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Study of the Effects of Oil Supply and Piston Skirt Profile on Lubrication Performance in Power Cylinder Systems

机译:供油和活塞裙轮廓对动力缸系统润滑性能的影响研究

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In internal combustion engines, the majority of the friction loss associated with the piston takes place on the thrust side in early expansion stroke. Research has shown that the Friction Mean Effective Pressure (FMEP) of the engine can be reduced if proper modifications to the piston skirt, which is traditionally barrel-shaped, are made. In this research, an existing model was applied for the first time to study the effects of different oil supply strategies for the piston assembly. The model is capable of tracking lubricating oil with the consideration of oil film separation from full film to partial film. It is then used to analyze how the optimized piston skirt profile investigated in a previous study reduces friction. It was found that the profile is able to maintain a larger amount of lubricant between the lower part of the piston skirt and the cylinder liner during compression stroke, thereby generating more hydrodynamic pressure, instead of asperity contact pressure, to balance the lateral force from piston pin.
机译:在内燃机中,与活塞相关的大部分摩擦损失发生在早期膨胀行程中的推力方面。研究表明,如果对传统上滚动的活塞裙的正确修改,则可以减少发动机的摩擦平均有效压力(FMEP)。在本研究中,第一次应用现有模型来研究不同的供油策略对活塞组件的影响。该模型能够考虑从全膜到部分膜的油膜分离的润滑油跟踪润滑油。然后用于分析先前研究中研究的优化活塞裙轮廓如何减少摩擦。结果发现,在压缩冲程期间,该轮廓能够在活塞裙和缸衬里的下部之间保持更大量的润滑剂,从而产生更多的流体动力学压力,而不是粗糙接触压力,以平衡活塞的横向力别针。

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