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The importance of spectrum loading in 2% milled MoS2 powder greases using four ball wear test

机译:使用四个球磨损试验的2%铣削MOS2粉末润滑脂中光谱加载的重要性

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Purpose Loading condition and minimizing friction and wear using molybdenum disulfide grease in aircraft engine bearings are the focus of this research. The relationship between the milled and unmilled MoS2 (molybdenum disulfide) greases to its tribological properties, such as coefficient of friction, wear and chemical-mechanical properties of tribofilms, is examined for constant extreme pressure loading and spectrum or actual loading. Design/methodology/approach In this study, the design of experiments (DOE) approach was used to analyze the different loadings and speeds at a specific duration of 36,000 revolutions to examine the lithium base grease wear behavior with milled and unmilled MoS2 powder. Load is treated as variable that simulates actual conditions under 1,200 and 600 rpm rotational speeds using the four-ball test with chromium steel ball bearing aircraft grade E52100. Findings The results indicated that ball-milled MoS2 grease tests showed reduction in wear and friction under all conditions, especially spectrum or actual loading. Unmilled MoS2 powder exhibited worse wear outcomes than the milled one. The SEM and AES analyses indicated that a tribofilm is formed on the wear surface of the milled powder grease, especially at variable loading and initially at lower loads in the ramp-up tests that significantly enhanced the contact characteristics and prevented abrasion at higher loads. Originality/value This research indicated that the wear resistance in actual loading might be due to frictional heating generated during the ramping-up conditions where it provided a protective film that enhanced the steady-state friction for the duration of the test. Several researchers used ASTM standards to work on constant loading conditions. This is the first time that reduced milled MoS2 powder showed significant improvement in grease performance.
机译:目的负载条件和最小化飞机发动机轴承中二硫化物润滑脂的摩擦和磨损是本研究的重点。将研磨和未磨碎的MOS2(二硫化钼)润滑脂与其摩擦性质的关系,例如呋喃霉菌系数,致呋喃,横向压力负荷和光谱或实际载荷。设计/方法/方法在本研究中,实验(DOE)方法的设计用于分析不同的载荷和速度,在36,000次循环的特定持续时间内,以检查用研磨和未磨削的MOS2粉末锂底座润滑脂磨损行为。使用铬钢滚珠轴承飞机级E52100,将负荷视为模拟1,200和600 rpm旋转速度下的实际条件。结果表明,在所有条件下,滚珠研磨的MOS2润滑脂测试显示在所有条件下减少磨损和摩擦,特别是光谱或实际负载。未磨损的MOS2粉末比磨碎的磨损成果差。 SEM和AES分析表明,在碾磨粉末润滑脂的磨损表面上形成呋喃酚,尤其是在可变加载中,并且最初在升压试验中的较低载荷处,显着提高了接触特性并防止了更高负载的磨损。本研究的原创性/值表明,实际负载中的耐磨性可能是由于在斜坡的条件下产生的摩擦加热,其中它提供了在测试期间增强稳态摩擦的保护膜。几位研究人员使用ASTM标准来处理恒定的装载条件。这是减少碾磨MOS2粉末的第一次显示出润滑脂性能的显着改善。

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