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3-D Numerical Simulation and Experiment Study on the Wear of Piston Ring-Cylinder Liner

机译:活塞环缸套磨损的3-D数值模拟与实验研究

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Aiming at a large marine diesel engine, a mathematical model for the 3-D elastohydrodynamic lubrication analysis of piston ring-cylinder liner was presented. The average Reynolds equation and asperity contact approach were combined with the elastic deformation equation. The asymmetry in the circumferential direction, gas blowby and the effect of temperature and pressure on the oil density and viscosity were considered. The 3-D wear simulation of piston ring-cylinder liner was performed when the diesel engine was operated under warm start and cold start conditions, respectively. The 3-D distribution rules show that the first gas ring has the biggest wear loss, and the maximum wear loss of cylinder liner occurs in the vicinity of TDCF. Finally, the results matched well with the wear measurements, and it indicates the present method is effective and can help engineers to improve the tribological performance of the diesel engine.
机译:旨在瞄准大型海洋柴油发动机,提出了一种用于活塞环缸衬里的3-D弹性流体动力学润滑分析的数学模型。平均雷诺方程和粗糙接触方法与弹性变形方程组合。考虑了圆周方向,气体吹口的不对称性和温度和压力对油密和粘度的影响。当柴油发动机在温暖的开始和冷启动条件下操作柴油发动机时,执行活塞环缸衬里的3-D磨损模拟。 3-D分配规则表明,第一气环具有最大的磨损损耗,并且在TDCF附近发生气缸衬里的最大磨损损失。最后,使用磨损测量结果匹配良好,表明本方法是有效的,可以帮助工程师提高柴油发动机的摩擦学性能。

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