讲师

陈威

作者:    发布:2020-10-22 15:06    点击量:

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导师姓名:陈威

导师类型:硕士研究生导师  

出生日期:1987.10

职称:讲师





个人简介:博士毕业于武汉理工大学材料学专业,主要从事功能建筑材料及新型高分子防水材料的研究主持国家重点研发计划子课题一项,参与国家自然科学基金一项军工项目多项,以第一作者和共同作者发表SCI论文15篇,申请国家发明专利8

所在学院:ok138太阳集团中国官方网站

专业:土木工程

研究方向:功能建筑材料;新型高分子防水材料

主讲硕士生课程先进功能材料及应用

科研项目:2020.1-2022.12,基于机械力-化学动态干预的固废硅--氧网络结构高效预解聚机理,十三五国家重点研发计划子课题,项目编号:2019YFC1907101-02,主持

2014.1-2017.12,混杂碳毡复合材料短波频段选择性透过特性研究,国家自然科学基金面上项目,项目编号:51373129,参与;

2019.06-2021.05,碳纤维复合材料的电磁性能调控及机理研究,ok138太阳集团中国官方网站博士科研启动基金,项目编号:BSQD2019039,主持。

科研成果:

  1. Chen W, Zheng X, He X*, et al. Achieving full effective microwave absorption in X band by double-layered design of glass fiber epoxy composites containing MWCNTs and Fe3O4 NPs. Polymer Testing, 2020, 86: 106448.

  2. Chen W, Peng K, Wang J*, He X*, et al. Enhanced microwave absorption properties of nickel-coated carbon fiber/glass fiber hybrid epoxy composites-towards an industrial reality. Materials Research Express, 2019, 6(12): 126324.

  3. Chen W, Wang J*, Wang T, et al. Electromagnetic interference shielding properties of nickel-coated carbon fiber veil/acid-functionalized MWCNTs/epoxy multiscale composites. Journal of Reinforced Plastics and Composites, 2015, 34(13): 1029-1039.

  4. Chen W, Wang J*, Zhang B, et al. Enhanced electromagnetic interference shielding properties of carbon fiber veil/Fe3O4 nanoparticles/epoxy multiscale Composites. Materials Research Express, 2017, 4, 126303.

  5. Chen W, Wang J*, Wang T, et al. Electromagnetic interference shielding properties of electroless nickel-coated carbon fiber paper reinforced epoxy composites. Journal of Wuhan University of Technology-Mater. Sci. Ed., 2014, 29(6): 1165-1169.

  6. Su X, Wang J*, Zhang X, Huo S, Chen W, et al. Design of controlled-morphology NiCo2O4 with tunable and excellent microwave absorption performance. Ceramics International, 2020, 46(6): 7833-7841.

  7. Wang J, Sun Y, Chen W, et al. Enhanced microwave absorption performance of lightweight absorber based on reduced graphene oxide and Ag-coated hollow glass spheres/epoxy composite. Journal of Applied Physics, 2015, 117(15): 154903.

  8. Wang T, Wang J*, Chen W, et al. Toughening epoxy resins by modification with in situ polymerized acrylate copolymer composed of butyl acrylate and glycidyl methacrylate. High Performance Polymers, 2015, 27(2): 177-182.

  9. Wang J, Wang J*, Zhang B, Sun Y, Chen W, et al. Combined use of lightweight magnetic Fe3O4-coated hollow glass spheres and electrically conductive reduced graphene oxide in an epoxy matrix for microwave absorption. Journal of Magnetism and Magnetic Materials, 2016, 401: 209-216.

  10. Wang J, Wang J*, Zhang B, Sun Y, Xu R, Chen W, et al. Enhanced microwave absorption properties of epoxy composites reinforced with Fe50Ni50-functionalized graphene. Journal of Alloys and Compounds, 2015, 653: 14-21.