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首页> 外文期刊>Tribology Transactions >The Importance of Variable Speeds under Extreme Pressure Loading in Molybdenum Disulfide Greases Using Four-Ball Wear Tests
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The Importance of Variable Speeds under Extreme Pressure Loading in Molybdenum Disulfide Greases Using Four-Ball Wear Tests

机译:使用四球磨损试验,在极压负载下变速对二硫化钼润滑脂的重要性

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摘要

There is recent concern regarding grease behavior in extreme pressure applications. The research described here is aimed at providing good friction and wear performance while optimizing rotational speeds under extreme loading conditions. A design of experiment (DOE) was used to analyze molybdenum disulfide (MoS_2) greases and their importance in reducing wear under extreme loading and various speeds conditions (schedule 1 and schedule 2 speeds). The lamellar structure of MoS_2 provides very good weld protection by forming a layer that can be easily sheared under the applications of extreme pressures. An extreme load of 785 N was used in conjunction with different schedules of various rotational speeds to examine lithium-based grease with and without MoS_2 for an equal number of revolutions. A four-ball wear tester was utilized to run a large number of experiments randomly selected by the DOE software. The grease was heated to 75℃ and the wear scar diameters were collected at the end of each test. The results indicated that wear was largely dependent on the speed condition under extreme pressure loading, and thus a lower MoS_2 concentration is needed to improve the wear resistance of lithium-based greases. The response surface diagram showed that the developed molybdenum disulfide greases exhibited both extreme pressure as well as good wear properties under various rotational speeds when compared to steady-state speed. It is believed that MoS_2 greases under schedule 1 speeds perform better and provide an antiwear film that can resist extreme pressure loadings.
机译:最近,人们关注极压应用中的润滑脂性能。这里描述的研究旨在提供良好的摩擦和磨损性能,同时在极端负载条件下优化转速。实验设计(DOE)用于分析二硫化钼(MoS_2)润滑脂及其在减少极端负载和各种速度条件(计划1和计划2速度)下对减少磨损的重要性。 MoS_2的层状结构通过形成一层在极高压力下易于剪切的层,提供了很好的焊接保护。将785 N的极限载荷与各种转速的不同时间表结合使用,以检查具有和不具有MoS_2的锂基润滑脂转数相等。利用四球磨损测试仪来运行由DOE软件随机选择的大量实验。将油脂加热到75℃,并在每次测试结束时收集磨损痕迹直径。结果表明,磨损在很大程度上取决于极压载荷下的转速条件,因此需要较低的MoS_2浓度来改善锂基润滑脂的耐磨性。响应表面图表明,与稳态速度相比,开发的二硫化钼润滑脂在各种转速下均表现出极高的压力以及良好的耐磨性。据信,MoS_2润滑脂在计划1的速度下性能更好,并提供可以抵抗极端压力载荷的抗磨膜。

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