项目上孵化了多项发明专利(2018108323979,CN208266299U等)可以为本项目预备多功能测试环境及膜层性能参数的设备打下前提,拟实现不同环境温度、pH值、溶质浓度等单独/耦合参数作用时铁基材料的电镀及钝化,同时可以在线测定表面膜层宏观形貌及电化学特征。
课题组立足于本校“辽宁省硼资源生态化综合利用技术与硼材料重点实验室”和“辽宁省硼资源综合开发利用工程技术研究中心”,项目进展有利于本校硼资源生态化综合利用和硼材料开发技术方面研究。