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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Effect of lubricant temperature and type on spur gear efficiency in racing engine gearbox across full engine load and speed range
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Effect of lubricant temperature and type on spur gear efficiency in racing engine gearbox across full engine load and speed range

机译:在整个发动机负载和转速范围内,润滑剂温度和类型对赛车发动机变速箱中正齿轮效率的影响

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摘要

Energy losses are of great significance to the automotive and motorsports industries. Many of these losses are incurred during power transmission through the gearbox. There has been considerable research in this area; however, generally gear losses are not calculated at part load condition, nor are so-called dry sump systems considered outside of motor racing. The method developed by Anderson & Loewenthal, which considers efficiency over part-load conditions is used here to calculate geartrain losses with varying speed, load and temperature conditions in a spur gear type gearbox for motorsport application. Both oil bath (wet sump) and oil jet (dry sump) systems of lubrications are considered. The Changenet method is used to calculate the churning losses in the typical oil bath lubrication system. Seventeen different mineral and synthetic oils were evaluated. At 75kW engine output, 1200 W were lost in the dry sump gearbox whereas 1320W were lost in the wet-sump gearbox - in first gear at 10,500r/min engine speed. The oils studied showed a spread of total drive efficiency of 97.8% to 99% in the most extreme temperature case. From the observation of how efficiency and film thickness relate to operating temperatures, it is clear that tight temperature control is critical to obtain the potential benefits available from oil optimisation. The dry sump gearbox is predicted to be more efficient only above 5000r/min engine speed.
机译:能量损失对汽车和赛车行业具有重要意义。这些损失中的许多损失都是在通过变速箱进行动力传递期间发生的。在这一领域已经进行了大量研究。但是,通常不会在部分负载条件下计算齿轮损失,也不会在赛车之外考虑所谓的干式油底壳系统。由Anderson&Loewenthal开发的方法,考虑了部分负载条件下的效率,在此用于计算用于赛车运动的正齿轮型变速箱中随速度,负载和温度条件变化的齿轮系损耗。同时考虑了油浴(湿式贮槽)和喷油(干式贮槽)系统。 Changenet方法用于计算典型油浴润滑系统中的搅拌损失。评价了十七种不同的矿物油和合成油。发动机输出功率为75kW时,干式油底壳变速箱损失了1200 W,而湿式油底壳变速箱损失了1320W-在发动机转速为10,500r / min的第一档时。在最极端的温度情况下,所研究的油显示出总驱动效率的差异为97.8%至99%。通过观察效率和膜厚与工作温度之间的关系,可以清楚地看到,严格的温度控制对于获得石油优化带来的潜在利益至关重要。预计干式油底壳变速箱只有在发动机转速超过5000r / min时才会更有效率。

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