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Analysis of the Journal Bearing Friction Losses in a Heavy-Duty Diesel Engine

机译:重型柴油机轴颈轴承摩擦损失分析

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Internal combustion engines (ICE) for the use in heavy-duty trucks and buses have to fulfil demanding requirements for both vehicle efficiency as well as for emission of greenhouse gases. Beside the piston assembly the journal bearings are among the largest contributors to friction in the ICE. Through a combination of measurements and validated simulation methods the journal bearing friction losses of a state-of-the-art heavy-duty Diesel engine are investigated for a large range of real world operating conditions. To this task recently developed and extensively validated simulation methods are used together with realistic lubricant models that consider the Non-Newtonian behaviour as well as the piezoviscous effect. In addition, the potential for further friction reduction with the use of ultra-low viscosity lubricants is explored. The results reveal a potential of about 8% friction reduction in the journal bearings using a 0W20 ultra-low viscosity oil with an HTHS-viscosity (The HTHS-viscosity is defined as the dynamic viscosity of the lubricant measured at 150 ∘ C and at a shear rate of 10 6 s - 1 ) of 3.6 mPa s. For the investigated engine, HTHS-viscosity limitations are determined which indicate that the use of lubricants with further reduced HTHS-viscosity would require engine and/or journal bearing modifications to be able to maintain the high service life of the engine.
机译:用于重型卡车和公共汽车的内燃机(ICE)必须满足对车辆效率以及温室气体排放的苛刻要求。除了活塞组件外,轴颈轴承是ICE中摩擦最大的因素之一。通过测量和经过验证的模拟方法的组合,研究了在大范围的实际运行条件下,最新型重型柴油发动机的轴颈轴承摩擦损失。为此,最近开发并经过广泛验证的模拟方法与考虑非牛顿行为以及压电粘性效应的实际润滑剂模型一起使用。此外,还探索了使用超低粘度润滑剂进一步降低摩擦的潜力。结果表明,使用具有HTHS粘度的0W20超低粘度油(可将HTHS粘度定义为在150℃和200°C下测得的润滑剂的动态粘度)可使轴颈轴承的摩擦降低约8%。 10 6 s-1)的剪切速率为3.6 mPa s。对于所研究的发动机,确定了HTHS粘度极限,这表明使用具有进一步降低的HTHS粘度的润滑剂将需要对发动机和/或轴颈轴承进行修改,以保持发动机的高使用寿命。

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