鄒冀(武漢理工大學研究員)

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鄒冀,遼寧蓋州人,武漢理工大學材料複合新技術國家重點實驗室研究員、博士生導師,國家級高層次青年人才,國家自然科學基金優秀青年科學基金獲得者(2021-2023),湖北省海外高層次創新人才(青年項目)。

2006年獲天津大學工學與管理學雙學士學位,2011年獲中國科學院上海矽酸鹽研究所工學博士學位,後於比利時魯汶大學、瑞典斯德哥爾摩大學及英國伯明罕大學從事博士後研究。2019年入職武漢理工大學,研究方向為硼化物結構陶瓷與複合材料,主持國家自然科學基金優青項目、面上項目等科研課題。在《Acta Materialia》等期刊發表論文70餘篇,總引用超1700次,擔任《Journal of the American Ceramic Society》等期刊副主編,多次主持國際陶瓷學術會議分會。現為材料科學與工程專業博士生導師,研究方向涵蓋材料物理與化學、材料學等領域。

基本介紹

  • 中文名:鄒冀
  • 職業:教師
個人簡介,研究領域,科研項目,近期代表論文,

個人簡介

鄒冀,遼寧蓋州人,武漢理工大學材料複合新技術國家重點實驗室研究員,博士生導師。國家自然科學基金優秀青年科學基金獲得者(2021-2023),湖北省海外高層次創新人才(青年項目)。2006年畢業於天津大學,獲得工學學士和管理學雙學士,2011年畢業於中國科學院上海矽酸鹽研究所,獲得工學博士學位。此後8年中,他先後在比利時魯汶大學,瑞典斯德哥爾摩大學和英國伯明罕大學做博士後和項目研究員。2019入職武漢理工大學任研究員,博士生導師。從攻讀博士學位至今十餘年間,鄒冀博士一直從事硼化物結構陶瓷和複合材料的基礎研究和工程套用。擔任美國陶瓷學會旗下期刊J Am Ceram Soc(2019-)和Int J Appl Ceram Technol(2021-)的Associate editor, 也是SCI期刊Int J Miner Metall Mater陶瓷方向的subject editor(2019-), 並擔任國內外多個傳統材料領域高水平期刊的編委和青年編委。他在結構陶瓷領域頂級期刊如Int Mater Rev, Acta Mater, Scr Mater, JMST, J Euro Ceram Soc 和 J Am Ceram Soc等發表論文70餘篇,被引用超過1700次。在中國矽酸鹽學會,美國陶瓷學會和歐洲陶瓷學會等組織的多個先進陶瓷國際主流學術會議擔任超高溫/硼化物陶瓷會場的秩序委員會委員,分會場主席和競賽評審,活躍在超高溫陶瓷研究的國際前沿。

研究領域

1. 面向極端環境套用的超高溫陶瓷與陶瓷基複合材料
2. 硼化物結構功能一體化材料
3. 增材製造

科研項目

1. 國家自然科學基金優秀青年科學基金項目,面向極端環境套用的ZrB2陶瓷與複合材料,項目負責人, 2021-2023
2. 國家自然科學基金面上項目,含氮化硼復相陶瓷反應燒結新途徑的構建與性能提升,項目負責人,2020-2023
3. 武漢理工大學海外優秀青年人才啟動經費,項目負責人,2020-2024
4. 中央高校基本科研專項資金-武漢理工大學自主創新項目,項目負責人,2020-2021
5. 其他國家級科研項目,項目負責人,2019-2021
6. 科技部國際合作重大項目,項目參與人,已結題
7. 國家自然科學基金重大研究計畫,項目參與人,已結題

