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Nano Serpentine Powders as Lubricant Additive: Tribological Behaviors and Self-Repairing Performance on Worn Surface

机译:纳米蛇纹石粉作为润滑剂添加剂:磨损表面的摩擦学行为和自修复性能

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摘要

Natural serpentine powders are applicable as additives for various lubricating oils. However, no uniform theories explain their tribological performance, lubrication, and wear mechanism, especially their self-repairing mechanism. Herein, the influence of different nano serpentine powders (NSPs) contents in liquid paraffin on the friction and wear characteristics of steel balls and the self-repairing process of NSPs on the worn surface were studied. Results show that the optimal amount of NSPs was 0.5 wt %. Relative to those of the base oil, the friction coefficients and wear spot diameters were reduced by 22.8% and 34.2%, respectively. Moreover, the long-term tribological test shows that the wear scar diameter decreased slightly after 3 h, reaching the state of dynamic balance between wear and repair. The outstanding tribological performance should be attributed to the formed bilayer tribofilm, the first layer of which contains nanoparticles surrounded by lubricants and the second layer of which contains nanoparticles compacted onto the surface of the steel ball.
机译:天然蛇纹石粉可用作各种润滑油的添加剂。然而,没有统一的理论解释它们的摩擦学性能,润滑和磨损机理,尤其是它们的自我修复机理。在此,研究了液体石蜡中不同纳米蛇纹石粉(NSPs)含量对钢球的摩擦和磨损特性的影响,以及NSPs在磨损表面上的自修复过程。结果表明,NSP的最佳量为0.5重量%。相对于基础油,摩擦系数和磨损点直径分别降低了22.8%和34.2%。此外,长期的摩擦学试验表明,磨损痕迹直径在3小时后略有下降,达到了磨损与修复之间的动态平衡状态。杰出的摩擦学性能应归因于所形成的双层摩擦膜,该摩擦膜的第一层包含被润滑剂包围的纳米颗粒,第二层包含被压实在钢球表面的纳米颗粒。

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