北京交通大学硕士研究生导师信息:祁国成
2026-07-16 16:54:00来源: 网络
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在读研期间,所有与你读研相关的事情,可能都需要经过你的导师同意,所以说,选择导师真的很重要,也希望大家能够认真对待这件事,怎样才能选择适合自己的导师呢?这就要我们提前做足功课,尽可能多的搜集有关你准备报考的导师的信息,下面新东方在线考研频道为大家分享:“北京交通大学硕士研究生导师信息:祁国成”文章。
祁国成
博士 、副教授
基本信息
办公电话:010-5168 3826电子邮件: gchqi@bjtu.edu.cn
通讯地址:北京市海淀区上园村3号邮编:100044
教育背景
2008-2012 北京航空航天大学 工学学士
2012-2017 北京航空航天大学 工学博士(导师:杜善义 院士)
工作经历
2017-2019 德国魏玛大学 结构力学研究所 Postdoc/DAAD fellow (合作导师:Prof. Dr. -Ing Timon Rabczuk院士)
2019-2021 帝国理工学院 航空航天系 Research Associate (合作导师:Prof. Emile S. Greenhalgh)
2021- 北京交通大学 力学系 副教授/博导
研究方向
先进材料和结构的力学行为
招生专业
力学硕士
力学博士
科研项目
[1]国家自然科学基金: 考虑碳纤维/结构电解质界面的结构储电复合材料力-电多功能协同作用机理研究, 2024-2026,主持
[2]红果园国家级项目:******新型结构设计技术,2023-2025,主持
[3]红果园国家级项目: 基于复合材料粘弹性细观力学的舱段变形控制工艺理论研究, 2021-2022,主持
[4]中德Sino-German联合科研项目(DAAD学者),2017-2019,主持
[5]自然科学类人才基金项目(学校启动基金): 碳纤维复合材料结构超级电容器的多功能优化与设计, 2021-2024,主持
[6]美空军AFRL-EOARD项目:结构储能复合材料损伤容限,2017-2020,参与
[7]英国皇家工程院Chair of Emerging Technology项目:Massless Energy, 2020-2029,参与
[8]英国ESPRC项目:结构储能复合材料(Beyond structural), 2018-2021,参与
[9]欧盟Horizon 2020项目: 未来飞行器结构储能复合材料(Socerer),2017-2021,参与
课题组培养毕业生人均offer数量≥3。
指导的6名硕士去向:中国航天2人,中车1人,读博3人。
指导的4名本科生去向:读研/直博3人,京东方1人。
欢迎27年推免生、27年博士生等加入课题组开展高水平研究,有27硕博招生名额(邮箱gchqi@bjtu.edu.cn)
教学工作
本科:
工程力学D、理论力学、工程力学A II、复合材料力学
研究生:
先进复合材料力学、复合材料宏细观力学
论文/期刊
[1] Chen L, Qi G*, et al. The carbon fiber/resin interfacial shear strength assessment by the off-axial tensile tests of fiber tow composites. Composites Science and Technology. 2026, 283: 111697.(TOP)
[2] Yao B, Ren L, Qi G*, et al. Research on the elastic–plastic behaviors of bicontinuous polymer matrix and carbon fiber-reinforced composites based on micromechanical modelling. Polymers 2025, 17, 2517(Q1区)
[3] 张鹏,祁国成*,等.复合材料回转体网格结构热矫形机理及仿真模型研究.复合材料学报, 2025, 42(4): 2310-2319 (EI)
[4] 陈龙,祁国成.基于纤维丝束试样的界面剪切强度表征.中国力学大会-2025摘要集(第二册).2025:5. (会议)
[5] 许真,祁国成.基于细观尺度力学分析的纤维增强复合材料轴向压缩性能数值模拟与强度预测.中国力学大会-2025摘要集(第二册).2025:84.(会议)
[6] Qi G*, Wu J, Yao B, Cui Q, Ren L, Zhang B, Du Shanyi. High modulus carbon fiber based composite structural supercapacitors towards reducing internal resistance and improving multifunctional performance. Composites Science and Technology. 2024, 110670. (TOP)
[7] Li Z*, Liu M, Kumar P, Chang Z, Qi G, He P, Wei Y*, Young R J., Novoselov K S. . Interfacial Stress Transfer and Fracture in van der Waals Heterostructures. Advanced Materials. 2024, 36, 2411244.(1区TOP)
[8] Qi G*, Wu Y, et al. Multifunctional performances of structural battery composite full-cells based on carbon fiber anode and LiFePO4 loaded carbon fiber cathode. Polymer Testing. 2024, 137 108523(Q1区)
[9] Nguyen S, Anthony D, Katafiasz T, Qi G, Razavi S, Senokos E, Greenhalgh E, Shaffer M, Kucernak A, Linde P. Manufacture and characterisation of a structural supercapacitor demonstrator. Composites Science and Technology. 2024;245,110339. (TOP)
