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Fuel economy in heavy duty diesel engines. Part 1: measurement of oil film thickness on an operating engine

机译:重型柴油发动机的燃油经济性。第1部分:正在运行的发动机上油膜厚度的测量

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摘要

Ever increasing pressure to develop engine oils to enhance vehicle fuel economy has resulted in a trend of decreasing finished fluid viscosity. Impressive fuel economy improvements have been yielded through the application of these lower viscosity fluids without compromising component wear, principally due a combination of improvements in engine design, manufacture and additive packages. However, component assemblies such as journal bearings rely on fluid film separation to function effectively. If the viscosity is reduced below a critical value, the component will no longer reside in the fluid film lubrication regimes and will inevitably operate in the regimes of contact. Without radical redesign of the assembly, or advanced lubricant formulation, this will inevitably result in catastrophic engine failure. This article describes the development of an ultrasonic system to measure film thickness in main engine bearings under firing conditions. This unobtrusive method of measuring film thickness in operating contacts has been applied to the main bearings of operating diesel engines. Preliminary measurements were taken during dynamic engine ramping to identify the thinnest operating film condition. Further film measurements were taken at this condition with the engine running on engine oils with varying bulk oil viscosity.
机译:开发发动机油以提高车辆燃油经济性的压力不断增加,导致了成品油粘度降低的趋势。通过应用这些较低粘度的流体而又不损害组件磨损的方式,取得了令人印象深刻的燃油经济性改善,这主要是由于发动机设计,制造和添加剂组的改进相结合。然而,诸如轴颈轴承之类的组件总成依靠流体膜分离来有效地起作用。如果粘度降低到临界值以下,则该组分将不再驻留在流体膜润滑方案中,并且将不可避免地在接触方案中运行。如果不对组件进行彻底的重新设计或采用先进的润滑剂配方,将不可避免地导致发动机灾难性故障。本文介绍了一种超声系统的开发,该系统可在点火条件下测量主机轴承中的薄膜厚度。这种测量操作触头膜厚的方法已经被应用到正在运行的柴油发动机的主轴承上。在动态发动机加速过程中进行了初步测量,以确定最薄的工作油膜状况。在这种条件下,在发动机运行的散装机油粘度变化的情况下,对发动机进行了进一步的薄膜测量。

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  • 来源
    《Journal of Engineering Tribology》 |2011年第6期|p.313-324|共12页
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  • 作者单位

    Lubrizol Ltd, Belper, Derby, UK;

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  • 正文语种 eng
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