微极流体润滑短轴颈轴承的动态加载

C. Singh, P. Sinha
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引用次数: 2

摘要

本文对载荷交替或旋转的动载轴承进行了研究。推导了动态加载无限短轴承一般情况下的雷诺方程,其中假定润滑剂为微极性。详细考虑了短轴颈轴承在无轴颈旋转的正弦载荷下挤压膜的动态行为。假设存在一个完整的膜,计算各种轴承特性。流体的微极性导致更大的阻力轴颈运动,从而允许较小的偏心率恒定负载。本研究的总体结论是,由于润滑剂的微极性,有效粘度增加。当使用添加剂时,这一理论可能会在润滑中得到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Loading of Micropolar Fluid Lubricated Short Journal Bearings
Dynamically loaded bearings in which the load alternates or rotates are studied in this paper. The Reynolds equation for the general case of a dynamically loaded infinitely short bearing is derived, where the lubricant is assumed to be micropolar. Detailed consideration is given to the dynamic behaviour of squeeze films in a short journal bearing under a sinusoidal load with no journal rotation. Various bearing characteristics are calculated, assuming a full film to exist. The micropolarity of the fluid results in more resistance to journal motion, thereby allowing smaller eccentricities for a constant load. The overall conclusion of this study is an increase in the effective viscosity due to the micropolarity of the lubricant. This theory may find application in lubrication when additives are used.
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