Main Collaborators

Chen Feng

Author: Views:454Time:2020-11-27


Dr. CHEN Feng obtained his Ph.D. at Nanjing University of Aeronautics and Astronautics, Nanjing, China. He was visiting the College of Mechanical Engineering, University of Nebraska-Lincoln, USA from 2017 to 2018. His current research interests include Lightweight Technology and Equipment, Metal Forming and Joining, etc.

Email: fchen0526@nuaa.edu.cn


Academic Experience:

Ph.D. Aeronautical and Astronautical Manufacturing Engineering, 2019, Nanjing University of Aeronautics and Astronautics, Nanjing, China

B.A. Aerospace Manufacture Engineering, 2012, Nanjing University of Aeronautics and Astronautics, Nanjing, China

Visiting Ph.D. candidate, 2016, Mechanical Engineering, University of Nebraska-Lincoln y, USA


Publications:

  1. Chen, F., Tong, G. Q., Ma, Z., et al. (2016). The effects of welding parameters on the small-scale resistance spot weldability of Ti-1Al-1Mn thin foils. Materials & Design, 102, 174-185.

  2. Chen, F., Tong, G. Q., Yue, X., et al. (2017). Multi-performance optimization of small-scale resistance spot welding process parameters for joining of Ti-1Al-1Mn thin foils using hybrid approach. The International Journal of Advanced Manufacturing Technology, 89(9-12), 3641-3650.

  3. Chen, F., Gao, X. P., Yue, X. K., et al. (2018). Effects of welding parameters on electrode element diffusion during micro-resistance spot welding. The International Journal of Advanced Manufacturing Technology, 95(5-8), 1597-1606.

  4. Chen, F., Sun, S., Ma, Z., et al. (2018). Effect of weld nugget size on failure mode and mechanical properties of microscale resistance spot welds on Ti–1Al–1Mn ultrathin foils. Advances in Mechanical Engineering, 10(7), 1687814018785283.

  5. Chen, F., Wang, Y., Sun, S., et al. (2018). Multi-objective optimization of mechanical quality and stability during micro resistance spot welding. The International Journal of Advanced Manufacturing Technology, 1-11.

  6. Hu, Z., Chen, F., Xu, J., et al. (2018). 3D printing graphene-aluminum nanocomposites. Journal of Alloys and Compounds, 746, 269-276.

  7. Hu, Z., Chen, F., Xu, J., et al. (2018). Fabricating graphene-titanium composites by laser sintering PVA bonding graphene titanium coating: Microstructure and mechanical properties. Composites Part B: Engineering, 134, 133-140.

  8. Hu, Z., Chen, F., Lin, et al. (2017). Laser additive manufacturing bulk graphene–copper nanocomposites. Nanotechnology, 28(44), 445705.



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