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Influence of Clutch Output Shaft Inertia and Stiffness on the Performance of the Wet Clutch

机译:离合器输出轴惯性和刚度对湿式离合器性能的影响

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摘要

Being a part of the complex mass, spring, and damper system in a driveline, the choice of design factors such as output shaft stiffness and inertia of a wet clutch system can influence its performance. The effects of these parameters were experimentally evaluated. Widely used commercial paper-based friction plates with standard steel reaction plates were tested with four different stiffness and inertia combinations in a recently developed wet clutch test rig. A low inertia system in general showed a faster degradation and shorter clutch life for high torsional oscillation. In addition, the system became more shudder sensitive for lower natural frequency in the case of a less stiff system. The less stiff output shaft with low inertia showed the highest shudder tendency among the four conditions. The differences in performance for different output shaft conditions were noticeable for numerous clutch engagements or a degraded system. The effect of different shaft design conditions was also illuminated in the topographical analysis of the separators' surfaces and morphological study of the frictional surfaces. This study revealed the influence of both inertia and stiffness not only on shudder sensitivity of the system but on the clutch frictional performance as well as the overall clutch life.
机译:作为传动系统中复杂的质量,弹簧和减震器系统的一部分,选择设计因素(例如输出轴刚度和湿式离合器系统的惯性)会影响其性能。这些参数的影响进行了实验评估。在最近开发的湿式离合器试验台中,使用四种不同的刚度和惯性组合对广泛使用的带有标准钢反应板的商用纸基摩擦板进行了测试。通常,低惯性系统表现出更快的退化,而离合器的寿命较短,从而产生了高扭转振动。此外,在刚性较小的情况下,系统对于较低的固有频率也更加颤抖。在四个条件下,具有较低惯性的较小刚性输出轴显示出最高的抖动趋势。对于许多离合器接合或性能下降的系统,在不同输出轴条件下的性能差异非常明显。分离器表面的形貌分析和摩擦表面的形态研究也阐明了不同轴设计条件的影响。这项研究揭示了惯性和刚度不仅影响系统的颤抖灵敏度,而且影响离合器的摩擦性能以及离合器的整体寿命。

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