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Modeling of liner finish effects on oil control ring lubrication in internal combustion engines based on deterministic method

机译:基于确定性方法的内衬发动机控油环润滑内衬精加工效应建模

摘要

Twin-land oil control ring is widely used in the automotive diesel engines, and is gaining more and more applications in the modern designs of gasoline engines. Its interaction with the cylinder liner surface accounts for around 10% of the total frictional losses within an internal combustion engine, and is the most important factor that affects the lubricant oil consumption. A twin-land oil control ring model is developed based on the deterministic hydrodynamic method by Li et al. [31] and the Greenwood Tripp asperity contact model [39]. Unlike the traditional methods of piston ring pack modeling determined by the ring face macro profile which hardly exists on the twin-land oil control ring, the model considers the liner finish micro geometry, and uses a correlation method to predict the behavior of the ring liner interaction in both frictions losses and oil control. The model is used to study the effect of some key design parameters of the twin-land oil control ring, including the unit load pressure, the ring tension and the ring axial land width. The results show a large potential of the model in the optimization of the twin-land oil control ring design. Although many non-conventional cylinder liner finishes are now being developed to reduce friction and oil consumption, the effects of surface finish on ring-pack performance is not well understood. To solver this mystery, the twin-land oil control ring model and Li's deterministic hydrodynamic model are used to study the effect of the liner finish micro geometry. Several key parameters of liner finish texture are examined, and the analytical results show important effects of some of these key parameters on the twin-land oil control ring friction losses as well as the lubricant oil control.
机译:双陆控油环广泛应用于汽车柴油发动机,并在汽油发动机的现代设计中获得越来越多的应用。它与气缸套表面的相互作用约占内燃机总摩擦损失的10%,是影响润滑油消耗的最重要因素。 Li等基于确定性流体动力学方法建立了双陆控油环模型。 [31]和Greenwood Tripp粗糙接触模型[39]。与由双面控油环上几乎不存在的由环面宏观轮廓确定的传统活塞环组件建模方法不同,该模型考虑了衬套表面的微观几何形状,并使用相关方法来预测环衬套的行为摩擦损失和控油方面的相互作用。该模型用于研究双平台控油环的一些关键设计参数的影响,包括单位负载压力,环张力和环轴向平台宽度。结果表明,该模型在优化双陆控油环设计中具有很大的潜力。尽管现在正在开发许多非常规的汽缸套表面处理以减少摩擦和机油消耗,但人们对表面处理对环密封件性能的影响却知之甚少。为了解决这个谜团,我们使用双陆控油环模型和Li的确定性水动力模型来研究衬套表面微观几何形状的影响。研究了衬里光洁度的几个关键参数,分析结果表明,这些关键参数中的一些参数对双陆控油环的摩擦损失以及润滑油控制具有重要影响。

著录项

  • 作者

    Chen Haijie;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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