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A modified oil lubrication system with flow control to reduce crankshaft bearing friction in a litre 4 cylinder diesel engine

机译:一种改进的机油润滑系统,具有流量控制功能,可减少4升柴油发动机的曲轴轴承摩擦

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摘要

The oil distribution system of an automotive light duty engine typically has an oil pump mechanically driven through the front-endancillaries-drive or directly off the crankshaft. Delivery pressure is regulated by a relief valve to provide an oil gallery pressure of typically 3 to 4 bar absolute at fully-warm engine running conditions. Electrification of the oil pump drive is one way to decouple pump delivery from engine speed, but this does not alter the flow distribution between parts of the engine requiring lubrication. Here, the behaviour and benefits of a system with an electrically driven, fixed displacement pump and a distributor providing control over flow to crankshaft main bearings and big end bearings is examined. The aim has been to demonstrate that by controlling flow to these bearings, without changing flow to other parts of the engine, significant reductions in engine friction can be achieved. The study has been conducted on a 1.5litre, 4 cylinder turbocharged diesel engine. By reducing the feed pressure to the bearings from a baseline pressure of 3bar absolute to 1.5 bar absolute, reductions in engine rubbing friction mean effective pressure of up to 14% has been achieved at light load. Similar reductions in friction were recorded across a speed range of 1000-2000 rev/min and net indicated mean effective pressures up to 3.5 bar. The ranges were conservatively limited to protect against bearing damage. The paper reports details of the oil system modifications and the test results. The fuel economy benefit due solely to the friction reduction, not including any benefit from a reduction in oil pump work, is around 1½ % over the New European Drive Cycle (NEDC). The reduction in friction is demonstrably significant and represents an area with great potential to improve engine efficiency.
机译:汽车轻型发动机的油分配系统通常具有一个油泵,该油泵通过前端辅助部件驱动或直接从曲轴上机械地驱动。排放压力由溢流阀调节,以在发动机完全暖机的情况下提供通常3至4 bar绝对的油道压力。油泵驱动器的电动化是将泵的输出与发动机转速分离的一种方法,但这不会改变发动机中需要润滑的零件之间的流量分配。在此,研究了带有电动固定排量泵和分配器的系统的性能和优点,该分配器可控制到曲轴主轴承和大端轴承的流量。目的是证明通过控制流向这些轴承的流量而不改变流向发动机其他部分的流量,可以显着降低发动机的摩擦力。该研究是在1.5升4缸涡轮增压柴油发动机上进行的。通过将轴承的进给压力从3bar绝对值的基线压力降低到1.5bar绝对值,在轻载条件下已将发动机摩擦摩擦力的平均有效压力降低了14%。在1000-2000转/分钟的速度范围内记录到类似的摩擦减小,并且净指示的平均有效压力高达3.5 bar。保守地限制范围以防止轴承损坏。该文件报告了机油系统修改和测试结果的详细信息。与新欧洲行驶周期(NEDC)相比,仅由于减少摩擦而获得的燃油经济性收益就不包括因减少油泵工作而获得的任何收益,约为1.5%。摩擦的减少是明显的,并且代表了一个具有提高发动机效率的巨大潜力的领域。

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