[10] Li J, Sun Y, Zhang B, Qi G. Mechanical, Dielectric and Flame-Retardant Properties of GF/PP Modified with Different Flame Retardants. Polymers 2024, 16, 1681. (Q1区)
[11] Li J, Sun Y, Zhang B, Qi G. Mechanical, Flame-Retardant and Dielectric Properties of Intumescent Flame Retardant/Glass Fiber-Reinforced Polypropylene through a Novel Dispersed Distribution Mode. Polymers 2024, 16,1341. (Q1区)
[12] Qi G*, Cui Q*, Zhang B, Du Shanyi. A carbon fiber lamina electrode based on macroporous epoxy with vertical ion channels for structural battery composites. Composite Structures, 2023;304, 116425. (1区TOP)
[13] 祁国成.基于垂直微通道结构电解质的碳纤维复合材料结构电池设计与多功能特性//北京力学会.北京力学会第二十九届学术年会论文集.2023:2.(会议)
[14] Xu T, An Z, Qi G, Zhang R. A novel cost-effective and near-net-shape fabrication process for SiO2f/SiO2 composites. Journal of the European Ceramic Society 2023;43 (9), 4095-4101(1区)
[15] Ding Y, Qi G*, et al. High-performance multifunctional structural supercapacitors based on in-situ and ex-situ activated carbon coated carbon fiber electrodes. Energy & Fuels, 2022; 36(4), 2171–2178. (Q1区, Cover)
[16] Pernice F, Qi G, Senokos E, Anthony D, Nguyen S, Volkova M, Greenhalgh E*, Shaffer M, Kucernak A. Mechanical, electrochemical and multifunctional performance of a CFRP/carbon aerogel structural supercapacitor and its corresponding monofunctional equivalents, Multifunctional Materials, 2022;5,025002 (EI)
[17] Yao X, Hou X, Qi G, et al. Preparation of superhydrophobic polyimide fibrous membranes with controllable surface structure for high efficient oil-water emulsion and heavy oil separation. Journal of Environmental Chemical Engineering. 2022, 10(3), 107470. (2区)
[18] Qi G, Nguyen S, Anthony D, Kucernak A, Shaffer M, Greenhalgh E*. The Influence of Fabrication Parameters on the Electrochemical Performance of Multifunctional Structural Supercapacitors. Multifunctional Materials. 2021; 4: 034001. (EI)
[19] 丁颖慧, 祁国成*等.结构储电碳纤维复合材料研究进展,复合材料学报,2021, 38(1): 16-24. (EI)
[20] Qi G, Rabczuk T. Ab initio investigation of lithium adsorption on short carbon nanotubes considering effects of the tube length. Carbon. 2019;155:727-733. (TOP)
[21] Greenhalgh E, Shaffer M, Kucernak A, Anthony D, Senokos E, Nguyen S, Pernice F, Zhang G, Qi G, et al. Future challenges and industrial adoption strategies for structural supercapacitors. 22nd International Conference on Composite Materials (ICCM-22), 2019, Melbourne, Australia. (EI)
[22] Qi G, et al. Estimation of interfacial toughness using bilayer fiber bundle compact tension (BFBCT) specimens. Composites Science and Technology. 2018;161:1-7. (TOP)
[23] Qi G, et al. Assessment of F-III and F-12 aramid fiber/epoxy interfacial adhesions based on fiber bundle specimens. Composites Part A: Applied Science and Manufacturing.2018;112:549-557. (TOP)
