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Introducing lightweight design early in the suspension design process: A design framework

机译:在悬挂设计过程中提前推出轻质设计:设计框架

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Current lightweight design of suspension is mainly focused on the component design phase. However, if it is desired to further reduce the weight while the lightweight design of the component reaches the limit, it is necessary to consider the lightweight design in the early stage, for example, the layout design phase. This work proposes a design framework for conducting the lightweight design in the layout design stage of suspension system. A case study of the design of vehicle height adjustment system (VHAS) for electric-wheel vehicles is given to illustrate the use of this framework. The obtained design results are compared with four types of conventional layouts. The comparison results prove the effectiveness of this framework and reveal a trade-off between the load carried by each component and the adjustment height performance. Thus, the impacts of load acting on VHAS and required adjustment height on the layout parameters are explored. We find that required adjustment height has a considerable impact on the layout parameters, whereas load acting on VHAS causes a slight effect. Finally, a figure helping researchers conduct the lightweight design of VHAS is offered. This work might provide an insight for making a breakthrough in current suspension lightweight design. (c) 2020 Elsevier Ltd. All rights reserved.
机译:目前的轻质设计悬架主要集中在组件设计阶段。然而,如果希望进一步减轻重量而在组件的轻质设计达到极限的同时,则需要考虑早期阶段的轻质设计,例如布局设计阶段。这项工作提出了一种用于在悬架系统的布局设计阶段进行轻质设计的设计框架。给出了车轮车辆车辆高度调节系统(VHAs)设计的案例研究说明了该框架的使用。将获得的设计结果与四种类型的常规布局进行比较。比较结果证明了该框架的有效性,并揭示了每个部件承载的负载与调整高度性能之间的权衡。因此,探讨了在布局参数上作用在VHA上和所需调整高度的负荷的影响。我们发现所需的调整高度对布局参数具有相当大的影响,而作用在VHA上的负载导致略有效果。最后,提供了一个数字,帮助研究人员进行VHA的轻量级设计。这项工作可能会对当前悬架轻质设计进行突破,提供了洞察力。 (c)2020 elestvier有限公司保留所有权利。

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