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Influence of numerous start-ups and stops on tribological performance evolution of engine main bearings

机译:众多初创企业对发动机主轴承摩擦绩效演化的影响

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摘要

For main bearings of internal combustion engines, most of the wear occurs during the start-ups and stops. The popularity of the start-stop system in automobile engines, which is used to save fuel consumption during idling stage, makes the working condition of main bearings severer because more frequent starts and stops will be generated. Changes in the bearing surface caused by wear will directly affect the bearing's working performance. So in this study a transient mixed lubrication model and a wear model are coupled to analyze the influence of numerous start-ups and stops on the tribological performance evolution of engine main bearings. Starved lubrication of bearings before the oil supply is considered. The wear process is studied on the scale of surface topography and geometry. A main bearing in a four-stroke four-cylinder gasoline engine is studied under engine start-stop cycle conditions. The effects of temperature and lubricant grade on the transient tribodynamic behavior during the start-ups and stops are first investigated. Then the evolutions of surface characteristics and tribological performance of main bearings after numerous engine start-ups and stops are simulated. Results show that the temperature and lubricant grade can significantly affect the friction and wear of bearings. Hot start-stop condition leads to more serious asperity contact friction in the early stage of start-up, while cold start-stop condition generates more friction loss. The wear process of bearing surface is faster when applying oil with lower viscosity. And the impacts of engine start-ups and stops on bearing working performance are mainly seen in contact friction.
机译:对于内燃机的主轴承,大部分磨损发生在初创器和停止期间。汽车发动机中的起始停止系统的普及用于节省空转阶段的燃料消耗,使主轴承严重的工作条件是因为将产生更频繁的开始和停止。磨损引起的轴承表面的变化将直接影响轴承的工作性能。因此,在这项研究中,瞬态混合润滑模型和磨损模型耦合以分析众多初创企业的影响和停止发动机主轴承的摩擦学性能演化。在考虑供油前滚动轴承的润滑。在表面形貌和几何形状上研究了磨损过程。在发动机启动停止循环条件下,研究了四冲程四缸汽油发动机中的主轴。首先研究了温度和润滑剂等级对瞬态部落动力学行为的影响和停止。然后模拟了大量发动机初始启动和停止后主轴承的表面特性和摩擦学性能的演变。结果表明,温度和润滑剂等级可显着影响轴承的摩擦和磨损。热启动停止条件导致启动早期阶段更严重的粗糙接触摩擦,而冷启动状态会产生更摩擦的损失。施加具有较低粘度的油时轴承表面的磨损过程更快。以及发动机初始启动和停止对轴承工作性能的影响主要是接触摩擦。

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