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Starved Lubrication of Elliptical EHD Contacts

机译:椭圆形EHD触点的润滑不足

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摘要

This paper focuses on the lubrication behavior of starved elliptical Elasto-HydroDynamic (EHD) contacts. Starvation is governed by the amount of lubricant available in the inlet region and can result in much thinner films than occurring under fully flooded conditions. Therefore, it would be desirable to be able to predict the onset and severity of starvation and to be able to relate film reduction directly to the operating conditions and lubricant properties. The aim of this work is to explore the influence of these parameters on starvation. A combined modeling and experimental approach has been employed. The numerical model has been developed from an earlier circular contact study [1]. In this model, the amount and distribution of the lubricant in the inlet region determines the onset of starvation and predicts the film decay in the contact. Numerical simulations for a uniform layer on the surface show that a single parameter, characteristic of the inlet length of the contact in the fully flooded regime, determines the starved behavior. Film thickness measurements under starved conditions were performed to validate this theory. For a circular contact excellent agreement was found. In theory the same mechanism applies to elliptic contacts, however, the behavior is more complicated.
机译:本文重点研究饥饿的椭圆形水动力(EHD)触头的润滑行为。饥饿取决于入口区域中可用的润滑剂量,与完全充满油的情况相比,可以导致薄膜更薄。因此,期望能够预测饥饿的发生和严重程度,并且能够将膜减少直接与操作条件和润滑剂性质相关联。这项工作的目的是探索这些参数对饥饿的影响。结合了建模和实验方法。数值模型是根据较早的圆形接触研究[1]开发的。在该模型中,入口区域中润滑剂的量和分布决定了饥饿的发生,并预测了薄膜在接触中的衰减。表面均匀层的数值模拟表明,在完全淹没状态下,接触件入口长度的特征是一个参数,它决定了饥饿行为。在饥饿条件下进行膜厚度测量以验证该理论。对于循环联系,发现了极好的协议。理论上,相同的机制适用于椭圆形接触,但是其行为更为复杂。

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