| 姓 名 | 刘战强 | 性 别 | 男 | 出生年月 | 1969-12 |
|---|---|---|---|---|---|
| 所在院校 | 山东大学 | 所在院系 | 机械工程学院 | ||
| 职称 | 教授 | 招生专业 | |||
| 研究领域 | 高速/高效切削加工、微细切削加工、可重构制造系统、设施布局设计 |
| 联系方式 | melius@sdu.edu.cn | 电 话 | 0531******* | 邮 编 | 250061 | |
|---|---|---|---|---|---|---|
| 地 址 | 山东省济南市经十路73号山东大学机械工程学院 |
| 个人简介 |
基本情况介绍 主讲课程 主要学历和任职经历 基本情况介绍 主讲课程 主要学历和任职经历 |
| 获得奖项 |
| [1] 陶瓷刀具和陶瓷零件设计与制造技术研究,2006年山东省科学技术奖(自然科学奖)三等(第三位) [2] 新型陶瓷刀具和陶瓷结构件设计方法与制造关键技术基础研究,2005年教育部提名国家科学技术奖自然科学二等(第二位) [3] 基于实例推理高速切削智能数据库的建立与开发研究,2004年国家自然科学基金优秀项目。项目负责人 [4] 高速切削基础理论与加工误差补偿技术的... [1] 陶瓷刀具和陶瓷零件设计与制造技术研究,2006年山东省科学技术奖(自然科学奖)三等(第三位) [2] 新型陶瓷刀具和陶瓷结构件设计方法与制造关键技术基础研究,2005年教育部提名国家科学技术奖自然科学二等(第二位) [3] 基于实例推理高速切削智能数据库的建立与开发研究,2004年国家自然科学基金优秀项目。项目负责人 [4] 高速切削基础理论与加工误差补偿技术的研究,2002年山东高等学校优秀科研成果奖,(自然科学理论成果二等) 第一 |
| 著作及论文 |
| 代表性论文 [1] Tang Aijun, Liu Zhanqiang, Deformations of thin-walled plate due to static end milling force, Journal pf materials Processing Technology, 2008,Volume 206, Issues 1-3, Pages 345-351 [2] Z.T. Tang, Z. Q. Liu and X. Ai,Optimization of Bulkhead Processing Sequence for Monolithic Components by FEM. Advanced Materials Research Vols. 24-25 ,2007,pp. 355-360 [3] Z.Q. Liu,K.J. Xiang and X. Ai Variables Model for Building Case Base and Its application,Transactions of Nanjing University of Aeronautics & Astronautics,2007,24(2):170-174 [4] Y. Wan, Z.Q.Liu, X.Ai. Tool Wear Patterns and Mechanism of Solid Cemented Carbide in High-speed Milling Aluminum Alloy. Transactions of Nanjing University of Aeronautics & Astronautics。2007,24(2):123-128 [5] Z.Q. Liu, K.J. Xiang, X.G. Peng, An intelligent cutting database for die and mold making operations, Materials Science Forum. Vols. 532-533 (2006):105-108. [6] Z.Q. Liu, J M Wang, Y Wan,Machinability for Turning of 1Cr18Ni9Ti Austenitic Stainless Steel with ceramic tool,Key Engineering Materials. 2006, Vol.315-316:584-587 [7] Y Wan,Z.Q. Liu, X. Ai,Experimental Research on High-speed Machining Pearlitic Gray Cast Iron,Key Engineering Materials. 2006, Vol.315-316:459-463. [8] K J Xiang, Z.Q. Liu, X. Ai,Development of High-Speed Cutting Database System with Hybrid Intelligent Reasoning... 代表性论文 [1] Tang Aijun, Liu Zhanqiang, Deformations of thin-walled plate due to static end milling force, Journal pf materials Processing Technology, 2008,Volume 206, Issues 1-3, Pages 345-351 [2] Z.T. Tang, Z. Q. Liu and X. Ai,Optimization of Bulkhead Processing Sequence for Monolithic Components by FEM. Advanced Materials Research Vols. 24-25 ,2007,pp. 355-360 [3] Z.Q. Liu,K.J. Xiang and X. Ai Variables Model for Building Case Base and Its application,Transactions of Nanjing University of Aeronautics & Astronautics,2007,24(2):170-174 [4] Y. Wan, Z.Q.Liu, X.Ai. Tool Wear Patterns and Mechanism of Solid Cemented Carbide in High-speed Milling Aluminum Alloy. Transactions of Nanjing University of Aeronautics & Astronautics。