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Driveline instability of racing motorcycles in straight braking manoeuvre

机译:在直线制动机动中赛车摩托车的传动系统不稳定

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摘要

Experimental evidence shows that a self-excited vibration may appear during braking manoeuvres performed by road-racing motorcycles. It involves vertical oscillation of front and rear wheel axles as well as angular oscillation of the driveline in a frequency range between 17 and 22Hz. As a consequence, severe oscillations of the tyre-ground vertical loads can be observed, leading to a loss of grip and ultimately weakening the vehicle overall performance. Several contributions on this topic can be accounted for in the literature; however, a comprehensive description of the phenomenon has not been given yet. The present work is aimed at simulating the above vibration with a planar multibody motorcycle model, and then at analyzing its driving mechanism. Stability maps are drawn for time-invariant braking manoeuvres, and validated with respect to time domain simulations.
机译:实验证据表明,在赛车摩托车进行的制动机动期间可能出现自我激发振动。 它涉及前轮和后轮轴的垂直振荡以及在17到22Hz之间的频率范围内的驱动线的角度振荡。 因此,可以观察到轮胎地垂直载荷的严重振荡,从而导致抓地力损失,最终削弱了车辆的整体性能。 在文献中可以占本主题的几项贡献; 然而,尚未给出现象的全面描述。 目前的工作旨在使用平面多体摩托车型号模拟上述振动,然后在分析其驱动机构时。 绘制稳定性地图用于时间不变制动机动,并对时域模拟验证。

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