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首页> 外文期刊>Tribology Online >Non-Newtonian Effects of Rabinowitsch Fluid on the Performance of Inclined Stepped Composite Bearings
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Non-Newtonian Effects of Rabinowitsch Fluid on the Performance of Inclined Stepped Composite Bearings

机译:Rabinowitsch流体对倾斜阶梯复合轴承性能的非牛顿效应

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摘要

The theoretical analysis of rheological effects of Rabinowitsch fluid on the steady and dynamic characteristics of inclined stepped composite bearings is investigated. The Rabinowitsch fluid model is considered to account the pseudoplastic and dilatant nature of the lubricant due to the presence of additives. The perturbation technique is used to derive the modified Reynolds equation separately for both steady state and perturbed characteristics of the bearing. The closed form expressions for the bearing characteristics are obtained. By using these expressions, the performance characteristics of four different types of bearings such as stepped, plane inclined slider, composite tapered land and composite tapered concave bearings are determined. It is found that, the non-Newtonian behaviour of the Rabinowitsch fluid have a significant effect on bearing characteristics. Further, it is found that the existence of a critical value for profile parameter at which the dynamic stiffness coefficient attains maximum.
机译:研究了Rabinowitsch流体对倾斜阶梯复合轴承稳态和动态特性的流变效应的理论分析。 Rabinowitsch流体模型被认为是由于存在添加剂而导致润滑剂的假塑性和膨胀特性。扰动技术用于分别针对轴承的稳态和扰动特性导出修正的雷诺方程。获得轴承特性的闭合形式表达式。通过使用这些表达式,可以确定四种不同类型的轴承的性能特征,例如阶梯轴承,平面倾斜滑块,复合圆锥轴承和复合圆锥凹轴承。发现,Rabinowitsch流体的非牛顿行为对轴承特性有重大影响。此外,发现轮廓参数的临界值存在,在该临界值处动态刚度系数达到最大。

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