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Tire Forces and Moments and On-Road Lateral Stability of Articulated Steer Vehicles

机译:轮胎力量和时刻和铰接式转向车辆的路上横向稳定性

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The on-road lateral stability of an articulated steer vehicle is investigated for both small and high deviations. First, for small deviations, a linear model of the vehicle is devised and analyzed. This planar model is generated based on some simplifying assumptions. For instance, the equations describing the tire forces and moments are linearized, and the tire rolling resistance is neglected. A linear stability analysis of the straight line motion of the vehicle with constant forward speed is conducted by using this simplified model for different values of the torsional stiffness and damping at the articulation joint. To investigate the lateral stability of the vehicle at higher deviations, the motion of a virtual prototype of the vehicle in ADAMS/View is simulated for different conditions. Finally, the results from the simulations and the linear stability analyses are compared. These comparisons show that the tire rolling resistance can change effectively the results predicted by the linear analysis. In addition, at higher deviations, the effects of the nonlinearity of the tire aligning moment behavior appear and thus, the dynamic behavior is significantly different from that predicted by the linear analysis.
机译:研究了铰接式转向车辆的路上横向稳定性,用于小和高偏差。首先,对于小偏差,设计了车辆的线性模型和分析。该平面模型是基于一些简化假设而生成的。例如,描述轮胎力和时刻的等式是线性化的,并且忽略了轮胎滚动阻力。通过使用这种简化的模型来进行恒定前进速度的车辆直线运动的线性稳定性分析,用于不同的扭转刚度和铰接接头阻尼的模型。为了研究车辆在更高的偏差下的横向稳定性,在亚当/视图中的虚拟原型的运动是针对不同条件的模拟。最后,比较了模拟的结果和线性稳定性分析。这些比较表明,轮胎滚动阻力可以有效地改变线性分析所预测的结果。另外,在更高的偏差下,轮胎对准力矩行为的非线性的影响出现,因此,动态行为与线性分析的预测显着不同。

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