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Model Based Design of a Split Carrier Wheel Suspension for Light-weight Vehicles

机译:基于模型的轻型车辆分体式悬架悬挂设计

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摘要

Applying light-weight construction methods to the design of future electric vehicles results in weight reduction of both the vehicle body and the chassis. However, the potential for percental reduction of the sprung mass is larger compared to that of the unsprung mass. Consequently, unfavorable consequences on the compromise, which always needs to be found between road contact and road holding, can arise. This requires additional arrangements in order to reach the performance of a state-of-the-art conventional vehicle. This paper presents a possible design solution. The wheel carrier is split into two parts, thus enabling to tune the frequency response correspondingly to reference vehicles. Besides the technical solution the Modelica modeling of the proposed suspension system as well as a vehicle dynamics and ride comfort assessment are presented.
机译:在未来的电动汽车的设计中采用轻量化的施工方法可以减轻车身和底盘的重量。但是,与未簧载质量相比,簧载质量百分比减小的可能性更大。因此,可能会导致折衷的不利后果,这总是需要在道路接触和道路保持之间找到。为了达到最新技术水平的传统车辆的性能,这需要附加的布置。本文提出了一种可能的设计解决方案。轮架分为两部分,因此可以相应地调整参考车辆的频率响应。除了技术解决方案之外,还提出了所提出的悬架系统的Modelica建模以及车辆动力学和乘坐舒适性评估。

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