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Handling Analysis of a Vehicle Fitted with Roll-Plane Hydraulically Interconnected Suspension Using Motion-Mode Energy Method

机译:使用运动模式能量法处理辊平液压互连悬架的车辆的处理分析

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This paper employs the motion-mode energy method (MEM) to investigate the effects of a roll-plane hydraulically interconnected suspension (HIS) system on vehicle body-wheel motion-mode energy distribution. A roll-plane HIS system can directly provide stiffness and damping to vehicle roll motion-mode, in addition to spring and shock absorbers in each wheel station. A four degree-of-freedom (DOF) roll-plane half-car model is employed for this study, which contains four body-wheel motion-modes, including body bounce mode, body roll mode, wheel bounce mode and wheel roll mode. For a half-car model, its dynamic energy contained in the relative motions between its body and wheels is a sum of the energy of these four motion-modes. Numerical examples and full-car experiments are used to illustrate the concept of the effects of HIS on motion-mode energy distribution. The obtained simulation results show that the installed HIS system is able to reduce the energy level in the body-dominated roll motion-mode, and it has negligible effect in the bounce mode. Experimental results match the simulation results well.
机译:本文采用运动模式能量法(MEM)来研究辊平液压互连悬架(HIS)系统对车身车轮运动模式能量分布的影响。除了每个车站的弹簧和减震器外,他的系统可以直接向车辆辊运动模式直接提供刚度和阻尼。本研究采用了四个自由度(DOF)滚动平面半汽车模型,该研究包含四种车身运动模式,包括身体反弹模式,体辊模式,车轮反弹模式和轮卷模式。对于半汽车模型,其主体和车轮之间的相对运动中包含的动态能量是这四种运动模式的能量之和。数值例子和全车实验用于说明他对运动模式能量分布的影响的概念。所获得的仿真结果表明,安装的系统能够降低体主导辊运动模式中的能级,并且在弹跳模式下效果可忽略不计。实验结果与仿真结果匹配良好。

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