Preparation of near superlubric polysiloxane/Ti3C2Tx nanocomposite coating by incorporating polyalphaolefin oil microcapsules

IF 6.1 1区 工程技术 Q1 ENGINEERING, MECHANICAL Tribology International Pub Date : 2025-01-24 DOI:10.1016/j.triboint.2025.110555
Qiang Ma , Xin Xu , Meilin Lu , Tao He , Xiaolin Li , Ke Hua , Haifeng Wang
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Abstract

Superlubricity, characterized by nearly vanished friction, has the great potential to significantly enhance the lubrication capabilities of self-lubricating coatings and their operational lifespan. In this work, commercial polyalphaolefin oil has been encapsulated within polystyrene shell for microcapsules synthesize, which have been further introduced into a specially designed “soft” and “hard” polysiloxane/Ti3C2Tx nanocomposite coating. The tribological test results show that the prepared composite coating displays a remarkable synergistic lubrication effect, achieving nearly superlow friction of 0.016 and an ultralow wear rate of 1.9 × 10−8 mm3/N·m simultaneously. The comprehensive mechanism analysis indicates that the extraordinary superlubrication effect is derived from the desirable mechanical properties of the polysiloxane/Ti3C2Tx nanocomposite coating and the favorable liquid lubrication effect of embedded oil microcapsules, wherein the former could enhance the conformity of surface morphology when the mating surfaces are in contact, thereby facilitating the formation of numerous microchannels; in the meanwhile, the latter could be friction-induced ruptured and then release oil molecules at the friction interface, adsorbing to the coating surface and forming an effective boundary-lubricating oil film. As a result, a remarkable synergistic lubrication effect could be created to significantly enhance the lubrication effect. It could be anticipated that this finding could expedite a broader utilization of self-lubricating coatings and superlubricity technology in the practical industrial sectors.
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聚烯烃油微胶囊制备近超润滑聚硅氧烷/Ti3C2Tx纳米复合涂层
超润滑以摩擦几乎消失为特征,具有显著提高自润滑涂层的润滑能力和使用寿命的巨大潜力。在本研究中,将商业聚苯乙烯油封装在聚苯乙烯外壳内,用于微胶囊的合成,并将微胶囊进一步引入专门设计的“软”和“硬”聚硅氧烷/Ti3C2Tx纳米复合涂层中。摩擦学试验结果表明,所制备的复合涂层具有显著的协同润滑效果,同时实现了接近0.016的超低摩擦和1.9 × 10−8 mm3/N·m的超低磨损率。综合机理分析表明,聚硅氧烷/Ti3C2Tx纳米复合涂层具有良好的力学性能和包埋油微胶囊具有良好的液体润滑效果,其中聚硅氧烷/Ti3C2Tx纳米复合涂层能够增强配合表面接触时表面形貌的一致性,从而促进微通道的形成;同时,涂层在摩擦界面处发生破裂,释放出油分子,吸附在涂层表面,形成有效的边界润滑油膜。因此,可以产生显著的协同润滑效应,显著提高润滑效果。可以预见,这一发现将加速自润滑涂层和超润滑技术在实际工业部门的广泛应用。
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来源期刊
Tribology International
Tribology International 工程技术-工程:机械
CiteScore
10.10
自引率
16.10%
发文量
627
审稿时长
35 days
期刊介绍: Tribology is the science of rubbing surfaces and contributes to every facet of our everyday life, from live cell friction to engine lubrication and seismology. As such tribology is truly multidisciplinary and this extraordinary breadth of scientific interest is reflected in the scope of Tribology International. Tribology International seeks to publish original research papers of the highest scientific quality to provide an archival resource for scientists from all backgrounds. Written contributions are invited reporting experimental and modelling studies both in established areas of tribology and emerging fields. Scientific topics include the physics or chemistry of tribo-surfaces, bio-tribology, surface engineering and materials, contact mechanics, nano-tribology, lubricants and hydrodynamic lubrication.
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