Chen Hao, Zhang Lin, Li Mengyu, Xie Guoxin
State Key Laboratory of Tribology, Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China.
Materials (Basel). 2020 Oct 15;13(20):4590. doi: 10.3390/ma13204590.
Owing to the diverse composition, adjustable performance, and synergistic effect among components, core-shell micro/nanoparticles have been widely applied in the field of tribology in recent years. The strong combination with the matrix and the good dispersion of reinforcing fillers in the composites could be achieved through the design of core-shell structural particles based on the reinforcing fillers. In addition, the performance of chemical mechanical polishing could be improved by optimizing the shell material coated on the abrasive surface. The physical and chemical state of the core-shell micro/nanoparticles played important effects on the friction and wear properties of materials. In this paper, the synthesis methods, the tribological applications (acted as solid/liquid lubricant additive, chemical mechanical polishing abrasives and basic units of lubricant matrix), and the functionary mechanisms of core-shell micro/nanoparticles were systematically reviewed, and the future development of core-shell micro/nanoparticles in tribology was also prospected.
由于其组成多样、性能可调以及各组分间的协同效应,核壳型微/纳米颗粒近年来在摩擦学领域得到了广泛应用。基于增强填料设计核壳结构颗粒,可实现其与基体的牢固结合以及增强填料在复合材料中的良好分散。此外,通过优化涂覆在磨料表面的壳层材料,可提高化学机械抛光性能。核壳型微/纳米颗粒的物理和化学状态对材料的摩擦磨损性能有着重要影响。本文系统综述了核壳型微/纳米颗粒的合成方法、摩擦学应用(作为固/液润滑添加剂、化学机械抛光磨料和润滑基体的基本单元)及其作用机制,并对核壳型微/纳米颗粒在摩擦学领域的未来发展进行了展望。