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Transmission drive rattle with thermo-elastohydrodynamic impacts: numerical and experimental investigations

机译:具有热弹性流体动力影响的变速箱驱动拨浪鼓:数值和实验研究

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The paper studies the effect of torsional fluctuations resident on the automotive transmission input shaft upon the rattle phenomenon due to engine orders, as well as transmitted torque variations from any engaged gear pair. Speed variations interrupt the orderly meshing of the idling gears, thus causing impulsive action emanating as rattle. This is a Noise, Vibration and Harshness (NVH) phenomenon of significant concern to industry. The engaged (selected) gear pair teeth are subject to moderate to high loads, thus a thermo-mixed elastohydrodynamic regime of lubrication ensues. Unlike the idle gear pairs, where lightly loaded hydrodynamic conditions prevail, the elastohydrodynamic regime of lubrication ensures reduced teeth separation effects. Both types of lubricated conjunctions abound in a model of a 7-speed transmission system. The numerical predictions agree well and complement measured performance on an engine bed - transmission rig of a front wheel drive vehicle. The paper uses a non-dimensional parameter - impulsion ratio - which relates gear dynamics to the prevailing conditions in the lubricated conjunctions, showing the critical and often conflicting role that lubricant rheology plays in the promotion or palliation of rattle. Furthermore, it objectively demarcates the boundary between low intensity rattle of frequent teeth pair separations from high intensity double-sided teeth impacts with ensuing torque reversals.
机译:本文研究了发动机变速箱发出的嘎嘎声现象,以及由于任何啮合齿轮对传递的扭矩变化对汽车变速箱输入轴上的扭矩波动产生的影响。速度变化会打乱空转齿轮的有序啮合,从而导致发出喀嗒声。这是业界非常关注的噪声,振动和苛刻(NVH)现象。啮合的(选定的)齿轮副齿承受中等至高负载,因此会产生热混合的弹性流体力学润滑状态。与空转齿轮副不同,在空转齿轮副中,轻载流体动力条件普遍存在,润滑的弹性流体动力机制可确保减少齿分离的影响。在7速传动系统的模型中,两种类型的润滑接头都比比皆是。数值预测很好地吻合并补充了发动机床(前轮驱动车辆的传动装置)上的测量性能。本文使用了一个无量纲参数-脉冲比-该参数将齿轮动力学与润滑接头中的主要条件相关联,显示了润滑剂流变学在促进或减轻拨浪鼓中所起的关键性且经常相互矛盾的作用。此外,它客观地划定了频繁发生齿对分离的低强度拨浪鼓与高强度双面牙齿冲击之间的界限,并随之产生了扭矩反转。

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