教师名录

范根莲

副研究员
所属二级机构:复合材料研究所
硕导/博导:博导
通讯地址:上海市闵行区东川路800号材料D楼333室
电子邮箱:fangenlian@sjtu.edu.cn
教育经历
  • 1999-09 ~ 2003-06    西安交通大学   材料科学与工程学院     学士
  • 2003-09 ~ 2009-06    西安交通大学   材料科学与工程学院     博士
工作经历
  • 2004-09 ~ 2005-06    日本国立物质材料研究机构  访问学生
  • 2006-09 ~ 2008-06    日本国立物质材料研究机构  初级研究员
  • 2009-09 ~ 2011-06    上海交通大学材料科学与工程学院  博士后
  • 2011-09 ~ 2019-06    上海交通大学材料科学与工程学院  助理研究员
  • 2020-09 ~ 至今    上海交通大学材料科学与工程学院  副研究员
研究方向
  • 纳米碳增强铝基复合材料
  • 高阻尼材料
研究情况

致力于纳米金属基复合材料的制备技术和应用基础研究,近年来主要开展碳纳米管、石墨烯、纳米颗粒增强的纳米铝基复合材料的叠片粉末冶金制备技术原理研究,通过引入复合构型协调金属基复合材料强度、模量与塑韧性之间的矛盾,开发强韧兼备、结构功能一体化的新型金属基复合材料。近年来主持科研项目12项,发表SCI收录论文60余篇,申请中国发明专利25项,获得授权17项。

论文信息
  • M.L. Chen, G.L. Fan*, Z.Q. Tan, Ch. Yuan, D.B. Xiong, Q. Guo, Y.S. Su, M. Naito, Z.Q. Li*,Tailoring and characterization of carbon nanotube dispersity in CNT/6061Al composites, Materials Science & Engineering A 757, 2019, 172-181
  • Z. Li, G.L. Fan*, Z.Q. Tan, Z.Q. Li, Q. Guo, D.B. Xiong, D. Zhang, A versatile method for uniform dispersion of nanocarbons in metal matrix based on electrostatic interactions. Nano-Micro Letters, 8 (2016) 54-60.
  • G.L. Fan, Y. Jiang, Z.Q. Tan*, Q. Guo, D.X. Xiong, Y.S. Su, R.B. Lin, L. Hu, Z.Q. Li*, D. Zhang. Enhanced interfacial bonding and mechanical properties in CNT/Al composites fabricated by flake powder metallurgy. Carbon, 2018, 130, 333-339.
  • G.L. Fan, H.Y. Huang, Z.Q.Tan, D.B. Xiong, Q. Guo, M. Naito, Z.Q. Li, D. Zhang, Grain Refinement and Superplastic Behavior of Carbon Nanotube Reinforced Aluminum Alloy Composite Processed by Cold Rolling. Materials Science & Engineering A, 708 (2017) 537-543.
  • M.L. Chen, G.L. Fan*, Z.Q. Tan, Ch. Yuan, Q. Guo, D.B. Xiong, M.L.Chen, Q.Zheng, Z.Q.Li*, D. Zhang. Heat treatment behavior and strengthening mechanisms of CNT/6061Al composites fabricated by flake powder metallurgy, Materials Characterization 153 (2019) 261-270.
  • Z. Li, G.L. Fan*, Z.Q. Tan, Q. Guo, D.B. Xiong, Y.S. Su, Z.Q. Li, D. Zhang, Uniform dispersion of graphene oxide in aluminum powder by direct electrostatic adsorption for fabrication of graphene/aluminum composites. Nanotechnology, 25 (2014).
  • M.L. Chen, G.L. Fan*, Z.Q. Tan, D.B. Xiong, Q. Guo, Y.S. Su, Z.Q. Li*, M. Naito, D. Zhang, Design of an efficient flake powder metallurgy route to fabricate CNT/6061Al composites, Materials & Design, 142, 2018, 288-296.
  • H.Y. Huang, G.L. Fan*, Z.Q. Tan, D.B. Xiong, Q. Guo, C.P. Guo, Z.Q. Li, D. Zhang, Superplastic behavior of carbon nanotube reinforced aluminum composites fabricated by flake powder metallurgy. Materials Science & Engineering A, 699 (2017) 55-61.
  • R.Y. Zhao, R. Xu, G.L. Fan*, K.F. Chen, Z.Q. Tan, D.B. Xiong, Z.Q. Li, S.D. Kaloshkin, D. Zhang, Reinforcement with in-situ synthesized carbon nano-onions in aluminum composites fabricated by flake powder metallurgy. Journal of Alloys and Compounds, 650 (2015) 217-223.
  • D.B. Xiong, M. Cao, Q. Guo, Z.Q. Tan, G.L. Fan, Z.Q. Li*, D. Zhang*. Graphene-and-Copper Artificial Nacre Fabricated by a Preform Impregnation Process: Bioinspired Strategy for Strengthening-Toughening of Metal Matrix Composite. Acs Nano 2015;9:6934.
  • G.L. Fan, Z.Q. Li, D. Zhang, Damping capacity of BaTiO3/Al composites fabricated by hot extrusion. Transactions of Nonferrous Metals Society of China, 22 (2012) 2512-2516.
  • Z. Li, Q. Guo*, Z.Q. Li, G.L. Fan, D.B. Xiong, Y.S. Su, J. Zhang, D. Zhang*. Enhanced Mechanical Properties of Graphene (Reduced Graphene Oxide)/Aluminum Composites with a Bioinspired Nanolaminated Structure. Nano Letters 2015;15:8077.