Language : English
周明勇
  • Personal Information



    Supervisor of Master's Candidates

    Date of Employment:2019-08-30

    School/Department:School of Mechanical and Electrical Engineering

    Education Level:PhD Graduate

    Business Address:新校区机电楼A420

    Sex:Male

    Degree:Doctoral degree

    Status:Employed

    Alma Mater:中南大学

    Discipline:Mechanical Engineering

  • Profile

    周明勇,湖南郴州人,

    中南大学机电工程学院/极端服役性能精准制造国家重点实验室,副教授/硕导,中德(CSC-DAAD)奖学金获得者,机械2004班、智能制造T2201班导师

    地址:长沙市岳麓区中南大学新校区机电楼A420室
    邮箱: mingyong.zhou1989@csu.edu.cn 或 zmy_csu@163.com

    电话:15974252435 (微信同号)


    研究兴趣

    主要从事聚合物微纳加工,微流控芯片技术,仿生表面设计制造,汽车及3C产品轻量化技术,材料成型过程模拟等工作,在Applied Surface Science(TOP1)、International Journal of Heat and Mass Transfer(TOP)、Micromachines、International Journal of Advanced Manufacturing Technology、Computational Materials Science等期刊发表论文50余篇,主持、参与多项国家级科研项目,Composites Part B、 Surface & Coating Technology等期刊审稿人,Polymers期刊Guest editor,《工程塑料应用》首届青年编委等。

    欢迎对微流体驱动与控制微纳医疗器械、精密成型与加工、轻量化结构、生物功能表面/材料等感兴趣的同学们加入团队!


    研究团队:中南大学聚合物微纳制造与系统集成中心,学术带头人为蒋炳炎教授。

    实验条件:拥有“微注射成型与模具自动化”、“高分子材料成型工艺与模具”实验室,以及“微流控芯片加工及生化检测”实验室;

    研究方向:聚焦行业、企业发展瓶颈,面向重大战略需求和社会民生需求,研究领域处于国际前沿;

    国际合作:与德国埃尔朗根-纽伦堡大学(2019路透社世界最具创新力大学排名:世界第14位,德国第1位)、德国Clausthal工业大学建立了长期的合作关系,可推荐至合作单位继续深造学习。


    教育经历

    2007.9-2016.11,中南大学,机电工程学院,本科、博士(直博);

    工作经历:
    2019.8-至今,中南大学,机电工程学院,讲师、副教授(2021.9);

    2016.12-2019.6,中南大学,粉末冶金研究院,博士后;

    2017.9-2019.2,德国埃尔朗根-纽伦堡大学,聚合物技术研究所(LKT),博士后;

    科研项目:
    1、国家自然科学基金青年基金项目,聚合物-金属混合结构界面粘接微观机理及注射成型制备,2019-2020,主持;

    2、湖南省自然科学基金青年基金项目,基于声流控技术的微纳尺度颗粒微流控高效分选机理研究,2021-2023,主持;

    3、高性能复杂制造国家重点实验室自主课题,面向外泌体高效分离的微流控芯片设计与制造研究,2021-2023,主持;

    4、中国博士后科学基金面上项目,注射成型表面纳米结构形貌演变机理及超疏水特性研究,2018-2019,主持;

    5、主持中德CSC-DAAD博士后项目(2017-2019),主研国家自然科学基金重点国际(地区)合作研究项目(2020-2024)、湖南省重点领域研发计划项目课题负责人(2019-2022)。



    代表性成果:

    更新成果详见researchgate主页。  https://www.researchgate.net/profile/Mingyong-Zhou-3

    [33] M. Zhou, S. Liu, X. Yang, Z. Zhai. Journal of Manufacturing Processes, 95 (2023) 508–520.

    [32] S. Yuan, M. Zhou, X. Liu, Q. Li, D. Drummer, B. Jiang. Physics of Fluids, 35, (2023) 012017.

    [31] H. Guo, S. Liu, B. Jiang, M. Zhou. Surface and Coatings Technology, 445 (2022) 128718. 

    [30] Z. Zhai, Q. He, L. Fu, N. Liu, X. Liu, B. Jiang, M. Zhou, Journal of Applied Polymer Science, 139 (2022) 52166.

