首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Low-viscosity Gear Oil Technology to Improve Wear at Tapered Roller Bearings in Differential Gear Unit
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Low-viscosity Gear Oil Technology to Improve Wear at Tapered Roller Bearings in Differential Gear Unit

机译:低粘度齿轮油技术,以改善差动齿轮单元圆锥滚子轴承磨损

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Torque loss reduction at differential gear unit is important to improve the fuel economy of automobiles. One effective way is to decrease the viscosity of lubricants as it results in less churning loss. However, this option creates a higher potential for thin oil films, which could damage the mechanical parts. At tapered roller bearings, in particular, wear at the large end face of rollers and its counterpart, known as bearing bottom wear is one of major failure modes. To understand the wear mechanism, wear at the rolling contact surface of rollers and its counterpart, known as bearing side wear, was also observed to confirm the wear impact on the tapered roller bearings. Because gear oils are also required to avoid seizure under extreme pressure, the combination of a phosphorus anti-wear agent and a sulfurous extreme pressure agent are formulated. Because the latter could cause an antagonistic impact on the former, we focused on control of active sulfur content as well as the treat ratios to reduce wear at the tapered roller bearing while maintaining anti-seizure. Additive screening bench tests were performed considering operational conditions in actual gear unit-stand tests on the basis of the above-mentioned concept and the best formulation was identified as a breakthrough for low-viscosity gear oil. This low-viscosity gear oil technology was validated in the unit-stand tests. The sample oil based on the technology demonstrated equivalent performance for anti-wear while maintaining good anti-seizure, to the high-viscosity gear oil.
机译:差动齿轮单元的扭矩损失减少对于改善汽车的燃料经济性非常重要。一种有效的方法是降低润滑剂的粘度,因为它导致较少的搅拌损失。然而,该选项为薄油膜产生更高的电位,这可能会损坏机械部件。在锥形滚子轴承处,特别是在辊子的大端面磨损及其对应物,称为轴承底部磨损是主要的失效模式之一。为了了解磨损机构,还观察到滚筒的滚动接触表面和其对应物的磨损,称为轴承侧磨损,以确认对圆锥滚子轴承的磨损施加。因为齿轮油也需要在极压下避免癫痫发作,所以配制磷抗磨剂和含硫极压剂的组合。因为后者可能对前者产生拮抗的影响,我们专注于控制活性硫含量以及治疗比率,以减少锥形滚子轴承的磨损,同时保持抗癫痫。考虑到基于上述概念的实际齿轮单元支架测试中的操作条件进行添加剂筛选台式测试,并且最佳配方被鉴定为低粘度齿轮油的突破。在单元支架测试中验证了这种低粘度齿轮油技术。基于该技术的样品油在保持良好的抗癫痫件的同时表现出相同的抗磨损性能,以高粘度齿轮油。

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