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CFD Investigation on the Influence of Jet Velocity of Oil-jet Lubricated Ball Bearing on the Characteristics of Lubrication Flow Field

机译:CFD调查射流润滑滚珠轴承射流速度对润滑流场特性的影响

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Oil-jet lubrication which is widely applied in aero engine, turbo machinery, high power transmission system is one of the most common form of the high speed bearing lubrication. The complex oil-air two-phase flow will exist in the cavity of the oil-jet lubricated high speed rolling bearing because of the stirring of the rolling elements and the cage. The characteristics of the two-phase flow field have a decisive influence on heat generation and temperature distribution of the bearing, which affect performance and service life of the bearing sighificantly. Jet velocity is an important factor that affects the oil-air two-phase flow field in the bearing cavity. The VOF method for multiphase flow and the RNG k-ε turbulence model were used. The flow field in the bearing cavity at different operating speeds and jet velocities was numerically calculated and analyzed. The effects of the jet velocity and the operating speed on the oil volume fraction in the bearing cavity and the churning torque were investigated.
机译:喷射润滑广泛应用于航空发动机,涡轮机械,高动力传动系统是高速轴承润滑的最常见形式之一。由于滚动元件和笼的搅拌,复杂的油气两相流将存在于油喷射润滑的高速滚动轴承的腔内。两相流场的特点对轴承的发热和温度分布具有决定性影响,这影响了轴承的性能和使用寿命。喷射速度是影响轴承腔中的油气两相流场的重要因素。使用用于多相流的VOF方法和RNG k-ε湍流模型。以不同的操作速度和喷射速度的轴承腔中的流场进行了数值计算和分析。研究了射流速度和操作速度对轴承腔内的油体分数和搅拌扭矩的影响。

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