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A Deterministic Mixed Lubrication Model for Mechanical Seals

机译:机械密封的确定性混合润滑模型

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摘要

Mechanical seals are commonly used in industrial applications. The main purpose of these components is to ensure the sealing of rotating shafts. Their optimal point of operation is obtained at the boundary between the mixed and hydrodynamic lubrication regimes. However, papers focused on this particular aspect in face seals are rather scarce compared with those dealing with other popular sealing devices. The present study thus proposes a numerical flow model of mixed lubrication in mechanical face seals. It achieves this by evaluating the influence of roughness on the performance of the seal. The choice of a deterministic approach has been made, this being justified by a review of the literature. A numerical model for the generation of random rough surfaces has been used prior to the flow model in order to give an accurate description of the surface roughness. The model takes cavitation effects into account and considers Hertzian asperity contact Results for the model, including Stribeck curves, are presented as a function of the duty parameter.
机译:机械密封件通常用于工业应用。这些组件的主要目的是确保旋转轴的密封。它们的最佳运行点是在混合润滑和流体动力润滑方式之间的边界处获得的。但是,与其他流行的密封装置相比,专注于面部密封的这一特定方面的论文很少。因此,本研究提出了一种机械端面密封中混合润滑的数值流模型。它通过评估粗糙度对密封性能的影响来实现。确定性方法的选择已经做出,这通过文献回顾来证明是正确的。为了给出表面粗糙度的准确描述,在流动模型之前已经使用了用于产生随机粗糙表面的数值模型。该模型考虑了空化效应,并考虑了Hertzian粗糙接触,该模型的结果(包括Stribeck曲线)作为占空比参数的函数给出。

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