[24] Qi G, et al. Estimation of aramid fiber/epoxy interfacial properties by fiber bundle tests and multiscale modelling considering the fiber skin/core structure. Composite Structures.2017;167:1-10. (1区)
[25] Qi G, et al. Estimation of carbon fiber/epoxy interfacial normal strength and interfacial shear strength by fiber bundle tests. 21st International Conference on Composite Materials (ICCM-21), 2017, Xi’an, China. (EI)
[26] Yu Y, Zhang B, Feng M, Qi G, et al. Multifunctional structural lithium ion batteries based on carbon fiber reinforced plastic composites. Composites Science and Technology. 2017;147:62-70. (TOP)
[27] Qi G*, et al. A new approach to assessing carbon fiber/epoxy interfacial shear strength by tensile test of 45° fiber bundle composites: Experiment, modelling and applicability. Composite Science and Technology. 2016;129:214–221. (TOP)
[28] Qi G*, et al. Research on carbon fiber/epoxy interfacial bonding characterization of transverse fiber bundle composites fabricated by different preparation processes: Effect of fiber volume fraction. Polymer Testing. 2016;52:150-156. (Q1区)
[29] Yu Y, Zhang B, Wang Y, Qi G, et al. Co-continuous structural electrolytes based on ionic liquid, epoxy resin and organoclay: Effects of organoclay content. Materials & Design. 2016; 104:126-133. (2区)
[30] Qi G, et al. Assessment of interfacial adhesion between carbon fiber and epoxy by transverse fiber bundle and single fiber fragmentation tests. 20th International Conference on Composite Materials (ICCM-20), 2015, Copenhagen, Denmark. (EI)
[31] Yu Y, Zhang B, Tang Z, Qi G. Stress transfer analysis of unidirectional composites with randomly distributed fibers using finite element method. Composites Part B: Engineering. 2015;69:278-285. (1区TOP)
[32] 潘月秀, 于雅琳, 朱世鹏, 祁国成*等.基于三维载荷传递机制的单向复合材料纵向拉伸的多尺度模型. 玻璃钢/复合材料, 2015, (06): 5-11. (中文核心)
[33] Qi Guocheng*, Du Shanyi, et al. Evaluation of carbon fiber/epoxy interfacial strength in transverse fiber bundle composite: Experiment and multiscale failure modelling. Composites Science and Technology. 2014;105:1-8. (TOP)
[34] Qi G, et al. Progressive damage and failure modelling of transverse fiber bundle composite (TFBC) using multiscale analytical method. 9th Asian-Australasian Conference on Composite Materials (ACCM-9), 2014, Suzhou, China (会议)
[35] Yu Yalin, Ye Jinrui*, Wang Yang, Zhang Boming, Qi Guocheng. A mesoscale ultrasonic attenuation finite element model of composites with random-distributed voids. Composites Science and Technology. 2013;89:44-51. (TOP)
[36] 祁国成, 等. T800级碳纤维/环氧预浸料固化过程研究.第十四届中国科协年会第11分会场:低成本、高性能复合材料发展论坛论文集,2012:6. (会议)
专著/译著
专利
软件著作权
获奖与荣誉
DAAD fellow、北京市青年人才托举工程
社会兼职
《应用力学学报》青年编委、《复合材料学报》青年编委、《宇航材料工艺》青年编委
以上就是小编为大家分享的:“北京交通大学硕士研究生导师信息:祁国成”,更多研究生导师信息,欢迎继续浏览新东方在线研究生导师频道。
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