赵正彩

个人信息Personal Information

副教授

招生学科专业:
机械工程 -- 【招收博士、硕士研究生】 -- 机电学院
机械 -- 【招收博士、硕士研究生】 -- 机电学院

毕业院校:南京航空航天大学

学历:南京航空航天大学

学位:工学博士学位

所在单位:机电学院

办公地点:机电学院A15-334

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个人简介Personal Profile

赵正彩南京航空航天大学机电学院副教授、博导,教育部创新团队和南航百强创新团队核心成员;主要从事航空航天难加工材料/复杂结构自适应智能加工技术研究,主持两机专项课题、民机专项课题、国家自然科学基金等项目;发表学术论文36篇,其中以第一作者/通讯作者发表SCI收录期刊论文23篇,授权发明专利12件。


科研工作经历:

1. 2020年-至今,南京航空航天大学,机械制造及其自动化系,副教授

2. 2017年-2020年,南京航空航天大学,机械制造及其自动化系,讲师

3. 2017-2017年,新加坡制造技术研究院,成形技术部,博士后

4. 2015-2016年,美国南加利福尼亚大学,工业与系统工程系,访问学者


教育背景:

1. 2011-2017年,南京航空航天大学,机械制造及其自动化,博士

2. 2007-2011年,南京航空航天大学,机械工程及自动化,学士



发表学术论文36篇(其中SCI收录23篇,EI收录4:


2023年:


[36] Yao Li, Zhengcai Zhao*, Yucan Fu, Qingliang Chen. A novel approach for tool condition monitoring based on transfer learning of deep neural networks using time-frequency images. Journal of Intelligent Manufacturing (2023). Accept.

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2022年:


[35] Zhengcai Zhao*, Yao Li, Yucan Fu. Collision-free path planning for efficient inspection of free-form surface by using a trigger probe. International Journal of Advanced Manufacturing Technology (2022) 120: 2183-2200.

图片2.jpg





[34] Shengtao Lin, Zhengcai Zhao*, Xianfeng Zhu, Yucan Fu. An augmented reality-based system for ultrasonically measuring the thickness of thin-walled parts. IEEE Transactions on Instrumentation and Measurement  (2022) 71: 5500409.


2021年:


[33] Zhengcai Zhao*, Ning Qian, Yucan Fu. Coolant condition and spindle power in high-efficiency-deep-grinding of nickel-based superalloy profile part. Materials and Manufacturing Processes (2021). Accept.


[32] Dawei Ding, Zhengcai Zhao*, Rui Huang, et al. Error Modeling and Path Planning for Freeform Surfaces by Laser Triangulation On-Machine Measurement. IEEE Transactions on Instrumentation and Measurement (2021) 70: 1005811.


[31] Dawei Ding, Zhengcai Zhao*, Yao Li, Yucan Fu. Calibration and capability assessment of on-machine measurement by integrating a laser displacement sensor. International Journal of Advanced Manufacturing Technology (2021) 113: 2301-2313.


[30] Junming Hou, Zhengcai Zhao*, Yucan Fu, Ning Qian. Machining stability enhancement in multi-axis milling of titanium hollow blade by introducing multiple damping and rigid supporters. Journal of Manufacturing Processes. (2021) 64: 198-208.(SCI收录)


[29] Zhengcai Zhao*, Taorui Xu. A Novel Approach for Process Shape Construction in Adaptive Machining of Curved Thin-walled Part. Precision Engineering, 2021, 67: 282-292. (SCI收录)


[28] Zhengcai Zhao*, Dawei Ding, Yucan Fu. Error identification and compensation for a laser displacement sensor based on on-machine measurement. OPTIK, (2021) 225:165902. (SCI收录)



2020年:


[27] Zhengcai Zhao*, Junming Hou, Yucan Fu. Measurement-based modal analysis and stability prediction on turn-milling of hollow turbine blade. Shock and Vibration, 2020. (SCI收录)


[26] Zhengcai Zhao*, Taorui Xu, Yao Li, Yucan Fu. Profile and thickness constrained adaptive localization for manufacturing curved thin-walled parts based on on-machine measurement.  International Journal of Advanced Manufacturing Technology, 2020, 110: 113-123. SCI收录


[25] Zhengcai Zhao*, Ning Qian, Wenfeng Ding, Yang Wang, Yucan Fu. Profile grinding of DZ125 nickel-based superalloy: Grinding heat, temperature field, and surface quality. Journal of Manufacturing Processes, 2020, 57: 10-22.SCI收录

[24] Zhengcai Zhao*, Yang Wang, Ning Qian, Honghua Su, Yucan Fu. A framework for accuracy enhancement in milling thin-walled narrow-vane turbine impeller of NiAl-based superalloy. International Journal of Advanced Manufacturing Technology, 2020, 108:3925-3938.SCI收录

[23] Dawei Ding, Zhengcai Zhao*, Xinquan Zhang, Yucan Fu, Jiuhua Xu. Evaluation and compensation of laser-based on-machine measurement for inclined and curved profiles. Measurement, 2020, 151: 207136 1-9.SCI收录




2019年:


[22] Zhengcai Zhao*, Dawei Ding, Yucan Fu, Jiuhua Xu. Measured data-driven shape-adaptive machining via spatial deformation of tool cutter positions. Measurement, 2019, 135: 244-251.SCI收录




[21] Zhengcai Zhao*, Dawei Ding, Yucan Fu, Jiuhua Xu, Jielong Han. A hybrid approach for measurement thickness of complex structural parts using ultrasonic inspection and on-machine probing. International Journal of Advanced Manufacturing Technology, 2019, 103:4777-4785.(SCI收录


