FACULTY


|

Lei, Jincheng 

  • Positional Title: Associated Professor

  • Email: leijincheng@scut.edu.cn

  • Working For: Shien-Ming Wu School of Intelligent Engineering

  • Zip Code: 510640

  • Graduated School: Clemson University,Ph.D.

  • Final Degree: Ph.D.

  • Office: D1-a502

  • Telephone: 020-81182127

  • Mentor Type: doctoral and master supervisor

Personal profile  

Dr. Jincheng Lei is currently an Associate Professor of Shien-Ming Wu School of Intelligent Engineering, South China University of Technology. He received his Ph.D. degree in electrical engineering from Clemson University, the United States in 2019, and his bachelor’s degree in Materials Science and Engineering from South China University of Technology, China in 2013.

Dr. Lei’s research mainly focuses on the applied and fundamental research of advanced laser processing and additive manufacturing. He proposed the multi-laser-based Laser-integrated Additive and Subtractive Manufacturing (LASM) technologies. His research covers the development of advanced laser manufacturing equipment, new processing technologies, new materials, and intelligent technologies for laser-based manufacturing processes. The goal of his research is to accomplish the integrated manufacturing of high-performance ceramics, glasses and polymers for various applications in optoelectronics, precision manufacturing, harsh environment monitoring, and biomedicals.

Current thrust areas include: 1) Advanced laser micro/nano processing, 2) Additive manufacturing of ceramics and glasses, 3) Data-driven processing characterization and prediction.

Work Experience  

  • 2020-2020 Post-Doctoral Fellow, Department of Electrical and Computer Engineering, Clemson University

  • 2021 – Present Associate Professor, Shien-Ming Wu School of Intelligent Engineering, South China University of Technology

Education  

  • 2009-2013,B.E., South China University of Technology, Materials Science and Engineering

  • 2014-2019,Ph.D., Clemson University, Electrical Engineering

Research Interest  

  • Laser micro/nano processing;Additive manufacturing of ceramics and glasses;Data-driven processing characterization and prediction

Courses

  • Engineering Mechanics,Design and Manufacturing II

Selected Publications  

2022

  • [1] J. Lei*, Q. Zhang, Y. Wang, H. Zhang. 'Direct laser melting of Al2O3 ceramic paste for application in ceramic additive manufacturing.' Ceramics International, vol. 48, no. 10, pp. 14273-14280, (2022), JCR一区

2020

  • [2] J. Lei, Q. Zhang, Z. Zhao, Y. Chen, J. Gao, J. Tong, F. Peng, and H. Xiao. 'One-step fabrication of nanocrystalline nanonetwork SnO2 gas sensors by integrated multilaser processing.' Advanced Materials Technologies, pp. 200281, (2020), JCR一区

  • [3] J. Lei, J. Chen, Y. Hong, Q. Zhang, Q. Chen, J. Tong, H. Xiao, F. Peng, and R.K. Bordia. 'The effect of laser sintering on the microstructure, relative density, and cracking of sol‐gel–derived silica thin films.' Journal of the American Ceramic Society, vol. 103, no. 1, pp. 70-81 (2020), JCR一区

  • [4] J. Lei, Q. Zhang, Y. Song, J. Tang, J. Tong, F. Peng, and H. Xiao. 'Laser-assisted embedding of all-glass optical fiber sensors into bulk ceramics for high-temperature applications.' Optics and Laser Technology, vol. 128, pp.106223, (2020), JCR一区

  • [5] Q. Zhang, J. Lei, Y. Chen, J. Tang, Y. Wu, L. Hua, and H. Xiao. 'Information integrated glass module fabricated by integrated additive and subtractive manufacturing.' Optics Letters, vol. 45, no. 7, pp. 1663-1666, (2020), JCR 一区.

2019

  • [6] J. Lei, Y. Hong, Q. Zhang, F. Peng, and H. Xiao, 'Additive Manufacturing of Fused Silica Glass Using Direct Laser Melting,' 2019 Conf. Lasers Electro-Optics, CLEO 2019 - Proc. 1, 4–5 (2019).

  • [7] B. Cheng, J. Lei, and H. Xiao. 'A photoacoustic imaging method for in-situ monitoring of laser assisted ceramic additive manufacturing.' Optics and Laser Technology, vol. 115, pp. 459-464, (2019), JCR 一区

  • [8] Q. Zhang, J. Lei, Y. Chen, Y. Wu, C. Chen, and H. Xiao. '3D printing of all-Glass fiber-optic pressure sensor for high temperature applications.' IEEE Sensors Journal, vol. 19, no. 23, pp. 11242-11246, (2019), JCR 二区

  • [9] Y. Hong, J. Lei, M. Heim, Y. Song, L. Yuan, S. Mu, R.K. Bordia, H. Xiao, J. Tong, and F. Peng. 'Fabricating ceramics with embedded microchannels using an integrated additive manufacturing and laser machining method.' Journal of the American Ceramic Society, vol. 102, no. 3, pp. 1071-1082, (2019), JCR 一区.