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Investigating the Potential to Reduce Crankshaft Main Bearing Friction During Engine Warm-up by Raising Oil Feed Temperature

机译:通过提高油进给温度,研究发动机预热过程中减少曲轴主轴承摩擦的潜力

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Reducing friction in crankshaft bearings during cold engine operation by heating the oil supply to the main gallery has been investigated through experimental investigations and computational modelling. The experimental work was undertaken on a 2.4l DI diesel engine set up with an external heat source to supply hot oil to the gallery. The aim was to raise the film temperature in the main bearings early in the warm up, producing a reduction in oil viscosity and through this, a reduction in friction losses. The effectiveness of this approach depends on the management of heat losses from the oil. Heat transfer along the oil pathway to the bearings, and within the bearings to the journals and shells, reduces the benefit of the upstream heating. Results show that step increases in temperature produced at the gallery inlet can be maintained along the pathway to the bearing inlets, but heat transfer from the oil film in the bearings outwards through the bearing shells and inwards to the bearing journal greatly reduces the benefit. Simulations show that insulating the film from both the bearing shells and journal is necessary to realize the potential of pre-heating the oil.
机译:通过实验研究和计算建模,通过加热到主画廊的冷发动机运转期间减少曲轴轴承的摩擦。在2.4L DI柴油发动机上进行实验工作,与外部热源设置为向画廊提供热油。目的是早期将薄膜温度提高到暖起来的轴承中,产生油粘度的降低,通过这一点,减少摩擦损失。这种方法的有效性取决于来自油的热损失的管理。沿着油路传热到轴承,并在轴承内部到轴颈和壳,减少了上游加热的益处。结果表明,在轴承入口的路径上可以保持在画廊入口处产生的温度的步骤增加,但是通过轴承壳向外的轴承中的轴承中的油膜热传递大大降低了轴承轴颈的效果。模拟表明,从轴承壳和轴颈中绝缘膜是实现预热油的潜力所必需的。

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