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Effect of Viscosity Variation on the Micropolar Fluid Squeeze Film Lubrication of a Short Journal Bearing

机译:粘度变化对短轴颈轴承微极流体挤压膜润滑的影响

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摘要

A theoretical study of the effect of the viscosity variation on the squeeze film performance of a short journal bearing operating with micropolar fluid is presented. The modified Reynolds equation accounting for the viscosity variation in micropolar fluid is mathematically derived. To obtain a closed form solution, the short bearing approximation under constant load is considered. The modified Reynolds equation is solved for the fluid film pressure and then the bearing characteristics, such as obtaining the load carrying capacity and the squeeze film time. According to the results evaluated, the micropolar fluid as a lubricant improves the squeeze film characteristics and results in a longer bearing life, whereas the viscosity variation factor decreases the load carrying capacity and squeezes film time. The result is compared with the corresponding Newtonian case.
机译:介绍了粘度变化对微柱液体运行的短轴颈轴承挤出膜性能影响的理论研究。在数学衍生出用于微柱液中粘度变化的改良雷诺等式。为了获得封闭的溶液,考虑恒定负载下的短轴承近似。改进的雷诺等式用于流体膜压力,然后求轴承特性,例如获得承载能力和挤压膜时间。根据评估的结果,作为润滑剂的微极流体改善了挤压膜特性并导致轴承寿命更长,而粘度变化因子降低承载能力并挤压膜时间。结果与相应的牛顿案例进行比较。

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