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K&C suspension parameters stability by production tolerances

机译:K&C悬架参数的稳定性取决于生产公差

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This paper considers a modern approach of K&C parameters stability analysis using the suspension MBS model of a short-wheelbase electric vehicle. According to the results of the work, even minor errors in suspension hardpoints positioning when overlaying can greatly affect the K&C parameters of car suspensions. Using MBS models, quasi-static K&C events have been simulated. In the same way the dependences of the suspension K&C parameters are numerically determined. Moreover, these calculations were made with different hardpoints positions for joints of wishbones fastening on a frame, and joint of a steering rod with a steering rack. The influence of suspension hardpoints displacement on the K&C parameters of the vehicle was estimated. As a result, recommendations are made for production positioning tolerances of suspension hardpoints in order to avoid deterioration of K&C parameters. Basically, the appearance of inaccuracies in the positioning of hardpoints leads to critical changes in anti-dive, anti-lift, kingpin inclination angle, bump camber and bump steer parameters.
机译:本文考虑了使用短轴距电动汽车的悬架MBS模型进行K&C参数稳定性分析的现代方法。根据工作结果,即使在重叠时,悬架硬点位置的微小误差也会极大地影响汽车悬架的K&C参数。使用MBS模型,已经模拟了准静态K&C事件。以相同的方式,通过数值确定悬架K&C参数的依赖性。而且,这些计算是用不同的硬点位置进行的,这些位置用于将叉臂固定在车架上以及转向杆与转向齿条的连接处。估计了悬架硬点位移对车辆K&C参数的影响。因此,建议了悬架硬点的生产定位公差,以避免K&C参数变差。基本上,硬点定位的出现会导致防俯冲,反升力,主销倾斜角,颠簸外倾角和颠簸转向参数的重大变化。

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