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王贝贝

姓名:王贝贝

职称:讲师

电子邮件:202107002@xaau.edu.cn

研究方向:碳纳米材料原位生长、高性能纤维/树脂界面性能、碳纤维增强聚合物基复合材料,碳基吸波/屏蔽材料


王贝贝,女,博士研究生,讲师,中国复合材料学会-有机纤维复合材料分会委员。主持陕西省科技厅各类计划的一般项目1项,陕西省教育厅自然科学专项1项,西北工业大学博士论文创新基金项目1项;参与国家重点研发项目1项、国家自然科学基金委员会国际(地区)合作与交流项目1项。在CarbonTribology InternationalApplied Physics LettersJournal of Alloys and CompoundDiamond & Related MaterialsMaterials Letters等国际著名学术刊物发表高水平SCI论文12篇,授权国家发明专利2件。指导学生参加全国失效分析大赛获国家级二等奖、热处理大赛获西北赛区银奖。

一、研究领域或方向

碳纳米材料原位生长、高性能纤维/树脂界面性能、碳纤维增强聚合物基复合材料,碳基吸波/屏蔽材料

二、教育履历

200909-201307月 陕西科技大学(学士)

201309-201512月 陕西科技大学(硕士)

201910-202010Technical University Darmstadt德国CSC博士联合培养)

201609-202106月 西北工业大学(博士)

三、工作经历

202107-至今 西安航空学院(讲师)

四、代表性学术成果

(一)研究项目

1. 陕西省教育厅专项科研计划项目-一般项目GNPs/碳纤维可控构筑及多尺度增强树脂基摩擦材料摩擦磨损机理研究2022.01-2024.09.

2. 陕西省自然科学基础研究计划-青年项目MWCNT-GNPs/碳纤维多尺度构筑及其增强树脂基摩擦材料摩擦学机理研究2023.01-2025.03.

(二)学术论文

1. Wang Beibei, Jin Yuzhou, Chen Jiajun, Yu Fangli. The bird-nest-like carbon nanotubes/boron nitride hybrid materials for efficient electromagnetic microwave absorption performance. Diamond & Related Materials. 2025, 152: 111983.

2. Wang Beibei, Liu Yue, Xie Hui, Yu Fangli. B4C@CNT nanowires decorated on carbon fiber fabric surface with enhanced microwave absorption performance. Journal of Materials Science Materials in Electronics. 2023, 34: 237.

3. Wang Beibei, Fu Qiangang, Liu Yue, Lu Zhenyuan, Lu Yaru, Cao Sheng. Multi-walled carbon nanotubes/carbon fiber fabric multiscale hybrid materials for improving the mechanical and tribological properties of phenolic resin composites. Journal of Applied Polymer Science. 2022, 139: 53229.

4. Wang Beibei, Fu Qiangang, Sun Le, Lu Yuanyuan, Liu Yue. Improving the tribological performance of carbon fiber reinforced resin composite by grafting MWCNT and GNPs on fiber surface. Materials Letters. 2022, 306: 130953.

5. Wang Beibei, Fu Qiangang, Li Hejun, Qi Lehua, Liu Yue. Mechanisms of simultaneously enhanced mechanical and tribological properties of carbon fabrics/phenolic resin composites reinforced with graphene nanoplatelets. Journal of Alloys and Compounds. 2021, 854:157176.

6. Wang Beibei, Fu Qiangang, Li Hejun, Qi Lehua, Lu Yuanyuan. Synergistic effect of surface modification of carbon fabrics and multiwall carbon nanotube incorporation for improving tribological properties of carbon fabrics/resin composites. Polymer composites. 2020, 41:102-111.

7. Wang Beibei, Fu Qiangang, Song Qiang, Yu Zhaoju, Ralf Riedel. In-situ growth of B4C nanowires on activated carbon felt to improve microwave absorption performance. Applied Physics Letters. 2020, 116: 203101.

8. Wang Beibei, Fu Qiangang, Li Hejun, Qi Lehua, Song Qiang, Fu Yewei. In-situ growth of graphene on carbon fabrics with enhanced mechanical and thermal properties for tribological applications of carbon fabrics/phenolic composites. Tribology Transactions. 2019, 62: 5(850-858).

9. Wang Beibei, Fu Qiangang, Liu Yue, Yin Tao, Fu Yewei. The synergy effect in tribological performance of paper-based composites by MWCNT and GNPs. Tribology International. 2018, 123: 200-208.

10. Wang Beibei, Fu Qiangang, Li Hejun, Qi Lehua, Fu Yewei. Grafting CNTs on carbon fabrics with enhanced mechanical and thermal properties for tribological applications of carbon fabrics/phenolic composites. Carbon. 2018, 139: 45-51.

(三)授权专利

1. 王贝贝,卢振远,鲁媛媛,赵志刚,卢亚汝,碳纤维表面接枝MWCNT多尺度增强树脂基摩擦材料的制备方法,中国,CN202111613621.3

2. 王贝贝,孟志新,鲁媛媛,孙乐,B4C@CNT纳米线复合材料的制备方法,中国,CN202111241930.2

(四)其他成果

1. 西北工业大学优秀博士论文,2023年。

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