近期代表論文

1. Ji Zou*, Jing-Jing Liu, Guo-Jun Zhang, Zheng-Yi Fu, Tuning the combustion process during reactive sintering of high-performance ceramics by employing solid solutions as reactants, Journal of the European Ceramic Society, 2021,41, 101-113.
2. J. Binner*, M. Porter, B. Baker, Ji Zou*, V. Venkatachalam, V. Rubio Diaz, A. D'Angio, P. Ramanujam, T. Zhang &T. S. R. C. Murthy*, Selection, Processing, Properties and Applications of Ultra-High Temperature Ceramic Matrix Composites, UHTCMCs–A Review. International Materials Reviews, 2020, 65, 389-444.
3. Ji Zou*, Guo-Jun Zhang, Zheng-Yi Fu, In-situ ZrB2- hBN ceramics with high strength and low elasticity, Journal of Materials Science & Technology, 2020, 48, 186-193.
4. Ji Zou*, Hai-Bin Ma, Jing-Jing Liu, Wei-Min Wang, Guo-Jun Zhang, Zheng-Yi Fu, Nanoceramic composites with duplex microstructure break the strength-toughness tradeoff, Journal of Materials Science & Technology, 2020, 58,1-9.
5. Haiyue Xu#, Ji Zou#, Weimin Wang, Hao Wang, Wei Ji*, Zhengyi Fu*, Densification mechanism and microstructure characteristics of nano- and micro- crystalline alumina by high-pressure and low temperature sintering, Journal of the European Ceramic Society, 2021, 41, 635-645.
6. Ji Zou*, Y Gaber, S Li, G Voulazeris, L Vazquez, M-Y Yao, Y-J Wang, M Holynski, K Bongs, and MM Attallaha*, Controlling the grain orientation during Laser Powder Bed Fusion to tailor the magnetic characteristics in a Ni-Fe based soft magnet, Acta Materialia, 2018, 158, 230-238.
7. Ji Zou*, V. R. Diaz and J. Binner, Thermoablative Resistance of ZrB2-SiC-WC Ceramics at 2400oC. Acta Materialia, 2017, 133, 293-302.
8. Ji Zou*, Liu J, Zhang GJ*, Huang SG, J. Vleugels*, O. Van der Biest and James Shen Zhijian. Hexagonal BN Encapsulated ZrB2 Particle by Nitride Boronizing, Acta Materialia, 2014, 72,167-177.
9. Haibin Ma#, Ji Zou#,*, Jing-Ting Zhu, Ping Lu, Fang-Fang Xu and Guo-Jun Zhang*. Thermal and electrical transport in ZrB2-SiC-WC ceramics up to 1800oC. Acta Materialia, 2017, 129, 159-169.
10. Ji Zou*, Liu, J., Zhao, J., Zhang, G.J., Huang, S., Qian, B., Vleugels, J., Van der Biest, O., J. Z. Shen, A top-down approach to densify ZrB2-SiC-BN composites with deeper homogeneity and improved reliability, Chemical Engineering Journal, 2014, 249, 93-101.
11. Ji Zou*, Hai-Bin Ma, Lei Chen, Yu-Jin Wang, Guo-Jun Zhang, Key issues on the reactive sintering of ZrB2 ceramics from elementary raw materials, Scripta Materialia, 2019, 164, 105-109.
12. Ji Zou*, S Grasso, LF Liu, HB Ma, M Reece, J Binner, Flash spark plasma sintering of HfB2 ceramics without pre-sintering, Scripta Materialia, 2018, 156, 115-119.
13. Ji Zou*, Haibin Ma*, Andrea D'Angiò and Guo-Jun Zhang*, Tungsten carbide: A versatile additive to get trace alkaline-earth oxide impurities out of ZrB2 based ceramics, Scripta Materialia, 2018, 147, 40-44.
14. Hai-Bin Ma, Ji Zou*, Jing-Ting Zhu, Lei-Feng Liu and Guo-Jun Zhang*, Segregation of tungsten atoms at ZrB2 grain boundaries in strong ZrB2-SiC-WC ceramics, Scripta Materialia, 2018, 157, 76-80.
15. Jun-Feng Gu, Ji Zou*, P Ma, W Hao, J Zhang, W Wang, Fu Zhengyi*, Reactive sintering of B4C-TaB2 ceramics via carbide boronizing: Reaction process, microstructure and mechanical properties, Journal of Materials Science & Technology, 2019, 35, 2840-2850.
16. Jun-Feng Gu, Ji Zou*, Sun Shi-Kuan, Wang Hao, Yu Shu-Yang, Wang Weimin, Zhang Jinyong, Fu Zhengyi*, Dense and pure high-entropy metal diboride ceramics sintered from self-synthesized powders via boro/carbothermal reduction approach, Science China Materials, 2019, 62, 1898-1909.
17. Andrea D'Angiò, Ji Zou*, Jon Binner, Haibin Ma, Greg E Hilmas, William G Fahrenholtz, Mechanical properties and grain orientation evolution of zirconium diboride-zirconium carbide ceramics. J. Euro. Ceram. Soc., 2018, 38, 391-402.
18. Ji Zou*, Guo-Jun Zhang, Zhi-Jian Shen and Jon Binner., Ultra-low temperature reactive spark plasma sintering of ZrB2-hBN ceramics, J .Euro. Ceram. Soc., 2016, 36, 3637-3645.
19. Haibin Ma, Ji Zou*, Ping Lu, Jing-Ting Zhu, Zheng-Qian Fu, Fang-Fang Xu*, Guo-Jun Zhang*, Oxygen contamination on the surface of ZrB2 powders and its removal. Scripta Materialia, 2017, 127,160-64.
20. J. Zou*, Zhong, Y. Zhang, J. Z. Ekelund, and Z. J. Shen*, Separating macrostresses from microstresses in  Al2O3-15 vol% SiC particulate reinforced composites,  Scripta Materialia, 2015, 109, 84-88.

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