Lateral Force Evaluation in Vehicle’s Wheel Interaction with a Rut

I. Tsukanov, A. Lyubicheva, D. Kovalev
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引用次数: 1

Abstract

The operation of roads under modern conditions associated with high speeds and traffic density results in wear of pavement and formation of a rut. When crossing the ruts, instability can occur when relatively small steering inputs lead to large changes in the trajectory. The lateral force acting on a wheel of a car is of particular importance in the study of stability and controllability. The magnitude of this force is determined by various factors: tire stiffness, speed, change in the angle of rotation of the wheel, the geometry of the transverse profile of the rut.The objective of the study refers to the problem of determining the angles of inclination of side walls of the rut that are safe for movement at different speeds. The paper considers the interaction of a car wheel with the road surface, proposes a mathematical model for interaction of a tire with ruts, considers the angle of the wheel running on the rut wall. To describe the elastic response of a tire in contact with a rut, an elastic foundation model and a plane section method are used. The lateral force was estimated based on equations of motion of the wheel when crossing the rut. The dependences of the ratio of the lateral force to the normal load for various rut depths and angles of inclination of its walls on the angle of rotation of the wheel and the speed of the vehicle were obtained. It is shown that at a rut inclination angle exceeding five degrees, the lateral force begins to increase significantly with an increase in the angle of rotation of the wheel, as well as the speed of the vehicle, and may exceed the applied normal load. According to the condition of vehicle stability against skidding on a wet surface, limiting average angles of inclination of the side walls of the rut are estimated for various values of the vehicle speed and wheel rotation angles.
车辆车轮与车辙相互作用中的侧向力评估
在高速和交通密度高的现代条件下,道路的运行会导致路面的磨损和车辙的形成。当穿过车辙时,当相对较小的转向输入导致轨迹发生较大变化时,就会发生不稳定。作用在汽车车轮上的侧向力在研究汽车的稳定性和可控性方面具有特别重要的意义。这种力的大小是由各种因素决定的:轮胎刚度、速度、车轮转动角度的变化、车辙横向轮廓的几何形状。研究的目的是确定车辙在不同速度下安全运动的侧壁倾斜角问题。本文考虑了汽车车轮与路面的相互作用,提出了轮胎与车辙相互作用的数学模型,考虑了车轮在车辙壁上的夹角。为了描述轮胎与车辙接触时的弹性响应,采用了弹性基础模型和平面截面法。根据车轮过车辙时的运动方程,估计了车轮的侧向力。得到了不同车辙深度和车辙壁倾斜角下车辙侧力与法向载荷的比值与车轮转角和车速的关系。结果表明,当车辙倾角超过5度时,横向力随着车轮转角和车速的增加而开始显著增加,并可能超过所施加的正常载荷。根据车辆在湿路面上防滑稳定性的条件,对车速和车轮转角的不同取值估计了车辙侧壁的极限平均倾斜角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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