Effectiveness of carbon nanomaterials as lubricant additives: Recent review

IF 8.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Anthony Chukwunonso Opia , Mohd Fadzli Bin Abdollah , Samion Syahrullail , Hilmi Amiruddin , Chinedu Stanley Mamah , Ibham Veza
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Abstract

Wear and friction are unavoidable in mechanical motion, leading to energy loss, low productivity, damage to machine parts, and high operating costs; therefore, the use of appropriate lubricants is essential. To solve these unwanted conditions and protect the environment, lubricants containing nano-additives could effectively perform the operations. As a result, it is imperative to understand the effectiveness trajectory of various kinds of carbon nanomaterials towards enhancing lubricating performance. Therefore, this review paper compiles the advancement and contributions of carbon nanomaterials to tribology in recent years. The development of different carbon nanotubes and nanoparticles was investigated, and studies conducted between 2010 and 2024 showed notable improvements over time. The review identified the potential influencing factors that impact the tribological responsiveness of carbon nanomaterials, including the nano-additives' dispersion in lubricants, effects of their microstructure and particle sizes. This paper provides a summary of the accomplishments of graphene, fullerene, carbon nanotubes, carbon nanodiamonds, carbon nano-onions and carbon spheres in their application as lubricant additives. A thorough analysis of graphene and carbon nanotubes on their exceptional lubricant additives was conducted. According to reports in the literature, graphene is the most well-known and extensively utilized carbon nanomaterial for exceptional tribological qualities. Significant decreases in wear and friction are facilitated by its capacity to smooth surfaces, create protective layers, and act as a third-body lubricant. To fully utilize graphene's potential in a variety of tribological applications, further research into functionalization and dispersion processes is essential thus providing insight into their synthesis and design.
碳纳米材料作为润滑油添加剂的有效性研究进展
机械运动中不可避免的磨损和摩擦,导致能量损失,生产率低,机器零件损坏,运行成本高;因此,使用合适的润滑剂是必不可少的。为了解决这些不利条件并保护环境,含有纳米添加剂的润滑剂可以有效地执行操作。因此,了解各种碳纳米材料在提高润滑性能方面的作用轨迹是十分必要的。因此,本文综述了近年来碳纳米材料在摩擦学领域的研究进展和贡献。研究了不同碳纳米管和纳米颗粒的发展情况,2010年至2024年间的研究表明,随着时间的推移,碳纳米管和纳米颗粒的发展有了显著的进步。综述了影响碳纳米材料摩擦学响应性的潜在因素,包括纳米添加剂在润滑油中的分散、微观结构和粒径的影响。本文综述了石墨烯、富勒烯、碳纳米管、碳纳米金刚石、碳纳米洋葱和碳球在润滑油添加剂中的应用进展。对石墨烯和碳纳米管的特殊润滑油添加剂进行了深入的分析。根据文献报道,石墨烯是最知名和广泛使用的碳纳米材料,具有卓越的摩擦学特性。由于其光滑表面、形成保护层和充当第三体润滑剂的能力,大大减少了磨损和摩擦。为了充分利用石墨烯在各种摩擦学应用中的潜力,对功能化和分散过程的进一步研究至关重要,从而为其合成和设计提供见解。
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来源期刊
CiteScore
11.30
自引率
3.90%
发文量
130
审稿时长
31 days
期刊介绍: Materials Today Nano is a multidisciplinary journal dedicated to nanoscience and nanotechnology. The journal aims to showcase the latest advances in nanoscience and provide a platform for discussing new concepts and applications. With rigorous peer review, rapid decisions, and high visibility, Materials Today Nano offers authors the opportunity to publish comprehensive articles, short communications, and reviews on a wide range of topics in nanoscience. The editors welcome comprehensive articles, short communications and reviews on topics including but not limited to: Nanoscale synthesis and assembly Nanoscale characterization Nanoscale fabrication Nanoelectronics and molecular electronics Nanomedicine Nanomechanics Nanosensors Nanophotonics Nanocomposites
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