基于横向四自由度动力学模型的非线性悬架对客车侧倾稳定性的影响

Tran Huu Nhan, Pham Ngoc Dai
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引用次数: 0

摘要

基于四自由度(4-DOF)横向动力学模型,分析了空气弹簧和非线性非对称(NA)减振器非线性悬架系统与线性悬架系统的对比影响。横向动力模型考虑了防侧倾杆、侧倾中心位置和路面瞬态激励对侧倾稳定性的影响。悬架系统的特性、侧倾中心的位置、路面激励载荷都对车辆侧倾稳定性起着非常重要的决定作用。非线性悬架的最大动侧倾角始终小于线性悬架。在路面激励下,其最大动态侧翻稳定性指标与速度有较强的相关性,在整个速度域中比线性悬架平均低27%左右。然而,非线性悬架系统的绝对加速度最大值总是较大的。
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INFLUENCES OF NONLINEAR SUSPENSION ON THE BUS’S ROLL STABILITY BY A LATERAL DYNAMIC 4-DOF MODEL
The influences of nonlinear suspension system with air spring and nonlinear asymmetrical (NA) absorber in comparison with a linear suspension is analyzed based on a lateral dynamic four degrees of freedom (4-DOF) model. The lateral dynamic model considers the effects of anti-roll bars, the roll center position, and the transient excitation of the road on the roll stability performance. The characteristics of the suspension system, the position of the roll center, the road excitation load all play very important roles in determining the roll stability of the vehicle. The maximum dynamic roll angle with nonlinear suspension is always smaller than that with linear suspension.  The maximum dynamic rollover stability index is strongly dependent on the velocity and about 27% on average lower than that of linear suspension in the whole velocity domain, subjected under road excitation. However, the maximum of absolute acceleration is always larger with the nonlinear suspension system.
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来源期刊
Journal of Applied Engineering Science
Journal of Applied Engineering Science Engineering-Engineering (all)
CiteScore
2.00
自引率
0.00%
发文量
122
审稿时长
12 weeks
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