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Statistical Study of Ring Geometry Effect on Piston Ring/Liner Tribology Using Classical Design of Experiment

机译:用经典设计试验型活塞环/衬里摩擦摩擦效应的统计研究

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An instantaneous piston ring/liner friction model has been presented to estimate the minimum oil film thickness and power loss contributed by piston rings under hydrodynamic lubrication. The model is based on lubrication theory considering lubricant viscosity variation with respect to temperature. A numerical scheme is developed to solve Reynolds and load equilibrium equations simultaneously to obtain the cyclic variation of oil film thickness and power loss. The model considers the ring profile geometry, the ring mechanical properties and their effects on the tribological performance of piston ring. The relevant trends and relations between parameters are considered with relatively simple approach to compute the minimum oil film thickness and mechanical power loss. Besides, Design of Experiment (DOE) technique and ANOVA analysis are employed to determine the effect of influential parameters such as ring width, ring crown height, ring elastic properties and ring end gap on the average power loss and average minimum oil film thickness. The statistical observation revealed that the main effect of ring width, ring crown height, ring tension force have prime importance and affect the response factors.
机译:已经提出了一种瞬时活塞环/衬里摩擦模型以估计通过流体动力润滑下的活塞环贡献的最小油膜厚度和功率损失。该模型基于考虑到温度的润滑剂粘度变化的润滑理论。开发了一种数值方案以同时解决reynolds和负载平衡方程以获得油膜厚度和功率损耗的循环变化。该模型考虑了环形轮廓几何形状,环形机械性能及其对活塞环的摩擦学性能的影响。参数之间的相关趋势和关系采用相对简单的方法来计算最小的油膜厚度和机械功率损耗。此外,采用实验(DOE)技术和ANOVA分析的设计来确定环宽,环冠高度,环弹性特性和环形间隙在平均功率损耗和平均最小油膜厚度上的影响。统计观察表明,环宽,环冠高,环张力的主要效果具有重要性并影响响应因素。

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