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首页> 外文期刊>Tribology Transactions >Non-Newtonian Effects on Film Formation in Grease-Lubricated Radial Lip Seals
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Non-Newtonian Effects on Film Formation in Grease-Lubricated Radial Lip Seals

机译:脂润滑径向唇密封中非牛顿效应对膜形成的影响

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摘要

In existing models, the only lubricant property used for predicting film thickness in radial lip seals is the (base) oil viscosity. Lubricating greases show non-Newtonian behavior, and additional normal stress components develop that may contribute to the load-carrying capacity. This study investigates the shear rheology of greases and determines whether this "normal stress effect" in grease can significantly contribute to film formation in radial lip seals. First, the rheological behavior of grease is studied in a rotary plate-plate rheometer at small gaps of 25-500 μmup to shear rates of 5·10~4 s~(-1). The rheology measurements are used for a rheology model that predicts the first normal stress difference in the grease. Second, a seal lip model was developed to predict the lift force generated by the normal stress effect that separates the seal from the shaft. The model results show that the load-carrying capacity depends very much on the operating conditions: lip geometry, speed, and temperature. The model predicts a lift force that is over 50% of the seal specific lip force for low-contact pressure-bearing seals. The model can easily be used in existing oil seal models and makes it possible to optimize seal design by utilizing the normal stress effect.
机译:在现有模型中,用于预测径向唇形密封中膜厚度的唯一润滑性能是(基础)油粘度。润滑脂表现出非牛顿性,并且会形成其他正应力分量,这些分量可能会提高承载能力。这项研究调查了润滑脂的剪切流变学,并确定了润滑脂中的这种“正应力效应”是否可以显着地促进径向唇形密封中的膜形成。首先,在旋转板板式流变仪中研究了在25-500μmup的小间隙至5·10〜4 s〜(-1)的剪切速率下润滑脂的流变行为。流变学测量用于预测润滑脂中第一个法向应力差的流变学模型。其次,开发了密封唇模型来预测由将密封件与轴分开的正应力效应所产生的升力。模型结果表明,承载能力在很大程度上取决于工作条件:唇形,速度和温度。该模型预测,对于低接触承压密封件,升力将超过密封件比唇力的50%。该模型可以轻松地用于现有的油封模型中,并可以利用法向应力效应来优化密封设计。

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