科研项目: | 1. 国家自然科学基金面上项目,52175181,自润滑织物衬垫材料智能化设计及其电激励自修复调控机制,2022/1-2025/12,58万,在研,主持。 [2] 2. 天津市自然科学基金面上项目,22JCYBJC01570,齿轮传动副润滑材料体系优化设计及其超低摩擦行为,2022/10-2025/9,10万,在研,主持。 3.中国石油集团石油石化污染物控制与处理国家重点实验室开放课题, PPC2020011, 低压/低气量甲烷富集MOFs材料的设计与应用技术, 2022-05至2023-01, 15万, 结题, 主持。 4. 天津市教委科研计划项目, 2021KJ031, 柔性织物基纳米发电机设计及电控摩擦学行为研究, 2022-01至2023-2, 6万, 结题, 主持。 5. 天津市自然科学基金青年项目,19JCQNJC043000,微存储复合润滑层体系构建及电调控智能自修复行为,2019/4-2022/3,6万,结题,主持。 6. 国家自然科学基金青年项目,51705277,金属表面聚芳烃润滑层的构筑及磨损自修复机制,2018/1-2020/12,24万,结题,主持。 7. 清华大学摩擦学国家重点实验室开放基金,SKLTKF18B04,新型渣油基聚芳烃自修复润滑层研究,2019/1-2020/12,3万,结题,主持。 8. 北京大学深圳研究生院广东省纳米微米材料研究重点实验室开放课题,HX190118, 微存储复合润滑层体系构建及电刺激自修行为,2019/3-2020/2,5万,结题,主持。 9. 中国博士后科学基金第11批特别资助,2018T110094, 电刺激响应型复合润滑膜体系构建及其磨损自修复机制,2018/03-2018/12,15万元,结题,主持。 10. 中国博士后科学基金第60批面上基金二等资助,2016M601011,金属表面芳烃原位聚合及其自修复保护效应调控,2016/10-2018/05,5万元,结题,主持。 |
近年代表性 论文: | [1] Shang Liyuan, Zhang Guoliang*, Liu Fucong, Han Lin, Liang Erguo, Qi Houjun. Electric-tuned wear resistance of NaFe-PBA composite lubricant. Tribology International, 2026, 216:111062. [2] Li Bingchun, Zhang Guoliang*, Zheng Wenxuan, Yang Duo, Li Yang. Intelligent Current-Controlled Behavior of Intercalated MXene@ Triethanolamine Borate Nanocomposite as Lubricant Additives. Tribology Letters, 2025, 73: 118. [3] Dong Junting, Zhang Guoling*, Liu Fucong, Qi Houjun, Xing Kan. The Study of the Inhibitive Behavior of COF-5 Lubricant Additives on Wear and Corrosion of the Tin Bronze Friction Pair during the Current-Carrying Process. Langmuir, 2025, 41(18): 11648-11660. [4] Zhang Guoliang, Dong Junting, Liu Chunying, Yang Duo, Li Yang. Advanced tribological solutions for electrical contacts: graphene nanosheet-silver nanosphere hybrid lubricants. Journal of Materials Science, 2025, 60(32), 14005-14023. [5] Liu Chunying, Zhang Guoliang*, Yin Yanchao, Li Yang. Fabrication of graphene sheets coated with silver nanorods nanocomposite lubricant and their tribological behavior under current carrying. Journal of Materials Science, 2025, 60(8): 3735-3750. [6] Hou Feifan, Zhang Guoliang*, Lu Shichao, Qi Jian, Li Yang. Design of Intercalated Graphene/CNTs nanocomposite lubricants with load-bearing and their intelligent electric current-controlled friction performance. Diamond and Related Materials, 2025, 151: 111832. [7] Zheng Wenxuan, Zhang Guoliang*, Qi Jian, Lu Shichao, Li Yang. Effect of lubricant functional groups on tribological properties of epoxy/graphene composites. Journal of Applied Polymer Science, 2024, 141(36): e55923. [8] Wang Yuyun, Zhang Guoliang*, Yang Duo, Li Yang, Yin Wei, Xu Jingshui. Composition Design of Ni-Nano-Cu-BTC@Ag Coatings with Low Friction and Their Intelligent Electrical Control Behavior, Langmuir, 2024, 40(8): 4306-4313.(SCI; 中科院2区; IF: 3.9, 封面文章) [9] Wang Yuyun, Zhang Guoliang*, Yang Duo, Li Yang, Yin Wei, Weng Yibin. Electronic-Control Friction Behavior of Porous Metal–Organic Framework@Ag Nanocrystals as Self-Repairing Lubricant Additive, ACS Applied Materials & Interfaces, 2023, 15: 35732-35740.(SCI, 中科院2区, IF: 9.5) [10] Yin Yanchao, Zhang Guoliang*, Xu Xianmang, Zhao Peiyu, Ma Liran*. Intermolecular hydrogen bond ruptured by graphite with different lamellar number. Royal Society Open Science. 2021, 8(9): 210565. (SCI, 中科院3区, IF: 3.5) [11] Wang Wei, Zhang Guoliang*, Xie Guoxin*. Ultralow concentration of graphene oxide nanosheets as oil-based lubricant additives, Applied Surface Science, 2019, 498: 143683. (SCI, 中科院2区, IF: 6.7) [12] Zhang Guoliang, Lu Shichao, Ke Yangchuan*. Effects of Silica Nanoparticles on Tribology Performance of Poly(Epoxy resin-Bismaleimide)-based Nanocomposites. Polymer Engineering & Science, 2019, 59(2): 274-283. (SCI, 中科院3区, IF: 3.2) [13] Zhang Guoliang, Wang Jie, Xie Guoxin*, Si Lina, Guo Dan, Wen Shizhu. Controlled friction behaviors of porous copper/graphite storing ionic liquid through electrical stimulation. Advanced Engineering Materials, 2018, 20(5): 1700866. (SCI; 中科院3区; IF: 3.6) [14] Zhang Guoliang, Xie Guoxin*, Si Lina, Wen Shizhu, Guo Dan. Ultra-low friction self-lubricating nanocomposites with mesoporous metal-organic frameworks as smart nanocontainer for lubricants. ACS Applied Materials & Interfaces, 2017, 9, 38146–38152. (SCI, 中科院2区, IF: 9.5) [15] Zhang Guoliang, Ke Yangchuan*, Song Youzhi, Lu Shichao, Wang Zhaobin. Preparing copolyester–titanium dioxide nanocomposites with low melting point via in situ hydrolysis, catalysis and esterification process. High Performance Polymers, 2016, 28: 445-452.(SCI, 中科院4区, IF: 2.1) |