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首页> 外文期刊>Journal of Tribology >Roughness Amplitude Reduction Under Non-Newtonian EHD Lubrication Conditions
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Roughness Amplitude Reduction Under Non-Newtonian EHD Lubrication Conditions

机译:非牛顿EHD润滑条件下的粗糙度降低

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摘要

Over the last decade, the operating conditions of the Elastohydrodynamic lubricated (EHL) contact have become increasingly severe. Consequently, the average film thickness decreased and became comparable to the surface roughness. Under those conditions, the surface features can reduce the minimum film thickness and can thus increase wear. They can also increase the temperature and the pressure fluctuations, which directly affect the component life. In order to describe the roughness geometry inside an EHL contact, the amplitude reduction of harmonic waviness has been studied over the last decade. This theory currently allows a quantitative prediction of the waviness amplitude and includes the influence of wavelength and contact operating conditions. However, the model assumes a Newtonian behavior of the lubricant. The current paper contributes to the extension of the roughness amplitude reduction for EHL point contacts including non- Newtonian effects. A generalized model is derived that includes both types of behavior.
机译:在过去的十年中,弹性流体动力润滑(EHL)触点的运行条件变得越来越严峻。因此,平均膜厚度减小并且变得与表面粗糙度相当。在那些条件下,表面特征可以减小最小膜厚度,从而增加磨损。它们还会增加温度和压力波动,直接影响组件寿命。为了描述EHL触点内部的粗糙度几何形状,在过去的十年中研究了谐波波动的幅度减小。目前,该理论允许对波峰幅度进行定量预测,并包括波长和触点工作条件的影响。但是,该模型假设润滑剂的牛顿行为。当前的论文有助于扩大EHL点接触的粗糙度幅度减小,包括非牛顿效应。导出了包含两种行为类型的通用模型。

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