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Effects of oil groove locations on the performance of the big end bearing of a medium-speed diesel engine

机译:油槽位置对中速柴油发动机大端轴承性能的影响

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Elastohydrodynamic lubrication (EHL) analysis has proved to be an effective predictive tool in understanding the behavior of dynamically loaded journal bearings in internal combustion engines. The allowance of the bearing surface compliance in the analysis gives rise to more realistic predictions of bearing performance. Recently the use of such a predictive tool was extended to the lubrication of the connecting rod bearing of a medium-speed diesel engine, results of which are reported in this paper. Efforts were concentrated on the understanding of the bearing oil feed groove upon bearing behavior. The starting and finishing locations of the oil groove were varied over a wide range. It was found that the overall minimum oil film thickness was significantly reduced when the oil groove started before 45° bearing angle. The same was true if the finishing location of the groove was beyond the location of 300° bearing angle. In the oil groove region, the minimum oil film thickness occurs at the edges of the groove. Predictions correlated very well with wear patterns observed on the actual con-rod bearing after service.
机译:Elastohydrodynamic润滑(EHL)分析已被证明是理解内燃机中动态加载的轴颈轴承行为的有效预测工具。轴承表面依从性在分析中的余量产生了更现实的轴承性能预测。最近,使用这种预测工具延伸到中速柴油发动机的连杆轴承的润滑,其结果是本文报道的。努力集中在轴承行为上对轴承供油槽的理解。油槽的起始和整理位置在宽范围内变化。发现当油槽在45°轴承角度开始之前,总体最小油膜厚度显着降低。如果凹槽的精加工位置超出300°轴承角度的位置,则相同。在油槽区域中,最小的油膜厚度发生在凹槽的边缘处。预测与在服务后实际的管杆轴承上观察到的磨损图案非常好。

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