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Influence of Chassis Characteristics on Sustained Roll, Heave and Yaw Oscillations in Dynamic Rollover Testing

机译:机箱特性对动态翻转测试中持续滚动,升降和偏航振荡的影响

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In dynamic rollover tests many vehicles experience sustained body roll oscillations during a portion of road edge recovery maneuver, in which constant steering angle is maintained. In this paper, qualitative explanation of this phenomenon is given and it is analyzed using simplified models. It is found that the primary root cause of these oscillations is coupling occurring between the vehicle roll, heave and subsequently yaw modes resulting from suspension jacking forces. These forces cause vertical (heave) motions of vehicle body, which in turn affect tire normal and subsequently lateral forces, influencing yaw response of vehicle. As a result, sustained roll, heave and yaw oscillations occur during essentially a steady-state portion of maneuver. Analysis and simulations are used to assess the influence of several chassis characteristics on the self-excited oscillations. The results provide important insights, which may influence suspension design.
机译:在动态滚动测试中,许多车辆在路线边缘恢复机动的一部分期间经历持续的体辊振荡,其中保持恒定的转向角度。在本文中,给出了这种现象的定性解释,并使用简化模型分析了这种现象。发现这些振荡的主要根本原因是在车辆辊,升降和随后由悬架起重力产生的偏航模式之间发生耦合。这些力引起车身的垂直(升降)运动,这反过来影响轮胎正常和随后的横向力,影响车辆的偏航反应。结果,在基本上发生机动的稳态部分期间发生持续辊,升降和偏航振动。分析和仿真用于评估几个底盘特性对自我激发振荡的影响。结果提供了重要的见解,这可能影响悬浮设计。

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