师资队伍
首页-师资队伍-教工名录
 姓名:  陈军
 职称:  教授
 博导/硕导:  博导
 所属二级机构:   塑性成形技术与装备研究院
 通讯地址:  上海市华山路1954号
 邮编:  200030
 E-mail:  jun_chen@sjtu.edu.cn
 联系电话:  +86-21-62813432
从事专业: 塑性加工
学习与工作简历:

1986.9-1993.7 山东工业大学材料科学与工程系 本科、硕士

1993.9-1996.7 上海交通大学塑性成形工程系 博士

1996.8-1998.4 上海交通大学塑性成形工程系 讲师

1998.4-1999.4 美国密歇根大学 访问学者

1999.4-2004.8 上海交通大学塑性成形工程系 副教授

2004.9-2004.12 上海交通大学塑性成形工程系 教授,2004.10起任模具CAD国家工程研究中心副主任

2004.12-2011.4 上海交通大学塑性成形工程系 教授、博导,期间,2006.7-2011.4任上海交通大学塑性成形工程系副主任

2011.4- 今 上海交通大学材料学院塑性成形技术与装备研究院 教授、博导,任上海交通大学材料学院塑性成形技术与装备研究院 副院长

研究方向一 新材料冲压与柔性渐进成形
研究方向二 塑性成形力学模型与数值仿真、设计优化
研究情况     先后负责和参加973课题、863项目、国家科技重大专项、国防基础科研项目、国家自然科学基金项目、上海市重大产业科技攻关项目课题和国际合作项目,以及企业横向课题30多项。在高强度钢冲压成形数值仿真理论模型、回弹预测与控制、模具磨损预测和模具拓扑优化,冲压工艺稳健设计,体积成形数值仿真关键技术、热塑性加工多物理场耦合分析预测技术和塑性成形工艺与模具智能设计系统开发方面取得了具有学术价值和工业应用价值的研究成果,发表SCI/EI收录论文130多篇。申请国家发明专利11项,软件著作权9项。
讲授主要课程 本科生课程:现代模具制造技术;博士生课程:塑性成形过程仿真理论与系统分析.
教学研究
代表性论文、论著

[1] Xiao Y.Z., Chen* J., Cao J., A generalized thermodynamic approach for modeling nonlinear hardening behaviors, International Journal of Plasticity, 38, 102–122, 2012

[2] Xiao Y.Z., Chen* J., Zhu X.H., Cao J., Modified maximum mechanical dissipation principle for rate-independent metal plasticity, ASME Journal of Applied Mechanics,published online: http://dx.doi.org/10.1115 /1.4023685, 2013 

[3] Lu B., Chen* J., Ou H., Cao J., Feature-based tool path generation approach for incremental sheet forming process, Journal of Materials Processing Technology, published online : http://dx.doi.org/ 10.1016 /j.jmatprotec.2013.01.023, 2013

[4] Xu D.K., Chen* J., Tang Y.C., Cao J.. Topology optimization of die weight reduction for high-strength sheet metal stamping International Journal of Mechanical Sciences, published online, http://dx.doi.org/ 10.1016 /j.ijmecsci.2012.03.006, 2012

[5] Chen* J., Xu D.K., Xia G.D., Li X.F., Chen J.S., Zhang J., Yan W., Li Y.. Geometric compensation for automotive stamping die design integrating structure deflection and blank thinning, International Journal of Advanced Manufacturing Technology, published online: DOI 10.1007/ s00170-012-4422-7, 2012

[6] Zhang F.F., Chen* J., Chen J.S., Lu J., Liu, G. Yuan S.J., Overview on constitutive modeling for hydroforming with the existence of through-thickness normal stress, Journal of Materials Processing Technology, 212, 2228-2237, 2012

[7] Li H.B., Chen J*., Yang J. Experimental and numerical investigation of laminated steel sheet in V-bending process considering nonlinear visco-elasticity of polymer layer, Journal of Materials Processing Technology, 212(1): 36–45, 2012

