首页> 外文会议>American Society of Mechanical Engineers(ASME) Internal Combustion Engine Division Fall Technical Conference(ICEF 2004); 20041024-27; Long Beach,CA(US) >FILM THICKNESS AND FRICTION MEASUREMENT OF PISTON RING CYLINER LINER CONTACT WITH CORRESPONDING MODELING INCLUDING MIXED LUBRICATION
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FILM THICKNESS AND FRICTION MEASUREMENT OF PISTON RING CYLINER LINER CONTACT WITH CORRESPONDING MODELING INCLUDING MIXED LUBRICATION

机译:活塞环缸套衬里的膜厚和摩擦测量及相应模型,包括混合润滑

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摘要

An experimental apparatus and an analytical model have been developed to investigate and determine the lubrication condition and frictional losses at the interface between a piston ring and cylinder liner. The experimental apparatus features twin fiber optic displacement sensors to accurately measure the lubricant film thickness and a tri-axial piezoelectric force transducer to simultaneously measure frictional force. An analytical mixed lubrication model featuring Elrod cavitation and a stochastic/deterministic approach for asperity contact was used to investigate the effects of boundary and mixed lubrication conditions at the ends-of-stroke. A comparison between experimental and analytical results indicated that they are in good agreement. The results illustrate the transition through all of the different lubrication regimes (i.e. boundary, mixed and hydrodynamic lubrication) the piston ring and liner experience during a stroke. The twin displacement sensor arrangement is capable of producing accurate, repeatable measurements of lubricant film thickness that are in agreement with the analytical predictions. The analytical model developed for this study can capture the different lubrication regimes that the piston ring and liner experience.
机译:已经开发出实验装置和分析模型来研究和确定在活塞环和气缸套之间的界面处的润滑条件和摩擦损失。该实验装置具有双光纤位移传感器以精确测量润滑剂膜的厚度,以及三轴压电力传感器以同时测量摩擦力。分析混合润滑模型具有Elrod空化作用和粗糙接触的随机/确定性方法,用于研究冲程末端的边界润滑和混合润滑条件的影响。实验结果和分析结果之间的比较表明,它们具有很好的一致性。结果说明了在冲程过程中活塞环和衬套经历的所有不同润滑方式(即边界润滑,混合润滑和流体动力润滑)的过渡。双排量传感器装置能够产生准确,可重复的润滑剂膜厚度测量值,该测量值与分析预测一致。为此研究开发的分析模型可以捕获活塞环和衬套所经历的不同润滑方式。

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