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Performance Improvement of Oil Pump of a Passenger Car Diesel Engine to Enable Use of Low Viscous Oil and Operate at High Thermal Levels

机译:改善乘用车柴油机油泵的性能,使其能够使用低粘度机油并在高热量水平下运行

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摘要

Emerging trend in the automotive industry all around the world is to develop vehicles to consume less fuel and to meet stringent emission norms by using engines of higher power to weight ratio and higher thermal efficiency. These advanced technology engines designed for high power output will use low viscous oil to reduce factional losses and will operate at elevated temperature levels. Hence, the various auxiliaries and parts of these engines should be adaptable for the use of low viscous oil and should withstand higher temperatures. Oil pump is one such auxiliary which will be subjected to work with low viscous oil at higher temperatures levels. The oil pump taken for study and design improvement is an internal gear type positive displacement oil pump, used in a passenger car diesel engine. The un-meshing of the gears causes the inflow and meshing causes the outflow of lubricating oil. This process occurs continuously for providing a smooth pumping action. The oil pump designed for higher viscous oil will exhibit low performance when low viscous oil is used. The performance of these pumps will further go down at the elevated thermal levels of engine. The parameters selected to study this effect on oil pump performance are i) Clearances between the moving elements and the housing, ii) Passages for flow of oil inside the pump and from the pump to the engine. Each element was modified and the pump with the modifications-separately and in combinations-was tested for flow and pressure characteristics. From the experimental results, it was observed that the Oil flow rate improved around 15% for the given pressure specifications with the modification of the design parameters. In addition to the flow improvement the power consumption by the oil pump decreased by more than 15%.
机译:全世界汽车工业的新兴趋势是,通过使用具有更高功率重量比和更高热效率的发动机来开发燃料消耗更少,满足严格的排放标准的汽车。这些专为高功率输出而设计的先进技术发动机将使用低粘度机油减少派生损失,并在高温下运行。因此,这些发动机的各种辅助设备和零件应适用于使用低粘度油,并应承受较高的温度。油泵就是这样一种辅助设备,可以在较高温度下使用低粘度油进行工作。用于研究和设计改进的油泵是内齿轮式容积泵,用于乘用车柴油发动机。齿轮的脱啮合导致流入,而啮合导致润滑油流出。该过程连续进行以提供平稳的泵送作用。当使用低粘度油时,为高粘度油设计的油泵将表现出较低的性能。这些泵的性能将随着发动机的高温而进一步下降。选择来研究这种对油泵性能的影响的参数是:i)运动元件与壳体之间的间隙; ii)泵内以及从泵到发动机的油流通道。对每个元件进行了修改,并对经过修改的泵(分别和组合使用)进行了流量和压力特性测试。从实验结果可以看出,在给定压力规格的情况下,通过更改设计参数,油流量可提高约15%。除了改善流量外,油泵的能耗降低了15%以上。

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