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Professor
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HAN Wei-Zhong
中文姓名 韩卫忠

Email: wzhanxjtu@mail.xjtu.edu.cn

Webpage: http://gr.xjtu.edu.cn/web/wzhanxjtu

Research interests:

1.         Mechanical behavior of metallic materials;

2.         Radiation damage of metals.

Experience:

2014.01 – Present       Xi'an Jiaotong University, China                    Professor

2010.10 – 2013.12     Los Alamos National Laboratory, Australia       Postdoc  

2008.09 – 2010.09     Monash University, Australia                         Postdoc  

Education:

2003.8 – 2008.8   Institute of Metal Research, CAS, China    Ph.D.

1999.9 – 2003.7   Shanxi Normal University, China   B.Sc

Honor & Awards:

2019  Excellent Young Scholar, NSFC

2016  Hundred Talents Program of Shaanxi Province

Representative Publications:

Full publications list and Citation

http://scholar.google.com/ WEIZHONG HAN

Selected Publications

1. Yang PJ, Li QJ, Han WZ*, Li J, Ma E*. Designing solid solution hardening to retain uniform ductility while quadrupling yield strength. Acta Materialia, 179 (2019) 107-118.

2. Wang M, Beyerlein IJ, Zhang J, Han WZ*. Bi-metal interface-mediated defects distribution in neon ion bombarded Cu/Ag nanocomposites, Scripta Materialia, 171 (2019) 1-5.

3. Zhang JW, Beyerlein IJ, Han WZ*, Hierarchical 3D nanolayered duplex-phase Zr with high strength, strain hardening and ductility, Physical Review Letters, 122 (2019) 255501.

4. Li SH, Li JT, Han WZ*, Radiation-induced helium bubbles in metals. Materials, 12 (2019) 1036. 

5. Liu SM, Li SH, Han WZ*, Effect of ordered helium bubbles on deformation and fracture behavior of alpha-Zr. Journal of Materials Science & Technology, 35 (2019) 1466-1472.

6. Yang PJ, Li QJ, Tsuru T, Ogata S, Zhang JW, Sheng HW, Shan ZW, Sha G, Han WZ*, Li J*, Ma E*, Mechanism of hardening and damage initiation in oxygen embrittlement of body-centred-cubic niobium. Acta Materialia, 168 (2019) 331-342.

7. Li SH, Zhang J, Han WZ*, Helium bubbles enhance strength and ductility in small-volume Al-4Cu alloys. Scripta Materialia, 165 (2019) 112-116.

8. Hu ZW, Wang M, Guo CW, Shan ZW, Li J, Han WZ*, Graphene-coated tungsten nanowires deliver unprecedented modulus and strength. Materials Research Letters, 7 (2019) 47-52.

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