2018年


[20] Zhao Zhengcai, Xu Jiuhua, Fu Yucan*, Li Zhiqiang. An investigation on adaptive machining leading and tailing edges of SPF/DB titanium hollow blade using free-form deformation. Chinese Journal of Aeronautics, 2018, 31:178-186.SCI收录



[19] Gaoqun Liu, Zhengcai Zhao, Yucan Fu*, Jiuhua Xu, Zhiqiang Li. Deformation analysis and error prediction in machining of thin-walled honeycomb-core sandwich structural parts. International Journal of Advanced Manufacturing Technology, 2018, 95:3875-3886.SCI收录



2017年


[18] Zhengcai Zhao, Yucan Fu*, Xuan Liu, Jiuhua Xu, Jun Wang, Shujie Mao. Measurement-based geometric reconstruction for milling turbine blade using free-form deformation. Measurement, 2017, 101:19-27.SCI收录




[17] Kai Xu, Tsz-Ho Kwok, Zhengcai Zhao, Yong Chen*. A Reverse compensation framework for shape deformation control in additive manufacturing. Journal of Computing and Information Science in Engineering, 2017, 17:021012-1-9.SCI收录

[16] Zhengcai Zhao*, Yucan Fu, Jiuhua Xu, Yong Chen. Measurement-based adaptive machining by direct spatial deformation of template CAM data. Proceedings of ASME 2017 International Manufacturing Science and Engineering Conference.EI收录

[15] 刘轩赵正彩傅玉灿*徐九华李志强钛合金风扇叶片磨削加工性能试验研究. 航空制造技术, 2017.

[14] 江志伟赵正彩傅玉灿*徐九华李志强丁悦钛合金空心风扇叶片进排气边加工变形预测. 航空制造技术, 2017.

[13] 茅暑杰徐九华赵正彩傅玉灿*基于有限差分模型的磨削弧区流场动压力数值分析金刚石与磨料磨具工程, 2017, 37(1):19-24.


2016年


[12] Zhengcai Zhao, Yucan Fu*, Jiuhua Xu, Zhiwei Zhang. Behavior and quantitative characterization of CBN wheel wear in high-speed grinding of nickel-based superalloy. International Journal of Advanced Manufacturing Technology, 2016, 87(9-12):3545-3555.SCI收录



[11] Zhengcai Zhao, Jiuhua Xu, Yucan Fu*. Study on coolant-induced hydrodynamic pressure in contact zone while deep grinding with CBN wheels. Machining Science and Technology, 2016, 20(4):547-566.SCI收录



[10] Zhengcai Zhao, Yucan Fu*, Jiuhua Xu, Zhiwei Zhang, Zhiwu Liu, Jian He. An investigation on high-efficiency profile grinding of directional solidified nickel-based superalloys DZ125 with electroplated CBN wheel. International Journal of Advanced Manufacturing Technology, 2016, 83(1-4):1-11.SCI收录

[9] Gaoqun Liu, Zhengcai Zhao, Yucan Fu*, Zhiliang Yan. An investigation of forces and tool wear in milling of Ni3Al-base superalloy. Materials Science Forum, 2016, 861:32-37.


2015年


[8] Bin Jiang, Yucan Fu*, Zhengcai Zhao, Bo Ping, Haining Wang, Wenfeng Ding. Experimental study on profile machining of titanium alloys with superabrasive tools. Advanced Materials Research, 2015, 806: 60-65.

[7] 赵正彩傅玉灿*徐九华平波李志强韩秀全邵杰韩晓宁刘敏钛合金宽弦空心风扇叶片榫齿成型铣削研究工具技术, 2015, 09:21-24.


2014年


[6] 徐九华赵正彩傅玉灿*李志强邵杰韩晓宁袁士平钛合金宽弦空心风扇叶片数控切削加工关键技术南京航空航天大学学报, 2014, 46:659-666.

[5] Zhengcai Zhao, Jiuhua Xu*, Yucan Fu, Zhiwei Zhang. Performance of micro-crystalline ceramic alumina wheels during creep feed grinding nickel-based superalloy. International Journal of Abrasive Technology, 2014, 6(4):314-323.EI收录

[4] Ping Bo, Fu Yucan*, Zhang Zhiwei, Zhao Zhengcai. Effect of grinding speed on energy partition for grinding of Inconel 718 with vitrified CBN wheels. Materials Science Forum, 2014, 770:263-266.EI收录

[3] 傅玉灿*张志伟徐九华赵正彩定向凝固镍基高温合金叶片榫齿高效深切成型磨削南京航空航天大学学报, 2014, 46(2): 190-196.


2013年


[2] Zhengcai Zhao, Jiuhua Xu*, Yucan Fu, Zhiwei Zhang. Creep feed grinding of Ni-based superalloy with microcrystalline ceramic alumina wheels. Advanced Materials Research, 2013, 797:511-515.EI收录

[1] 张志伟徐九华*傅玉灿赵正彩平波陶瓷CBN砂轮高效磨削的弧区冷却液动压力研究金刚石与磨料磨具工程, 2013, 33(6): 74-79.


在读学生:

博士生:

  • 甄晓彤 (2023年春季博士生)


硕士生:

  • 张   创(2021级硕士研究生)

  • 李晨菲(2022级硕士研究生

  • 张   威2022级硕士研究生

  • 徐士龙2022级硕士研究生

  • 马依熙2023级硕士研究生

  • 郑世旭2023级硕士研究生

  • 赵万鑫2023级硕士研究生


毕业学生:

  • 杨一帆(2022年硕士毕业)

  • 杨   伸(2023年硕士毕业




  • 教育经历Education Background
  • 工作经历Work Experience
    2017.12 至今
    • 南京航空航天大学
  • 研究方向Research Focus
  • 社会兼职Social Affiliations
  • 在机测量
  • 复杂结构数控加工