    [29] S. Yuan, M. Zhou, T. Peng, Q. Li, F. Jiang, Physics of Fluids, 34 (2022) 032007.

    [28] S. Yuan, B. Jiang, T. Peng, M. Zhou, D. Drummer, Chemical Engineering and Processing - Process Intensification, 171 (2022) 108747.

    [27] S. Yuan, B. Jiang, F. Jiang, D. Drummer, M. Zhou, International Journal of Heat and Mass Transfer, 191 (2022) 122815.

    [26] W. Wu, C. He, Y. Qiang, H. Peng, M. Zhou, International Journal of Molecular Sciences, 23 (2022) 2829.

    [25] H. Tang, W. Shi, Y. Ding, T. Miao, L. Fu, M. Zhou, Z. Zhai, Polymer Composites, 43 (2022) 1799-1808.

    [24] T. Peng, M. Zhou, S. Yuan, C. Fan, B. Jiang, Applied Mathematical Modelling, 101 (2022) 517-532.

    [23] Q. Li, B. Jiang, X. Li, M. Zhou, Micromachines, 13 (2022) 965.

    [22] B. Jiang, H. Guo, D. Chen, M. Zhou, Applied Surface Science, 574 (2022) 151704.

    [21] C. Fan, B. Jiang, W. Shi, D. Chen, M. Zhou, Biosensors, 12 (2022) 435.

    [20] S. Yuan, B. Jiang, T. Peng, Q. Li, M. Zhou, Micromachines, 12 (2021) 462.

    [19 J. Yang, M. Zhou, J. Liu, H. Wang, C. Weng, Applied Surface Science, 559 (2021) 149963.

    [18] C. Weng, J. Chen, J. Yang, M. Zhou, B. Jiang, Nanomaterials (Basel), 11 (2021).

    [17] B.Y. Jiang, T. Peng, S. Yuan, M.Y. Zhou, Prog Chem, 33 (2021) 1780-1796.

    [16] J. Chen, J. Yang, M. Zhou, C. Weng, Micromachines, 12 (2021) 636.

    [15] M. Zhou, L. Fu, F. Jiang, B. Jiang, D. Drummer, Polymers, 12 (2020) 1696.

    [14] M. Zhang, X. Wang, M. Zhou, Z. Zhai, B. Jiang, Polymer, 207 (2020) 122915.

    [13] Y. Wang, B. Jiang, M. Zhou, J. Chen, C. Weng, Polymers, 12 (2020) 2914.

    [12] M. Zhou, X. Xiong, D. Drummer, B. Jiang, Polymers, 11 (2019) 557.

    [11] M. Zhou, X. Xiong, D. Drummer, B. Jiang, Applied Surface Science, 478 (2019) 680-689.

    [10] C. Weng, D. Yang, M. Zhou, Micromachines, 10 (2019) 636.

    [9] M. Zhou, X. Xiong, B. Jiang, C. Weng, Applied Surface Science, 427 (2018) 854-860.

    [8] M. Zhou, X. Xiong, D. Drummer, B. Jiang, Computational Materials Science, 149 (2018) 208-216.

    [7] C. Weng, F. Wang, M. Zhou, D. Yang, B. Jiang, Applied Surface Science, 436 (2018) 224-233.

    [6] M. Zhou, B. Jiang, C. Weng, L. Zhang, Microsystem Technologies, 23 (2017) 983-989.

    [5] B.-Y. Jiang, M.-Y. Zhou, C. Weng, C.-F. Li, International Polymer Processing, 32 (2017) 159-164.

    [4] M. Zhou, B. Jiang, C. Weng, Computational Materials Science, 120 (2016) 36-42.

    [3] C. Weng, M. Zhou, B. Jiang, H. Lv, International Communications in Heat and Mass Transfer, 75 (2016) 92-99.

    [2] B.-y. Jiang, M.-y. Zhou, C. Weng, L. Zhang, H. Lv, The International Journal of Advanced Manufacturing Technology, 86 (2016) 1319-1328.

    [1] B.-y. Jiang, C. Weng, M.-y. Zhou, H. Lv, D. Drummer, Journal of Central South University, 23 (2016) 2536-2541.


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