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Consideration of Suspension Mechanism with High Cornering Performance for a Formula Car

机译:用于配方轿车高转弯性能的悬架机制

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In the cornering performance of a formula car, turning is performed at a considerably high level. However, few studies have investigated the control of the camber angle. Therefore, a mechanism that swings to the negative camber side of the suspension in cornering was examined in the present study. A swinging suspension member structure was assumed when a lateral force acted on the tires, and the momentary rotation center of the swing suspension member was controlled so that the direction of the swing would be to the negative camber side. As a result, compliance of the negative camber was achieved. The layout of a preferable mechanism was first determined by geometrical analysis. The negative camber angle obtained with this mechanism changes according to the length of the link for the fixation of the swing suspension member, the installation position, and the angle. The specifications for achieving a proper compliance negative camber were then clarified. Next, the fastest running simulation of the circuit course was performed according to the full-vehicle model, and the effect on the critical cornering performance of the compliance negative camber was clarified.
机译:在配方轿厢的转弯性能中,转弯以相当高的水平进行。然而,很少有研究已经调查了倾角的控制。因此,在本研究中检查了一种摇摆到悬浮液中悬浮液的负弧形侧的机制。当控制在轮胎上的横向力和摆动悬架构件的瞬时旋转中心被控制时,假设摆动悬架构件结构,使得摆动的方向将是负弯侧。结果,实现了负面露角的遵守情况。首先通过几何分析确定优选机制的布局。利用该机构获得的负口角度根据用于固定摆动悬架构件,安装位置和角度的链路的长度而变化。然后澄清实现适当的合规性负弧形的规范。接下来,根据全车型进行电路过程的最快运行模拟,并阐明了对符合性负弯曲的临界转换性能的影响。

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