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周明
2023-05-06 11:00
  • 周明
  • 周明 - 副教授-北京建筑大学-机电与车辆工程学院-个人资料

近期热点

资料介绍

个人简历


博士,副教授,北京建筑大学,机电与车辆工程学院。中国机械工程学会特种加工分会理事,中国机械工程学会特种加工分会技术委员会委员,中国机械工业教育协会机械电子工程学科教学委员会委员。
教育背景
1984,9-1988,7 南京航空学院 机械制造工艺与设备专业(学士学位)
1999,9-2001,7 大连理工大学 机械电子工程专业(硕士学位)
2001,9-2006,3 大连理工大学 机械电子工程专业(博士学位)
工作经历
1988,8-1993 沈阳飞机制造公司 设计员、工艺员、标准化员
2006-2008 清华大学,精密仪器与机械学系 博士后
2008-至今 北京建筑工程学院,机电与汽车工程学院 副教授
2011,10-2012,05 美国西雅图大学访问学者

研究领域


1. 电火花加工过程的自适应控制研究
2. 线切割加工过程的自适应控制研究
3. 线切割恒张力控制系统研究
4. 航空、航天发动机整体带冠叶轮制造研究

近期论文


1. Xin Mu, Ming Zhou, Qing Ye. Improving surface integrity and surface roughness by forming multi-discharging channels from one pulse in EDM. The International Journal of Advanced Manufacturing Technology. Vol. 100, Numbers:9-12,2019. (SCI二区)
2. Ming Zhou, Xin Mu, Liang He, Qing Ye. Improving EDM performance by adapting gap servo-voltage to machining state. Journal of Manufacturing Processes 37 (2019) 101–113. (SCI二区)
3. Ming Zhou, Hongyan Jing, Jianwei Yang, Shengzuo Yao, Liang He. An extended adaptive control system for EDM. Procedia CIRP 68 ( 2018 ) 672 – 677. (SCI, IF:2.57)
4. Xin Mu, Ming Zhou*, Shengzuo Yao, Jianwei Yang. High efficient electrical discharge machining by servo voltage adaptive control. Procedia CIRP 68 ( 2018 ) 654 – 659. (SCI, IF:2.57)
5. Hongyan Jing, Ming Zhou*,Jianwei Yang, Shengzuo Yao. Stable and Fast Electrical Discharge Machining Titanium Alloy with MIMO Adaptive Control System. Procedia CIRP 68 ( 2018 ) 666 – 671. (SCI, IF:2.57)
6. Ming Zhou, Jianyang Wu, Xiaoyi Xu, Xin Mu, Yunping Dou. Significant Improvements of Electrical Discharge Machining Performance by Step-by–step Updated Adaptive Control Laws. Mechanical Systems and Signal Processing 101C (2018) pp. 480-497. 2017.06.041. (SCI一区 )
7. Jianyang Wu, Ming Zhou , Xiaoyi Xu, Jianwei Yang, XiangweiZeng, Donghui Xu. Fast and stable electrical discharge machining (EDM). Mechanical Systems and Signal Processing. 72-73 (2016) 420–431. (SCI一区)
8. Ming Zhou, Xianyi Meng, Jianjun Qin, Zhigang Chen, Xiangjiao Lian. Building an EDM process model by an instrumental variable approach based on two interactive Kalman filters. Precision Engineering 37 (2013) 146– 158. (SCI二区)
9. Ming Zhou, Jianyang Wu, Jianwei Yang, Dechen Yao. Fast and Stable Electrical Discharge Machining (EDM) by Two-step-ahead Predicted Control. Procedia CIRP 42 ( 2016 ) 215 – 220. (SCI,IF:2.57)
10.Ming Zhou, Zhigang Chen, Jufen Niu. Building an EDM process model by an instrumental variable approach. Procedia CIRP 6 (2013), Pages 456-462. (SCI IF:2.57)
11. Ming Zhou, Fuzhu Han, Yongxain Wang, Isago Soichiro. Assessment of dynamical properties in EDM process-Detecting deterministic nonlinearity of EDM process. International Journal of Advanced Manufacturing Technology, (2009) 44: 91–99. (SCI二区)
12. Ming Zhou, Fuzhu Han,Yongxain Wang, Isago Soichiro. Assessment of dynamical properties in EDM process-Detecting signature of latent change to deleterious process in advance. International Journal of Advanced Manufacturing Technology, (2009) 44: 283–292. (SCI二区)
13. Ming Zhou, Fuzhu Han, Isago Soichiro. A time-varied predictive model for EDM process. International Journal of Machine Tools and Manufacture, Volume 48, Issue 15, December 2008, Pages 1668-1677.(SCI一区)
14. Ming Zhou, Fuzhu Han. Adaptive Control for EDM Process with A Self-tuning Regulator. International Journal of Machine Tools and Manufacture Volume 49, Issue 6, May 2009, Pages 462-469. (SC一区)
15. Fuzhu Han, Yongxain Wang, Ming Zhou. High speed EDM milling with moving electric arcs. International Journal of Machine Tools and Manufacture. Volume 49, Issue 1, January 2009, Pages 20-24. (SCI一区)
16. 周 明,穆 鑫,荆红雁,赫 亮,袁美霞. 智能自适应电火花加工. 动力系统与控制, 2019, 8(1), 8-19.
17. 周明,荆红雁,王振东.高熔点难加工材料的电火花深孔加工(封面文章). 航空制造技术,2018年第9期,Vol.61 No.9.pp:16-22.
18. 兰雨涛,周明,荆红雁. 超前两步预测自适应电火花加工钛合金的研究. 《电加工与模具》2017 年第 5 期, pp:10-13.
19. 周明 吴建洋 曾祥渭 牛聚粉 田洪森. 电火花加工放电状态的自适应滤波研究. 哈尔滨工程大学学报,第36 卷第11 期,2015,1522-1525。 (EI)
20. Ming Zhou, Xianyi Meng, Yuejin Wang, Zhenli Gao, Yunping Dou, Boyan Tang, and Meixia Yuan,Structural Analysis and Building an EDM Process Model. Advanced Materials Research, Vols. 97-101 (2010) pp:4154-4159.(EI)

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