首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Improving the durability of automobile suspension systems by optimizing the elastomeric bushing compliance
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Improving the durability of automobile suspension systems by optimizing the elastomeric bushing compliance

机译:通过优化弹性衬套的兼容性来提高汽车悬架系统的耐用性

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The durability of the suspension system is a critical component in the development of a vehicle because it is consistently and directly exposed to dynamic loads while the vehicle is in motion. In most cases, attempts are made to improve the durability of a vehicle suspension system by changing the shapes of its parts and components. However, the authors propose to improve the overall durability performance of a vehicle suspension system by modifying the compliance of the elastomeric bushings, which pivotally connect the lower control arm to the vehicle frame. It is relatively easy and cost effective to change the compliance of the bushing components because they are made of rubber or elastomeric materials. The following procedure was used for the present analysis. Firstly, dynamic loads were obtained based on a multi-body dynamic analysis while the vehicle was driven on a virtual proving ground test. Secondly, the stress distribution of the vehicle suspension system was calculated using finite element analysis to obtain an optimal combination of the elastomeric bushing compliance and provide the maximum improvement to the stress distribution on the basis of a robust design approach. Finally, the durability performance of each component in the vehicle suspension system was evaluated using quasi-static durability analyses. The fatigue life of the optimal model was improved by 36-39 per cent when the knuckle and lower control arm passed over bumps, and by 30-41 per cent when they passed over potholes. The proposed optimal design process to improve the elastomeric bushing compliance made it easy to evaluate and improve the durability performance of the vehicle suspension system in the initial stages of the vehicle development process.
机译:悬架系统的耐用性是车辆开发中的关键组成部分,因为在车辆行驶过程中,悬架系统始终如一地直接承受动态载荷。在大多数情况下,人们试图通过改变其部件的形状来改善车辆悬架系统的耐久性。然而,作者提出通过改变弹性衬套的柔度来改善车辆悬架系统的整体耐久性,该弹性衬套将下控制臂枢转地连接至车架。改变衬套组件的柔度相对容易且具有成本效益,因为它们是由橡胶或弹性材料制成的。以下过程用于本分析。首先,在虚拟试验场测试中驾驶车辆时,基于多体动力学分析获得了动态载荷。其次,使用有限元分析计算车辆悬架系统的应力分布,以获得弹性衬套柔顺性的最佳组合,并在稳健的设计方法基础上最大程度地改善应力分布。最后,使用准静态耐久性分析评估了车辆悬架系统中每个组件的耐久性能。当转向节和下控制臂越过颠簸时,最佳模型的疲劳寿命提高了36-39%,而当它们越过坑洼时,其疲劳寿命提高了30-41%。提出的用于改善弹性体衬套柔韧性的最佳设计过程使在车辆开发过程的初始阶段易于评估和改善车辆悬架系统的耐久性能。

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