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About

Prof. Ruan¡¯s Introduction

 
Prof. Ruan¡¯s Introduction
Professor RUAN, Xueyu

Telephone: +86-21-62813436;Email: xyruan@sjtu.edu.cn
Education:
1953    Shanghai Jiao Tong University,    Bachelor
Professional Experiences:
1994-now     Dept. of Plasticity Technol., Shanghai Jiao Tong Univ.           Dean/Professor
Chinese Academy of Engineering             Academician
National ERC of Die & Mold CAD               Director
1983 - now   Shanghai Research Institute of Tool & Die Technology       President
1980-1994    Dept. of Material Science & Engineering, Shanghai Jiao Tong Univ.      Professor
1960-1980    Dept. of Material Science & Engineering, Shanghai Jiao Tong Univ.      Assistant professor
1953-1960    Dept. of Mechanical Engineering, Shanghai Jiao Tong Univ.,                Teaching assistant

Research Fields:
Cold forging, numerical simulation, intelligent design, digital manufacturing

Achievements:
[1] Successfully developed cold extrusion technologies of ferrous metals as one of the pioneers in China, proposed the criteria of forming limit of cold extrusion, and published 4 books on cold extrusion technologies in 1960s and 1970s.
[2] Successfully developed die and mold CAD/CAM, numerical simulation and AI technology in the field of metal forming and die & mold manufacturing. Under his leadership, more than 400 research projects have been accomplished, and the technologies have been transferred throughout 21 provinces in China and also international companies in US, Japan, Germany and Switzerland, etc.
[3] Proposed the implementation strategy of high-technology development, i.e. research & development, technical transfer and engineering support. He invented a new pattern - to establish joint research lab with industry. In this way, from on one hand, the joint lab can cooperate with related companies and find solutions to some specific problems on high-tech research, development and application; on the other hand, some advanced management methods of multi-national enterprises, up-to-date strategy and technologies can also be exchanged through the cooperation. Till now, more than 30 joint research laboratories and application centers have been established, such as the joint labs with Ford Motor Company, SIEMENS, Sodick, Feintool and Schneider Electric, etc.

Participation in Academic Societies:
[1] Member of International Cold Forging Group (ICFG)
[2] Standing director of International Committee of Environmental Manufacturing (ICEM)
[3] Editorial member of Journal of Materials Processing Technology
[4] Editorial member of Production Engineering - Research & Development
[5] Member of the academic committee of State Key Laboratory for Digital Manufacturing Equipment & Technology, Huazhong University of Science & Technology, China
[6] Member of the academic committee of State Key Laboratory for Fluid Power Transmission and Control, Zhejiang University, China
[7] Member of the academic committee of State Key Laboratory for Mechanical System and Vibration, Shanghai Jiao Tong University, China
[8] Director of the technical committee of National Engineering Laboratory for Digital Shipbuilding
[9] Member of the academic committee of MOE Key Laboratory for Advanced Material Processing Technology, Tsinghua University, China
[10] Senior consultant of Chinese Die & Mold Industry Association
[11] Editorial member of Journal of Plasticity Engineering

Selected Academic Papers:
[1] WANG J., CHEN J., ZHAO Z., RUAN X. Y. Dynamic Recrystallization Behavior of Microalloyed Forged Steel, Journal of Iron and Steel Research International 2008, 15 (3): 78-81,91
[2] CHEN Z. Z., LOU Z. L., RUAN X. Y. Finite volume simulation and mould optimization of aluminum profile extrusion, Journal of Materials Processing Technology 2007, 190 (1-3): 382-386
[3] TANG B.T., ZHAO Z., YU S., CHEN J., RUAN X.Y. One-step FEM based control of weld line movement for tailor-welded blanks forming, Journal of Materials Processing Technology 2007, 187-188: 383-386
[4] WANG J., CHEN J., ZHAO Z., RUAN X.Y. Hot deformation behavior of F40MnV steel without quenching-and-tempering, Journal of Iron and Steel Research, 2007, 19 (5): 68-71+106
[5] ZHOU X., QIU Y., HUA G., WANG H., RUAN X. A feasible approach to the integration of CAD and CAPP, CAD Computer Aided Design 2007 39 (4): 324-338
[6] ZHANG D., CUI Z., RUAN X., LI Y. An analytical model for predicting springback and side wall curl of sheet after U-bending, Computational Materials Science 2007, 38 (4): 707-715
[7] LI Y.Q., CUI Z.S., RUAN X.Y., ZHANG D.J. CAE-Based six sigma robust optimization for deep- drawing process of sheet metal, International Journal of Advanced Manufacturing Technology, 2006, 30 (7-8): 631-637
[8] ZHANG X.Q., PENG Y.H., RUAN X.Y., YAMAZAKI K. Feature based integrated intelligent sequence design for cold extrusion, Journal of Materials Processing Technology, 2006, 174 (1-3): 74-81
[9] JIANG Y.-J., CHEN J., RUAN X.-Y. Fuzzy similarity-based rough set method for case-based reasoning and its application in tool selection, International Journal of Machine Tools and Manufacture, 2006, 46 (2): 107-113
[10] CHEN G., CHEN J., ZHAO Z., RUAN X.Y. An object-oriented hierarchical case representation of automotive panels in a computer-aided process planning system, International Journal of Advanced Manufacturing Technology, 2005, 26 (11-12): 1323-1330
[11] SHI X., CHEN J., PENG Y., RUAN X. A new approach of die shape optimization for sheet metal forming processes, Journal of Materials Processing Technology, 2004, 152 (1): 35-42
[12] LOU Z., JIANG H., RUAN X. Development of an integrated knowledge-based system for mold-base design, Journal of Materials Processing Technology 2004, 150 (1-2): 194-199
[13] ZHANG X., PENG Y., RUAN X. A web-based cold forging process generation system, Journal of Materials Processing Technology, 204, 145 (1): 1-6
[14] WU R.H., LIU J.T., CAHNG H.B., HSU T.Y., RUAN X.Y. Erratum: Prediction of the flow stress of 0.4C-1.9Cr-1.5Mn-1.0Ni-0.2Mo steel during hot deformation, Journal of Materials Processing Technology, 2002, 124 (1-2): 260
[15] GUO, Z., RUAN, X., PENG, Y., LI, D. Warpage of injection-molded thermoplastics parts: Numerical simulation and experimental validation, Journal of Materials Engineering and Performance, 2002, 11 (2):138-144
[16] WU R.H., LIU J.T., CHANG H.B., HSU T.Y., RUAN X.Y. Prediction of the flow stress of 0.4C-1.9Cr-1.5Mn-1.0Ni-0.2Mo steel during hot deformation, Journal of Materials Processing Technology, 2001, 116 (2-3):211-218
[17] ZHANG X.Q., PENG Y.H., LI M.Q., WU S.C., RUAN X.Y. Study of Workability Limits of Porous Materials under Different Upsetting Conditions by Compressible Rigid Plastic Finite Element Method, Journal of Materials Engineering and Performance, 2000, 9 (2): 164-169
[18] LIU J., CHANG H., HSU T.Y., RUAN X. Prediction of the flow stress of high-speed steel during hot deformation using a BP artificial neural network, Journal of Materials Processing Technology, 2000, 103 (2): 200-205
[19] XING Y., ZHOU X.H., RUAN X.Y. Research on the optimal permutation of the nodes of a finite-element network, Journal of Materials Processing Technology, 1998, 74 (1-3):195-198
[20] PENG Y., RUAN X.Y, ZUO T. Defect prediction during conform process by FEM, Journal of Materials Processing Tech., 1994, 45 (1-4): 539-543

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