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Professor
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Zhang Jian-Xun
中文姓名 张建勋

office phone: +86-029-82668807

Email: jxzhang@mail.xjtu.edu.cn

Webpage: http://gr.xjtu.edu.cn/web/jxzhang/9

Research interests:

Welding and joining of advanced materials; Laser precision processing and forming technology; Numerical simulation and emulation technique; Internet-based manufacture and expert system; Security analysis and evaluation of welding structure; Combine the technologies of computer and artificial intelligence with the techniques of connecting, reconstruct the traditional welding and joining industry.

Experience:

1984.09-1987.09   Assistant Professor of Xi’an Jiaotong University

1987.09-1992.10   Lecturer of Xi’an Jiaotong University

1990.05-1992.01   Visiting Scholar at Osaka University, Japan

1992.09-1996.07   Associate Professor of Xi’an Jiaotong University

1999.09-2000.10   Visiting Professor at Osaka University, Japan

1996.07-present    Professor of Xi’an Jiaotong University

Education:

1978.03-1982.02   Xi’an Jiaotong University, Welding Specialty, B.S.

1982.02-1984.08   Shanghai Jiaotong University, Welding Specialty, M.S.

1986.08-1989.09   Xi’an Jiaotong University, Material Specialty, Ph.D.

Honor & Awards:

National Teaching Achievement Award (2000)

Shaanxi Science and Technology Award (2013)

Gold Medal of Shaanxi Staff Science and Technology Innovation Achievement (2013)

 “Wang Kuancheng” Bringing up Talents Award (2007)

Shaanxi Education Commission Science and Technology Award (1995)

Managing Director of China Welding Association

Deputy Dean of Materials Science and Engineering College

The Director of welding research institute

Director of Xi’an Welding technology institute

Representative Publications:

1)       J.X. Zhang, Y. Xue, S.L. Gong, Residual welding stresses in laser beam and tungsten inert gas weldments of titanium alloy, Science and Technology of Welding and Joining, 10 (2005) 643-646.

2)       L.J. Zhang, J.X. Zhang, A.Q. Duan, S.L. Gong, Numerical and experimental study of the effect of side assisting gas during laser welding, Modelling and Simulation in Materials Science and Engineering, 14 (2006) 875-890.

3)       L.J. Zhang, J.X. Zhang, H. Serizawa, H. Murakawa, Parametric studies of welding distortion in fillet welded structure based on FEA using iterative substructure method, Science and Technology of Welding and Joining, 12 (2007) 703-707.

4)       C. Liu, J.X. Zhang, Numerical simulation of transient welding angular distortion with external restraints, Science and Technology of Welding and Joining, 14 (2009) 26-31.

5)       R. Wang, J.X. Zhang, H. Serizawa, H. Murakawa, Study of welding inherent deformations in thin plates based on finite element analysis using interactive substructure method, Materials and Design, 30 (2009) 3474-3481.

6)       R. Wang, J.X. Zhang, C. Liu, H. Serizawa, H. Murakawa, Welding distortion investigation in fillet welded joint and structure based on iterative substructure method, Science and Technology of Welding and Joining, 14 (2009) 396-403.

7)       C. Liu, J.X. Zhang, B. Wu, S. Gong, Numerical investigation on the variation of welding stresses after material removal from a thick titanium alloy plate joined by electron beam welding, Materials and Design, 34 (2012) 609-617.

8)       B. Wu, J.X. Zhang, L. Zhang, Y.S. Pyoun, R.I. Murakami, Effect of ultrasonic nanocrystal surface modification on surface and fatigue properties of quenching and tempering S45C steel, Applied Surface Science, 321 (2014) 318-330.

9)       Q.B. Zhang, J.X. Zhang, P. Zhao, Y. Huang, Y. Yang, Y. Zhao, Microstructure of 10% Cr martensitic heat-resistant steel welded joints and type IV cracking behavior during creep rupture at 650°C, Materials Science and Engineering A, 638 (2015) 30-37.

10)    X.Y. Fang, J.X. Zhang, Effects of microstructure and concavity on damage behavior of laser beam welded Ti-2Al-1.5Mn titanium alloy joints, International Journal of Advanced Manufacturing Technology, 79 (2015) 1557-1568.

11)    N.N. Gou, J.X. Zhang, L.J. Zhang, Z.G. Li, Z.Y. Bi, Single pass fiber laser butt welding of explosively welded 2205/X65 bimetallic sheets and study on the properties of the welded joint, International Journal of Advanced Manufacturing Technology, (2016) 1-11.

12)    Q.B. Zhang, J.X. Zhang, P. Zhao, Y. Huang, Z. Yu, X. Fang, Low-cycle fatigue behaviors of a new type of 10% Cr martensitic steel and welded joint with Ni-based weld metal, International Journal of Fatigue, 88 (2016) 78-87.

Patents:

1) A continuous welding method to reduce axial deformation of thick wall pipe based on the dynamic measurement. ZL200910219375.6 Invention 2009.10.21.

2) A grid method to realize the modeling and simulation of flat welding forming process. ZL200910219391.5 Invention 2009.10.01.

3) A measurement method of welding residual stress ZL200910021661.1 Invention 2009.10.01

4) Arc column pneumatic pressure testing device of welding arc. ZL200910023829.2 Invention 2009.09.08

5) The electrode manipulation simulation training device and detection method of manual arc welding. ZL200910023097.7 Invention 2009.05.01

6) Pantograph carbon bonding resistance detection system of electric locomotive. ZL200910024281.3 Invention 2009.02.13

7) A method of making the block with surface crack defects for nondestructive test. 200910022922.1 Invention 2009.01.01.

8) A waveform detection device for arc stud welding. ZL200810150954.5 Invention 2008.01.01

9) A arc stud welding gun and its welding method. ZL200710017701.6 Invention 2007.05.01

10) A simulation training device of argon arc welding. ZL200610042956.3 Invention 2006.01.01

11) A simulation training device of manual arc welding. ZL2006100442953X Invention 2006.01.01

12) The stepping arc stud welding gun. ZL200310105930.2 Invention 2005.01.02

13) The parameters of phase change - diffusion braze welding. ZL2003114691.0 Invention 2005.01.01

14) Instantaneous welding speed testing device. ZL01240368.7 Utility model 2002.01.23

15) The simulation visualization software of resistance spot welding process. 2004SR05582 Utility model 1970.01.01



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