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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Ride Comfort Analysis Considering Suspension Friction with Series Rigidity
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Ride Comfort Analysis Considering Suspension Friction with Series Rigidity

机译:考虑串联刚度悬架摩擦的平顺性分析

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摘要

A dynamics model considering series rigidity was constructed to examine suspension friction, which has a major effect on ride comfort on paved roads. The friction characteristics of the bushings, ball joints, and shock absorbers are expressed with series elastic elements such as arm rigidity and the spring constant of the oil seals. It was confirmed that the calculated values for the overall spring constant and damping coefficient of the suspension virtually matched values measured in a 4-post shaker test. In addition, the results of analysis using this dynamics model confirmed that the degree of friction affects both the damping coefficient and the spring constant of the suspension, especially when the series rigidity is high. Also highly rigid friction has an adverse effect on sprung motion in frequency ranges above 15 Hz. After suspension enhancements were adopted based on these findings, 4-post shaker tests confirmed that sprung motion above 2 Hz improved.
机译:建立了考虑串联刚度的动力学模型,以研究悬架摩擦,这对铺装道路的乘坐舒适性有重要影响。衬套,球形接头和减震器的摩擦特性用一系列弹性元件表示,例如臂刚度和油封的弹簧常数。可以确定的是,悬架的总弹簧常数和阻尼系数的计算值实际上与在4杆振动试验中测得的值相匹配。此外,使用该动力学模型的分析结果证实,摩擦程度会影响悬架的阻尼系数和弹簧常数,特别是当串联刚度较高时。在15 Hz以上的频率范围内,高刚性摩擦也会对弹簧运动产生不利影响。在基于这些发现采用悬架增强后,4振动筛测试证实了2 Hz以上的弹簧运动得到改善。

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