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Transfer Function Analysis of Rear Multi-Link Suspension to Improve Ride Vibration and Road Noise

机译:后多挂悬架的传递函数分析,提高乘坐振动和道路噪声

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The expectation of customers on ride comfort is very high and vehicle engineers also have keen interesting to improve ride vibration and road noise. As the conventional tuning parameters for the ride vibration and road noise, vibration characteristics of tire, body structure, bushing, suspension members etc. are mainly considered. But these conventional tuning parameters are sometimes not enough due to the side effects such like handling performances and durability. Therefore, instead of these conventional design and tuning parameters, suspension geometry and alignment characteristics of suspension system are selected as the alternative parameters to compromise ride vibration, road noise and vehicle dynamic performance. In this research, multi-link type rear suspension is selected for the integrated analysis of ride vibration, road impact noise and handling performance. Transfer function, transfer force analysis of rear multi link suspension system and reaction forces variations according to the modification of geometry and compliance are analyzed for the reduction of ride vibration and road noise without the loss of handling performance, steering response and driving stability. Computer simulation and experimental approach are used to find which parameters of suspension system are so critical in the reaction forces transfer caused by road input. From these analyses, the effects of suspension geometry and compliance on ride comfort as well as on wheel alignment characteristics like Camber, Toe and lateral stiffness of suspension system are discussed.
机译:客户对乘坐舒适性的期望是非常高,车辆的工程师也有敏锐的有趣的提高乘坐振动和路面噪音。作为传统的调谐参数的行列振动和道路噪声,轮胎的振动特性,车身结构,衬套,悬挂构件等主要考虑。但是,这些传统的整定参数,有时还不够,由于副作用,像处理性能和耐用性。因此,代替这些常规设计和调节参数的,悬架系统的悬架几何结构和取向特性被选择为替代参数折衷骑振动,道路噪声和车辆的动态性能。在这项研究中,多连杆式后悬架被选择用于乘坐振动,道路冲击噪音和操纵性能的综合分析。根据几何形状和遵守的修改传递函数,后多连杆悬架系统和反作用力的变化的传输力分析进行分析用于乘坐振动和道路噪声的无处理性能,转向响应性和行驶稳定性的损耗的降低。计算机模拟和实验的方法来找到其悬挂系统的参数传递道路输入引起的反应力如此重要。从这些分析中,讨论悬架几何结构和遵守关于乘坐​​舒适性以及在诸如外倾角,前束和悬挂系统的横向刚度车轮取向特性的影响。

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