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Study of Stick-Slip Friction between Plunging Driveline

机译:急剧传动系之间的粘滑摩擦研究

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Driveline plunge mechanism dynamics has a significant contribution to the driver's perceivable transient NVH error states and to the transmission shift quality. As it accounts for the pitch or roll movements of the front powerplant and rear drive unit, the plunging joints exhibit resisting force in the fore-aft direction under various driveline torque levels. This paper tackles the difficult task of quantifying the coefficient of static friction and the coefficient of dynamic friction in a simple to use metric as it performs in the vehicle. The comparison of the dynamic friction to the static friction allows for the detection of the occurrence of stick-slip in the slip mechanism; which enables for immediate determination of the performance of the design parameters such as spline geometry, mating parts fit and finish, and lubrication. It also provides a simple format to compare a variety of designs available to the automotive design engineer.
机译:传动系统的暴力机制动态对驾驶员可感知的瞬态NVH误差状态和传输换档质量具有重要贡献。 由于它考虑了前部动力装置和后驱动单元的俯仰或滚动运动,因此在各种传动系统扭矩水平下,狭窄的接头在前后方向上呈现抵抗力。 本文应对量化静态摩擦系数和动态摩擦系数的困难任务,以便在车辆中执行易于使用的公制。 动态摩擦与静摩擦的比较允许检测滑移机构中的粘滑的发生; 这使得能够立即确定设计参数的性能,例如花键几何形状,配合部件配合和润滑。 它还提供了一种简单的格式,可以比较汽车设计工程师可用的各种设计。

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