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Synthesis and analysis of the five-link rear suspension system used in automobiles

机译:汽车五连杆后悬架系统的综合与分析

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The paper deals with the optimum kinematic synthesis and analysis of the five-link independent suspension system (also known as "multilink" suspension, mechanism commonly symbolized 5S-5S). The synthesis goal is fulfilling a minimum variation of the wheel track, toe angle and camber angle during jounce and rebound of the wheel. Two solutions obtained by synthesis are analyzed and compared to an existing solution, and the displacement, velocity and acceleration of the wheel carrier relative to the car body are determined, together with the variation of the momentary screw axis and the rear axle roll-center height. Both the kinematic synthesis and the analysis are performed in a simplified, easy to program manner, using a fictitious mechanism that has all the links dismounted from their joints.
机译:本文研究了五连杆独立悬挂系统(也称为“多连杆”悬挂,通常以5S-5S表示的机构)的最佳运动学综合和分析。综合目标是在车轮的颠簸和回弹期间实现车轮轨迹,前束角和外倾角的最小变化。分析了两种通过综合获得的解决方案,并将它们与现有解决方案进行比较,确定了轮架相对于车身的位移,速度和加速度,以及瞬时丝杠轴和后桥侧倾中心高度的变化。运动合成和分析都以一种虚拟的,简化的,易于编程的方式进行,使用了一种虚构的机制,该机制将所有链节从其关节上拆下来。

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