| 赵子瑞 讲师 学位:工学博士 职称:讲师 毕业院校:北京理工大学 办公地点:西三楼502室 联系方式:zhaozirui@zzuli.edu.cn |
个人简介
主要从事摩擦电自驱动传感器设计、油(脂)润滑摩擦纳米发电机接触起电机理等研究。近年来,开展了系统的面向智能轴承的自驱动摩擦电传感器设计以及高性能脂润滑摩擦纳米发电机优化研究,相关研究成果已成果发表于Nano Energy(IF:17.6)、Advanced Functional Materials(IF:19.0)、Tribology International(IF:6.2)等国际知名期刊。 |
研究方向
摩擦电自驱动传感器 摩擦学及接触起电 |
教育背景
2019/09-2023/09,北京理工大学,机械工程,博士 2016/09–2019/06,重庆大学,机械工程,硕士 2012/09–2016/06,河南科技大学,机械设计制造及其自动化,学士 |
开设课程
现代仪器设计等 |
科研项目
[1] 国家自然科学基金重点项目,51735001,纳米发电机多级织构界面接触/摩擦起电机理与调控研究,259万元,2018/01-2022/12,结题,参与 [2] 国家自然科学基金面上项目,51875057,高速人字行星齿轮系统多场耦合激励机理及振动噪声优化研究,64万元,2019/01-2022/12,结题,参与 |
论文专著与专利
[1] Zhao Zirui, Wang Xiaoli, Hu Yanqiang, et al. Grease-lubricated triboelectric instantaneous angular speed sensor integrated with signal processing circuit for bearing fault diagnosis[J]. Nano Energy, 2023, 117: 108871. (SCI一区Top,影响因子17.6) [2] Zhao Zirui, Wang Xiaoli, Hu Yanqiang, et al. Electromechanical modeling for triboelectric nanogenerators considering the distribution of polymer transfer film[J]. Nano Energy, 2022, 93: 106895. (SCI一区Top,影响因子17.6) [3] Zhao Zirui, Wang Xiaoli, Hu Yanqiang, et al. Investigation on the tribological properties and electrification performance of grease-lubricated triboelectric nanogenerators. [J]. Tribology International, 2024(SCI一区Top,影响因子6.2) [4] 林腾蛟, 赵子瑞, 江飞洋, 等. 考虑温度效应的斜齿轮时变啮合刚度解析算法[J]. 湖南大学学报(自然科学版), 2020, 47(2): 6-13. (EI) [5] Zhao Zirui, Lin Tengjiao, Wei Jing, et al. Analysis of inherent characteristics of torsional vibration and its influence factors of the double planetary transmission system[J]. Communications in Computer and Information Science, 2018, 923: 474-483. (EI) [6] Li Lizhou, Wang Xiaoli, Hu Yanqiang, Li Zhihao, Zhao Zirui, Zheng Gao. The tribo-piezoelectric microscopic coupling mechanism of ferroelectric polymers and the synchronous online monitoring of load distribution/roller speed for intelligent bearings [J]. Nano Energy, 2023, 115: 108724. (SCI一区Top,影响因子17.6) [7] Li Lizhou, Wang Xiaoli, Hu Yanqiang, Li Zhihao, Wang Chenfei, Zhao Zirui. Understanding the ferroelectric polymer–metal contact electrification for triboelectric nanogenerator from molecular and electronic structure[J]. Advanced Functional Materials, 2022, 32(10): 2109949. (SCI一区Top,影响因子19.0) |