[8] Chen J. S., Chen J., Sheet metal forming limit prediction with maximum thickness reduction ratio. Advanced Materials Research, 2011, 314-316: 999-1004

[9] Chen J.S., Zhou X.B., Chen J. Sheet metal forming limit prediction based on plastic deformation energy. Journal of Materials Processing Technology, 2010, 210(2): 315-322

[10] Zhang G.B., Chen J.*, Tang Y.C., Chen L., Wang A., Xiao H., Shi L., Jiang H.M. Die structure analysis of stress distribution during High-Strength Steel stamping process and experimental validation. International Journal of Materials and Product Technology, 2010, 38(2- 3):184-197

[11] Tang Y.C., Chen J*. Robust design of sheet metal forming process based on adaptive importance sampling. Struct. Multidisc. Optim., 2009 (39): 531-544

[12] 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

[13] Wei D.L,. Cui Z.S., Chen J. Optimization and tolerance prediction of sheet metal forming process using response surface model. Computational Materials Science, 2008, 42(2): 228-233

[14] Tang Y.C., Zhou X.H., Chen J. Preform tool shape optimization and redesign based on neural network response surface methodology. Finite Elements in Analysis and Design, 2008, 44(8): 462-471

[15] Wei D.L., Cui Z.S., Chen J. Uncertainty quantification using polynomial chaos expansion with points of monomial cubature rules. Computers and Structures, 2008, 86(23-24): 2102-2108

[16] Wang Y., Chen J*., Li H.B. Improved cohesive zone model and its application in interface contact analysis. Acta Metallurgica Sinica (English Letters), 2008, 21(4): 295-302

[17] Shi X.X., Chen J., Peng Y.H., Ruan X.Y. A novel approach to extract knowledge from simulation results, International Journal of Advanced Manufacturing Technology, 2002,920 (5): 390-396

[18] Shi X.X., Chen J., Peng Y.H., Ruan X.Y. Development of knowledge-based process planning system for auto panel, International J. of Advanced Manufacturing Technology, 2002,319 (12): 898-904

[19] Shi X.X., Chen J., Peng Y.H., Ruan X.Y. A new approach of die shape optimization for sheet metal forming processes. Journal of Materials Processing Technology,2004,152 (1): 35-42

[20] Wang J.Y., Chen J., Li M.H. URI 4-node quadrilateral element by assumed strain method for nonlinear problems. Acta Mechanica Sinica, 2004,20(16): 632-641

 [21] Liu Y.H., Chen J., Yu S., Chen X.W. Analysis of three-dimensional upsetting process by the rigid-plastic reproducing kernel particle method. Acta Metallurgica Sinica (English Letters), 2006,9(5): 371-378

[22] 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

[23] Chen J., Shi X.X., Ruan X.Y. Numerical simulation-driven optimization of sheet metal drawing part shape. Trans. Nonferrous Met. Soc. China, 2003, 13(4): 845~848

[24] Chen J., Wang Y.X., Dong W.P., Ruan X.Y. Hexahedral element refinement for the prediction-correction ALE FEM simulation of 3D bulking forming process. Acta Metallurgica Sinica, 2004,17( 6): 923-927

[25] Chen J., Peng Y.H., Zuo X., Ruan X.Y. Radial extrusion process by three-dimensional rigid-plastic FEM simulation,Trans. Nonferrous Met. Soc. China, 1997, 9(4): 47-51

毕业博士生数 3人(导师)、16人(付导师)
毕业硕士生数 工学硕士30人、工程硕士3人
参加学术团体、任何职务

华中科技大学材料成形与模具技术国家重点实验室学术委员会委员

全国塑性工程学会常务理事

上海市锻压协会副理事长

上海市模具行业协会技术委员会主任

上海交通大学学报编委

塑性工程学报编委

锻压技术杂志编委等

申请专利
荣誉和奖励 省部级科技进步一等奖1项、三等奖1项,上海市高校优秀青年教师。
其他
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