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Analysis of the Double Wishbone front suspension system

机译:双叉骨前悬架系统分析

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Suspension system in a car connects the chassis to its wheels and it comprises of a system of springs, dampers and linkages. Independent suspension systems typically offer better handling and ride quality. This is because of the lower un-sprung weight and the capability of each wheel in addressing the road interaction independently without affected by the road interaction of the other wheels on the vehicle. In this paper, we have analyzed the Double Wishbone suspension for static conditions and studied the wheel travel over a bump and optimized the design to improve the ride quality by keeping camber and toe and under desired limitations. The suspension system of a vehicle needs to be durable, light weight, efficient and structurally stable. The paper mainly focuses on the static structural analysis of the vehicle under self-weight and the analysis of the wheel travel of the vehicle experiencing a bounce and rebound due to a bump and thereby deducing a safe limit by addressing the limitations in toe and camber angles.
机译:汽车中的悬架系统将底盘连接至其车轮,并且由弹簧,减震器和连杆系统组成。独立的悬架系统通常可提供更好的操控性和乘坐质量。这是因为较低的簧下重量以及每个车轮独立处理道路相互作用的能力,而不受车辆上其他车轮的道路相互作用的影响。在本文中,我们分析了双叉骨悬架在静态条件下的性能,并研究了车轮在颠簸情况下的行程,并对设计进行了优化,以通过保持外倾角和前束角并在期望的限制下提高行驶质量。车辆的悬架系统需要耐用,重量轻,有效且结构稳定。本文主要针对自重作用下的车辆静态结构分析以及由于颠簸而发生反弹和反弹的车辆的车轮行程分析,从而通过解决脚趾和外倾角的限制来推导出安全极限。 。

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