轮式车辆空间转向机构的数学建模

S. Chernenko, E. Klimov, A. Chernysh, V. Shapko, Olexandr Kharkov
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引用次数: 2

摘要

转向连杆机构和转向传动比决定了车辆行驶时方向盘的转向值和转向角比、转向力。由于实车的主销具有组合斜率,梯形转向机构是一个四杆空间机构,在旋转过程中,所有的点都进行三维旋转。提出了一种空间转向连杆的数学模型,可以计算全转向角范围内的转向角及其转向连杆比。与平面模型相比,空间模型具有更高的计算精度。结果表明,可以采用简单的平面模型,以足够的精度分析方向盘转动的运动学。当采用平面模型时,计算梯形转向机构的传动比的误差率高达35%。为了计算转向的动力参数,如方向盘上的作用力和方向盘的总转向阻力力矩,采用空间模型更为合适,该模型较为复杂,但精度较高。在Creo软件中进行三维建模的结果证实了计算的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical Modeling of the Spatial Steering Linkage of a Wheeled Vehicle
The value and steer angle ratio, steering effort of the steerable wheels while operating the vehicle are determined by the steering linkage and steering drive ratio. Since the kingpins of the real vehicle have a combined slope, the trapezoidal steering linkage is a four-bar spatial mechanism, all points of which are rotated in three dimentions during rotation. The paper proposes a mathematical model of the spatial steering linkage, which allows to calculate the steer angles and its steering linkage ratio in the full range of steer angles. The spatial model provides a higher accuracy of calculations comparing with the flat model. It is proved that it is permissible to use a flat model, which is simpler, to analyze the kinematics of steerable wheel rotation with sufficient accuracy. When using a flat model, the calculation of trapezoidal steering mechanism gear ratios the fallibility is up to 35%. To calculate the power parameters of the steering, such as the effort on the steerable wheel and the total steering resistance torque of the steerable wheels, it is more appropriate to use a spatial model that is more complex but it provides high accuracy. The accuracy of the calculations is confirmed by the results of 3D modeling in Creo software.
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