2007,24(2):123-128 [5] Z.Q. Liu, K.J. Xiang, X.G. Peng, An intelligent cutting database for die and mold making operations, Materials Science Forum. Vols. 532-533 (2006):105-108. [6] Z.Q. Liu, J M Wang, Y Wan,Machinability for Turning of 1Cr18Ni9Ti Austenitic Stainless Steel with ceramic tool,Key Engineering Materials. 2006, Vol.315-316:584-587 [7] Y Wan,Z.Q. Liu, X. Ai,Experimental Research on High-speed Machining Pearlitic Gray Cast Iron,Key Engineering Materials. 2006, Vol.315-316:459-463. [8] K J Xiang, Z.Q. Liu, X. Ai,Development of High-Speed Cutting Database System with Hybrid Intelligent Reasoning,Key Engineering Materials. 2006, Vol.315-316:696-700. [9] 刘战强、雷源忠,机械与制造科学“十一五”发展的战略方向(机械学),数字制造科学,2005,3(3):1-12 [10] 刘战强、雷源忠,机械与制造科学“十一五”发展的战略方向(制造科学),数字制造科学,2005,3(3):13-27 [11] Z.Q. Liu, X. Ai,Cutting tool materials for high speed machining,Progress for Natural Science, 2005, Vol.15, No.9, pp.777-783 [12] Z.Q. Liu, X. Ai,A comparison study of surface hardening by grinding versus machining,Key Engineering Materials. 2005, Vol.304-305: 156-160 [13] Y. Wan, Z.Q. Liu, X. Ai, et al. Development of a Cutting Database System with Prediction and Analysis Functions, Vol.471-472, Materials Science Forum, 2004:32-36 [14] Y. Wan, Z.T. Tang, Z.Q. Liu, et al. The Assessment of Cutting Temperature Measurements in High-Speed Machining, Materials Science Forum, Vol.471-472,2004:162-166 [15] Liu Zhanqiang, Yi Wan, Ai Xing, Recent developments in tool materials for high speed machining, Materials Science Forum, Vol.471-472,2004:438-442 [16] Liu Zhanqiang, Xiuguang Peng and Jigang Liu, Development of an Intelligent System for Tool Materials Selection in High Speed Machining,Materials Science Forum, Vol.471-472,2004:82-86 [17] Liu Zhan-Qiang, Junbo Zhang and Zhitao Tang, Intelligent error compensation in CNC machining through synergistic interactions among modeling, sensing and learning,Materials Science Forum, Vol.471-472, 2004:178-182 [18] Zhanqiang Liu, Xing Ai, High-speed milling of cast iron with ceramic and PCBN tool, Advances in Grinding and Abrasive Processes, Key Engineering Materials, 2004:446-450 [19] Liu Zhan-Qiang, Wan Yi, and Liu Jigang, The impact of tool materials and cutting parameters on surface roughness in high-speed face-milling, Advances in Grinding and Abrasive Processes, Key Engineering Materials, 2004:462-465 [20] Z.Q. Liu, Z.H. Wang, Y. Wan, et al.Development of case-based database for high speed machining,Advances in Grinding and Abrasive Processes, Key Engineering Materials, 2004:829-833 [21] Wang Zuntong, Liu Zhanqiang, Ai Xing, Case description and similarity in high-speed machining, International Journal of Machine Tools & Manufacturing. 2003, vol 43/13 pp 1347 - 1353 [22] Liu Zhanqiang, Ai Xing, Comment on: Optimal grey-fuzzy controller design for a constant turning force system, International Journal of Machine Tools & Manufacturing. 2003, vol 43/10 pp 1067 - 1068 [23] Liu Zhanqiang, Ai Xing, Zhang Hui, et al. Wear Patterns and Mechanisms of cutting tools in high speed face milling, Journal of Materials Processing Technology. 