首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Tribodynamics of hydraulic actuated clutch system for engine-downsizing in heavy duty off-highway vehicles
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Tribodynamics of hydraulic actuated clutch system for engine-downsizing in heavy duty off-highway vehicles

机译:液压致动离合器系统的TRIBOMICING,用于重型卸车车辆中的发动机缩小化

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摘要

Engine downsizing is desired for modern heavy-duty vehicles to enhance fuel economy and reduce emissions. However, the smaller engines usually cannot overcome the parasitic loads during engine start-up. A new clutch system is designed to disconnect the downsized engine from the parasitic losses prior to the idling speed. A multi-scale, multi-physics model is developed to study the clutch system. Multi-body dynamics is used to study the combined translational–rotational motions of the clutch components. A micro-scale contact model is incorporated to represent the frictional characteristics of the sliding surfaces. Although the clutch is designed for dry contact operation, leakage of actuating hydraulic fluid can affect the interfacial frictional characteristics. These are integrated into the multi-body dynamic analysis through tribometric studies of partially wetted surfaces using fresh and shear-degraded lubricants. Multi-scale simulations include sensitivity analysis of key operating parameters, such as contact pressure. This multi-physics approach is not hitherto reported in the literature. The study shows the importance of adhesion in dry clutch engagement, enabling full torque capacity. The same is also noted for any leakage of significantly shear-degraded lubricant into the clutch interfaces. However, the ingression of fresh lubricant into the contact is found to reduce the clutch torque capacity.
机译:现代重型车辆需要发动机缩小化,以提高燃油经济性和减少排放。然而,较小的发动机通常不能在发动机启动期间克服寄生载量。新的离合器系统设计用于在空转速度之前断开缩小的发动机与寄生损失的连接。开发了一种多种多数的多物理模型来研究离合器系统。使用多体动力学用于研究离合器部件的组合旋转运动。结合了微尺度接触型号,以表示滑动表面的摩擦特性。尽管离合器设计用于干接触操作,但是致动液压流体的泄漏可以影响界面摩擦特性。这些通过使用新鲜和剪切降解的润滑剂的部分湿润表面的谱法研究了多体动态分析。多尺度模拟包括关键操作参数的灵敏度分析,例如接触压力。这种多物理方法不是在文献中报告的。该研究表明了干燥离合器接合中粘附性的重要性,从而实现了完全扭矩容量。对于任何显着剪切降解的润滑剂进入离合器界面,也应该注意到也是如此。然而,发现新鲜润滑剂进入接触的进入以减少离合器扭矩容量。

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