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使用功能化纳米金刚石作为添加剂材料提高润滑油的摩擦学性能。

Improving tribological performance of lubricating oil using functionalized nanodiamonds as an additive material.

作者信息

Bawa'neh Hasan, Albiss Borhan Aldeen, Ocak Yusuf Selim

机构信息

Institute of Nanotechnology, Jordan University of Science and Technology P.O. Box 3030 Irbid 22110 Jordan

Department of Physics and Engineering Physics, Morgan State University Baltimore Maryland 21234 USA.

出版信息

RSC Adv. 2025 Jul 30;15(33):26766-26775. doi: 10.1039/d5ra03156g. eCollection 2025 Jul 25.

Abstract

This study exposed the effect of detonated nanodiamonds modified by polyvinylpyrrolidone PVP as a surface stabilizer on the tribological and thermal properties of engine oil. These commercial DNDs were dispersed in the oil at low concentrations, only 0.001 wt% to 0.005 wt%, taking advantage of their high surface area and unique carbon structure to improve lubrication performance. The presence of functional groups and crystalline characteristics for DNDs was confirmed by FTIR and XRD analyses respectively, while SEM imaging coupled with 3D optical profilometry gave information on both surface morphology and wear profile. Zeta potential measurements indicated a significant increase in dispersion stability, with values changing from 14.3 mV to -27.4 mV, ensuring long-term suspension and preventing aggregation of the nanoparticles. Tribological testing showed a substantial reduction in surface roughness, with treated samples exhibiting surface roughness approximately six times lower than those observed with base oil. The mass wear rate was reduced after using nano-lubricant 0.005 wt% by 260%. The thermal stability of the lubricant also improved, as reflected by a 2.2% increase in flashpoints. Furthermore, kinematic and dynamic viscosities increased by 10.87% and 4.95%, respectively, suggesting an improvement in oil film strength and load-bearing capacity. The synergistic effects of DND dispersion, surface interaction, and film formation contributed to reduced friction, enhanced wear resistance, and better thermal management. These findings support the potential of PVP-modified DNDs as effective nanoscale additives for extending engine life and improving lubrication efficiency under demanding operating conditions.

摘要

本研究揭示了用聚乙烯吡咯烷酮(PVP)作为表面稳定剂改性的爆轰纳米金刚石对发动机油摩擦学和热性能的影响。这些商用纳米金刚石以低浓度(仅0.001 wt%至0.005 wt%)分散在油中,利用其高比表面积和独特的碳结构来改善润滑性能。通过傅里叶变换红外光谱(FTIR)和X射线衍射(XRD)分析分别证实了纳米金刚石的官能团存在和晶体特征,而扫描电子显微镜(SEM)成像与三维光学轮廓仪相结合提供了表面形态和磨损轮廓的信息。zeta电位测量表明分散稳定性显著提高,数值从14.3 mV变为 -27.4 mV,确保了纳米颗粒的长期悬浮并防止其聚集。摩擦学测试表明表面粗糙度大幅降低,处理后的样品表面粗糙度比基础油观察到的低约六倍。使用0.005 wt%的纳米润滑剂后,质量磨损率降低了260%。润滑剂的热稳定性也有所提高,闪点提高了2.2%即可体现。此外,运动粘度和动力粘度分别增加了10.87%和4.95%,表明油膜强度和承载能力有所改善。纳米金刚石分散、表面相互作用和成膜的协同效应有助于降低摩擦、增强耐磨性和更好地进行热管理。这些发现支持了PVP改性纳米金刚石作为有效的纳米级添加剂在苛刻运行条件下延长发动机寿命和提高润滑效率的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e999/12308276/afcbb24dc8ee/d5ra03156g-f4.jpg

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