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首页> 外文期刊>Tribology letters >The Influence of Base Oil Properties on the Friction Behaviour of Lithium Greases in Rolling/Sliding Concentrated Contacts
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The Influence of Base Oil Properties on the Friction Behaviour of Lithium Greases in Rolling/Sliding Concentrated Contacts

机译:基础油特性对轧制/滑动浓缩触点锂润滑脂摩擦行为的影响

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摘要

This study investigates the influence of base oil type and viscosity on the frictional behaviour of lithium-thickened bearing greases. A series of model lithium greases were manufactured by systematically varying viscosity and type of base oil, so that the influence of a single base oil property could be studied in isolation. In addition, selected greases were blended with oleic acid, with the purpose of evaluating its effectiveness in further reducing grease friction. Friction coefficient and film thickness were measured in laboratory ball-on-disc tribometers over a range of speeds and temperatures. For a specific oil type, the influence of base oil viscosity on friction was found to be closely related to its effect on film thickness: greases formulated with PAO oils covering a wide range of viscosities gave very similar friction at the same nominal film thickness. For a given base oil viscosity, base oil type was found to have a strong influence on grease friction under all test conditions. PAO-based greases generally produced lower friction than mineral-and ester-based greases. Addition of oleic acid to the test greases did not significantly affect friction within the range of test conditions employed in this study. The results provide new insight into the frictional behaviour of greases, which may be used to help inform new low-friction grease formulations for rolling bearing applications.
机译:本研究研究了基础油型和粘度对锂增稠轴承润滑脂摩擦行为的影响。通过系统地改变粘度和基础油型制造一系列模型锂润滑脂,因此可以分离地研究单个基础油性的影响。此外,选择的润滑脂与油酸混合,目的是评估其在进一步减少润滑脂摩擦方面的有效性。在实验室球形球形曲线仪的速度和温度范围内测量摩擦系数和膜厚度。对于特定的油型,发现基础油粘度对摩擦的影响与其对膜厚度的影响密切相关:用覆盖着覆盖各种粘度的Pao油配制的润滑脂在相同的标称膜厚度下给出了非常相似的摩擦。对于给定的基础油粘度,发现基础油型对所有试验条件下对油脂摩擦产生强烈影响。 PAO基润滑脂通常生产比矿物和酯基润滑脂的摩擦力较低。向试验润滑脂添加油酸在本研究中使用的试验条件范围内没有显着影响摩擦。结果为润滑脂的摩擦行为提供了新的洞察力,可用于帮助新的低摩擦润滑脂配方用于滚动轴承应用。

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