Sustainable Grease Lubrication Induced by Graphene Oxide and LiFePO4

材料科学 石墨烯 润滑 润滑油 氧化物 化学工程 冶金 纳米技术 复合材料 工程类
作者
Darío Zambrano,Jessica Gutiérrez González,Cristian Castillo,Javier Marqués Henríquez,Nicole Parra‐Muñoz,Julio I. Urzúa,Andreas Rosenkranz
出处
期刊:Advanced Engineering Materials [Wiley]
标识
DOI:10.1002/adem.202401762
摘要

This study investigates the possibility of modifying lubricating greases by 2D graphene oxide (GO) and lithium iron phosphate (LiFePO 4 ) to enhance their tribological performance. GO's layered structure plays a crucial role in reducing friction by facilitating easy sliding between rubbing surfaces, making it an effective solid lubricant. The impact of these additives on friction reduction, wear resistance, and the tribolayer formation ability is evaluated by ball‐on‐disc tribometry with an emphasis on durability and sustainability. Comparative results reveal that unmodified greases exhibit a high susceptibility to wear, including oxide formation and severe plastic deformation. In contrast, greases with GO show a notable reduction in friction, while the addition of LiFePO 4 contributes to the formation of a continuous protective layer that substantially reduces abrasive wear. The combination of GO and LiFePO 4 results in a homogeneous, durable tribofilm that effectively protects surfaces against severe wear providing long‐term friction stability. Although lab‐scale LiFePO 4 is used, the findings suggest a great potential for extending the useful life of recycled LiFePO 4 from lithium‐ion batteries, similar to commercial LiFePO 4 thus confirming significant improvements in the grease performance but also highlighting the potential to advance toward more sustainable solutions in industrial applications and electric vehicles.
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