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东南大学机械工程学院导师教师师资介绍简介-李永哲副研究员

本站小编 Free考研考试/2021-02-16







李永哲



副研究员


办公室
机械楼355刘锦亭厅



**


信 箱
yongzheli@seu.edu.cn





个人简介

获荷兰代尔夫特理工大学、哈尔滨工业大学双博士学位,美国机械师工程学会(ASME)计算机与信息工程领域全球年度最佳博士论文奖获得者(2020年2人), 国际焊接工程师。研究领域为智能信息物理系统,动态情境感知与群体协同控制,电弧增材制造成形控制,焊接过程传感与控制等。共发表学术论文22篇,SCI收录10篇,EI收录7篇,英文学术专著1部,他引200余次。


工作经历

2020年-至今,东南大学,机械工程学院,副研究员


学习经历

2014-2019,代尔夫特理工大学,设计工程,博士
2012-2019,哈尔滨工业大学,材料加工工程(焊接),博士
2010-2012,哈尔滨工业大学,材料加工工程(焊接),硕士
2006-2010,哈尔滨工业大学,电子信息工程,本科


研究方向

(1)智能信息物理系统
(2)动态情境感知与群体协作控制
(3)电弧增材制造成形控制
(4)焊接过程传感与控制


奖励荣誉

ASME-CIE best Ph.D. Thesis Award
https://www.asme.org/about-asme/honors-awards/unit-awards/best-phd-thesisdissertation-award

发表论文

[1]Li, Y., Li, X., Zhang, G., Horváth, I., Han, Q., (2020) Interlayer closed-loop control of forming geometries for wire and arc additive manufacturing based on fuzzy-logic inference. Journal of Manufacturing Processes. In Press, pp: 1-13.
[2]Han, Q., Gao, J., Han, C., Zhang, G., Li, Y., (2020) Experimental investigation on improving the deposition rate of gas metal arc-based additive manufacturing by auxiliary wire feeding method. Welding in the World. In Press. pp: 1-11.
[3]Li, Y., Han, Q., Horváth, I., Zhang, G., (2019) Repairing surface defects of metal parts by groove machining and wire + arc based filling, Journal of Materials Processing Technology. 274: 116268.
[4]Li, Y., Horváth, I., Rusák, Z., (2019) Personalized messaging based on dynamic context assessment: Application in an informing cyber-physical system, Journal Integrated Design and Process Science. 23 (1), pp: 103-123.
[5]Li, Y., Horváth, I., (2019) Fundamentals and contributions to validation of constructive computational methodologies: a focused survey. 7th International Forum on Industrial Design, Luoyang, China, 012108.
[6]Li, Y., Huang, X., Horváth, I. Zhang, G., (2018) GMAW-based additive manufacturing of inclined multi-layer multi-bead parts with flat-position deposition, Journal of Materials Processing Technology, 262, pp: 359-371.
[7]Li, Y., Sun, Y., Han, Q., Zhang, G., Horváth, I., (2018) Enhanced beads overlapping model for wire and arc additive manufacturing of multi-layer multi-bead metallic parts. Journal of Materials Processing Technology. 252, pp 838-848.
[8]Li, Y., Han, Q., Zhang, G., Horváth, I. (2018) A layers-overlapping strategy for robotic wire and arc additive manufacturing of multi-layer multi-bead components with homogeneous layers. The International Journal of Advanced Manufacturing Technology, 96 (9-12), pp 3331–3344.
[9]Li, Y., Horváth, I., Rusák, Z., (2018) Constructing personalized messages for informing cyber-physical systems based on dynamic context information processing. The Twelfth International Symposium on Tools and Methods of Competitive Engineering, Las Palmas de Gran Canaria, Spain, May 7-11. pp: 1-18.
[10]Han Q., Li Y., Zhang G. (2018) Online Control of Deposited Geometry of Multi-layer Multi-bead Structure for Wire and Arc Additive Manufacturing. Transactions on Intelligent Welding Manufacturing, pp: 85-93.
[11]Horváth, I., Rusák, Z. Li, Y., (2017) Order beyond chaos: Introducing the notion of generation to characterize the continuously evolving implementations of cyber-physical systems. ASME 2017 International Design Engineering Technical Conferences & Computers and Information in Engineering Conference, Cleveland, United States, August 6-9, pp: 1-12.
[12]Horváth, I., Li, Y., Rusák, Z., van der Vegte, W.F., Zhang, G. (2016) Dynamic computation of time-varying spatial contexts. Journal of Computing and Information Science in Engineering. 17(1), pp: 1-12.
[13]张广军, 李永哲. (2016), 工业4.0语义下智能焊接技术发展综述. 航空制造技术, 11, pp: 34-39.
[14]Horváth, I., Li, Y., Rusák, Z., van der Vegte, W.F., Zhang, G. (2016) Dynamic Spatial Context Computation for Time-Varying Process Scenarios. ASME 2016 International Design Engineering Technical Conferences & Computers and Information in Engineering Conference, Charlotte, United States, August 21-24. pp: 1-16.
[15]Li, Y., Horváth, I., Rusák, Z., van der Vegte, W., Zhang, G., (2016) Conceptualization of a real-time information processing platform for context-aware informing cyber-physical systems. The Eleventh International Symposium on Tools and Methods of Competitive Engineering, Aix-en-Provence, France, May 9-13, pp: 53-65.
[16]Li, D., Yi, X., Li, Y., Yang, D., Zhang, G., (2015) Thermal simulation of a net-like microstructure in weld joint of high-strength steel thick plate by double-sided arc welding. The 3rd Annual International Conference on Material Science and Environmental Engineering, Wuhan, China, June 5-6. pp: 11-17.
[17]Li, Y., Song, Y., Horváth, I., Opiyo, E., Zhang, G., Xiong, J., (2014) Development of a framework for information acquisition and processing in cyber-physical systems. The Tenth International Symposium on Tools and Methods of Competitive Engineering, Budapest, Hungary, May 19-23. pp: 53-65.
[18]Li, Y., Zhang, G., Xiong, J., Wu, L., (2013) On-line detection system of weld-based rapid prototyping process based on structured light. China Welding. 22(1), pp: 1-5.
[19]Xiong, J., Zhang, G., Qiu, Z., Li, Y., (2013) Vision-sensing and bead width control of a single-bead multi-layer part: Material and energy savings in GMAW-based rapid manufacturing. Journal of Cleaner Production. 41, pp: 82-88.
[20]Xiong, J., Zhang, G., Hu, J., Li, Y., (2013) Forecasting process parameters for GMAW-based rapid manufacturing using closed-loop iteration based on neural network. The International Journal of Advanced Manufacturing Technology. 69 (1), pp: 743-751.



更新于2020年11月27日








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