129(1-3),2002:222-226 [24] Li, X., Venuvinod, P.K., Djorjevich, A., Liu, Z.Q. Predicting machining errors in turning using hybrid learning, International Journal of Advanced Manufacturing Technology, 2001, 18(12): 863-872 [25] Zhan-Qiang Liu, and Patri K Venuvinod, Towards Autonomous Compilation of Cutting Force Database for CNC Turing: Utilization of On-Machine Measurements of Machine Part Dimensions, Machining Science and Technology, 2001, 5(2):171-193 [26] Liu Zhan-Qiang, Methodology of parametric programming for error compensation on CNC machining centers, International Journal of Advanced Manufacturing Technology, 2001, 17(8):570-574 [27] Liu Zhan-Qiang, Venuvinod, Patri K., How a machine tool can be its own on-line dynamometer, AMSE, Series B Modelling, Measurement and Control, 2001, 70(7):1-22. [28] Liu Zhan-Qiang, Finite Difference Calculations of the Deformations for Multi-diameter Workpieces during Turning, Journal of Materials Processing Technology, 2000 98(3), pp.310-316. [29] Z.Q.Liu, and P.K.Venuvinod, Error Compensation in CNC Turning Solely from Dimensional Measurements of Previously Machined Parts, Annals of CIRP, 1999 48(1), pp.429-432. [30] Liu Zhan-Qiang, and Venuvinod, Patri K., Integrated Inspection and Compensation for a CNC Turning Center, The International Journal for Manufacturing Science & Production, 1999 2(1), pp.37-43. [31] Liu Zhanqiang, Repetitive Measurement and Compensation to Improve Workpiece Machining Accuracy, International Journal of Advanced Manufacturing Technology, 1999 15(2), pp.85-89. [32] Liu Zhan-Qiang, Venuvinod, Patri K., and Ostafiev, V.A., On-machine Measurement of Workpiece with Cutting Tool, Integrated Manufacturing Systems, The International of Manufacturing Technology Management, 1998 9(3), pp.168-172. |
| 承担项目 |
| [1] 基于应变梯度塑性理论的高速微细切削变形学研究,国家自然科学基金(50675122),2007-2009,课题负责人 [2] 混合智能推理高速切削数据库的研究,国家自然科学基金(50375089),2004-2006,课题负责人 [3] 基于实例推理的高速切削智能数据库的建立与开发研究,国家自然科学基金(50105012),2000-2001,课题负责人。 [4] 高速切削加工系统的跨尺度研究,... [1] 基于应变梯度塑性理论的高速微细切削变形学研究,国家自然科学基金(50675122),2007-2009,课题负责人 [2] 混合智能推理高速切削数据库的研究,国家自然科学基金(50375089),2004-2006,课题负责人 [3] 基于实例推理的高速切削智能数据库的建立与开发研究,国家自然科学基金(50105012),2000-2001,课题负责人。 [4] 高速切削加工系统的跨尺度研究,教育部新世纪优秀人才支持计划(NCET-04-0629),2005-2007,课题负责人 [5] 高速切削加工过程的协同增强建模与仿真的研究,霍英东教育基金会(Fok Ying Tung Education Foundation)高等院校青年教师基金(91054),2004-2006,课题负责人 [6] 高速微细切削的关键科学问题研究,山东省自然科学基金重点项目(Z2007F03),2008-2010,课题负责人 [7] 高速精密微细5轴加工中心的研究与开发,山东省高新技术自主创新工程专项计划(2007ZCB01518),2008-2010,课题负责人 [8] 微细切削加工关键技术研究及其装备开发,山东省发展和改革委员会项目(鲁发改高技[2006]711号),2006-2007,课题负责人 [9] 快速可重构活塞自动生产线的虚拟设计,教育部高等学校博士学科点专项科研基金(20040422023),2005-2007,课题负责人 [10] 高速切削基础理论与加工精度的研究及应用,留学回国人员科研启动基金资助(教外司留2000-479),2000-2002,课题负责人。 [11] 面向对象的虚拟可重构多生产线规划设计与仿真的研究,山东省优秀中青年科学家科研奖励基金(2005BS05001),2005-2007,课题负责人 [12] 高速切削加工过程的虚拟建模与仿真研究,山东省自然科学基金(Y2003F06),2003-2005,课题负责人 [13] 面向对象的快速可重构生产线虚拟设计技术的研究与开发,山东省优秀中青年科学家科研奖励基金(02BS068),2001-2004,课题负责人。 [14] 制造业信息化过程中的实时协调控制与重构的方法与应用,山东省科学技术发展计划(030335),2003-2005,项目负责人 |