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Laser and Terahertz Technology

Wang,Zemin

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Wang,Zemin 

Brief Bio

Dr. Zemin Wang received his BE degree, ME degree, Ph.D. degree from Huazhong University of Science and Technology (HUST) in 1997, 2000 and 2003 respectively. He worked as lecture and associate professor in State Key Laboratory of Laser Technology in HUST from 2004 to 2006. He joined the Wuhan National Laboratory for Optoelectronics (WNLO) in 2006. From 2007 to 2008, he worked as a visiting research fellow for the Interdisciplinary Research Center in Materials Processing of the University of Birmingham in UK. He is currently a professor in WNLO and HUST. Dr. Wang has published more than 40 papers and has been issued 26 patents. He is the reviewer of National Natural Science Research Foundation of China, Surface and Coatings Technology, Journal of Materials Processing Technology, Powder Technology and other international and domestic journals.
 
Research Areas
 
Selective laser melting; Direct laser fabrication; Laser materials processing technology. Publications (in recent five years)
 
[1] Kai Guan, Zemin Wang, Ming Gao, Xiangyou Li, Xiaoyan Zeng. Effects of processing parameters on tensile properties of selective laser melted 304 stainless steel. Materials and Design, 2013, 50: 581-586.
 
[2] Mingming Ma, Zemin Wang, Dengzhi Wang, Xiaoyan Zeng. Control of shape and performance for direct laser fabrication of precision large-scale metal parts with 316L stainless steel. Optics &Laser Technology, 2013, 45: 209–216.
 
[3] Zemin Wang, Kai Guan, Ming Gao, Xiangyou Li, Xiaofeng Chen, Xiaoyan Zeng. The microstructure and mechanical properties of deposited-IN718 by selective laser melting. Journal of Alloys and Compounds, 2012, 513: 518–523.
 
[4] Ming Gao, Shuwen Mei, Zemin Wang, Xiangyou Li, Xiaoyan Zeng. Process and joint characterizations of laser–MIG hybrid welding of AZ31 magnesium alloy. Journal of Materials Processing Technology, 2012, 212: 1338–1346.
 
[5] Zemin Wang, Xiangyou Li, Ming Gao, Xiaoyan Zeng. One-step preparation of amorphous iron nanoparticles by laser ablation. Powder Technology, 2012, 215–216: 147–150.
 
[6] Ming Gao, Zemin Wang, Xiangyou Li, Xiaoyan Zeng. Laser keyhole welding of dissimilar Ti-6Al-4V titanium alloy to AZ31B magnesium alloy. Metallurgical and Materials Transactions A, 2012, 43A(1): 16 –172. 
 
[7] Zemin Wang, Ming Gao, Haiguo Tang, Xiaoyan Zeng. Characterization of AZ31B wrought magnesium alloy joints welded by high power fiber laser. Materials Characterization, 2011, 62: 943–951. 
 
[8] Zemin Wang, Yu Cao, Xiangyou Li, Ming Gao, Xiaoyan Zeng. Fabrication of fluorinated polyimide optical waveguides by micropen direct writing technology. Optics and Lasers in Engineering, 2011, 49: 880–884.
 
[9] Ming Gao, Zemin Wang, Jun Yan and Xiaoyan Zeng. Dissimilar Ti/Mg alloy butt welding by fibre laser with Mg filler wire – preliminary study. Science and Technology of Welding and Joining, 2011, 16(6): 488–496.
 
[10] Xiangyou Li, Jianguo Liu, Xiaoye Wang, Ming Gao, Zemin Wang, Xiaoyan Zeng. Preparation of silver spheres by selective laser heating in silver-containing precursor solution. Optics Express, 2011, 19(4): 2846–2851.
 
[11] Aikui Li, Zemin Wang, Jiajun Liu, Xiaoyan Zeng. Low cost fabrication of SiO2 optical waveguides by laser direct writing on Ti-doped Sol–Gel films. Optics and Lasers in Engineering, 2011, 49: 351-355.
 
[12] Zemin Wang, Xiaoyan Zeng, Ming Ji, Yong Liu. The effect of target size on α-Fe nanoparticle preparation by pulsed laser ablation. Applied Physics A: Materials Science and Processing, 2009, 97(3): 683–688. 
 
[13] Aikui Li, Zemin Wang, Jiajun Liu, Xiaoyan Zeng, Chunxia Wang, Hongda Chen. Surface characteristics of SiO2-TiO2 strip fabricated by laser direct writing. Chinese Optics Letters, 2008, 6 (2): 108-111.
 
Awards and Honors
 
2010    The first prize for Scientific and Technological Progress Award of Hubei Province, China.  (3rd person who complete the project)
 
2010    The first prize for Scientific and Technological Progress Award of Xinjiang Uygur Autonomous Region, China. (5th person who complete the project)


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