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Rollover threshold investigation of a heavy-duty vehicle during cornering based on multi-body dynamics

机译:基于多体动力学的重型汽车转弯翻车阈值研究

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摘要

The objective of this article is to investigate the rollover threshold of a heavy-duty vehicle during cornering. Based onthe multi-body dynamics theory, a high-fidelity model is established, which takes account of the chassis flexibility, the suspension nonlinear characteristics, the tire handling model, and Ackermann steering strategy. Furthermore, by the inversefast Fourier transform method, a three-dimensional stochastic road in space domain is employed in the model toimprove the accuracy. A full-size heavy-duty vehicle test was carried out to validate the model. Based on the validatedmodel, the rollover stability and rollover threshold of the heavy-duty vehicle during cornering are investigated. Lateralacceleration, yaw rate, roll angle, and vehicle torsional deflection in different cornering conditions are analyzed. The rollover threshold is summarized by the response surface methodology for the safe cornering purpose. The result showsthe practical meaning of improving transportation safety of heavy-duty vehicles and also provides useful insights fordeveloping the rollover warning system.
机译:本文的目的是研究重型车辆转弯时的侧翻阈值。基于多体动力学理论,建立了一个高保真模型,该模型考虑了底盘柔韧性,悬架非线性特性,轮胎操纵模型和阿克曼转向策略。此外,通过逆快速傅立叶变换方法,在模型中采用了空间域中的三维随机道路,以提高精度。进行了全尺寸重型车辆测试以验证该模型。基于验证的模型,研究了重型车辆转弯时的侧翻稳定性和侧翻阈值。分析了在不同转弯条件下的横向加速度,横摆率,侧倾角和车辆扭转挠度。出于安全转弯的目的,响应面方法总结了翻转阈值。研究结果表明了提高重型车辆运输安全性的实际意义,也为开发侧翻预警系统提供了有益的见识。

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