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Friction Forces at the Wheel's Contact with the Ground in a Turning Vehicle

机译:车轮在车辆中的地面接触的摩擦力

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Tangential ground reactions are friction forces in their essence. Problems in the description of the frictional contact of the wheel with the ground arise during the curvilinear motion of a vehicle. There is a force and friction torque during rotational relative slip. The single physical essence of the friction force and the moment of friction determine their mutual interconnection. The authors of the article have developed a new mathematical model of the formation of forces in contact with the ground when a vehicle makes a turn. This model is based on the theory of friction for plane-parallel relative slip. The friction force and the frictional moment are integral functions of the coordinates of the instantaneous center of slip. Changing the limits of integration allowed us to take into account the shape and size of the contact. The introduction of normal pressure into the integral made it possible to take into account any law of its change. The use of different friction coefficients in the longitudinal and transverse directions made it possible to take into account the anisotropic properties of the contact. Variable friction coefficients allowed us to take into account the elastic properties of the wheel and the ground.
机译:切向地面反应是其本质的摩擦力。在车辆的曲线运动期间,在车轮的摩擦接触的描述中存在问题。旋转相对滑动期间存在力和摩擦扭矩。摩擦力的单一物理本质和摩擦的瞬间决定了它们的相互互连。该物品的作者已经开发了一种新的数学模型,当车辆转弯时,与地面接触的力的形成。该模型基于对平面平行相对滑动的摩擦理论。摩擦力和摩擦力矩是瞬时滑动中心的坐标的整体功能。改变集成的限制使我们考虑到联系人的形状和大小。将正常压力引入整数使得可能考虑到其变化的任何法律。在纵向和横向方向上使用不同的摩擦系数使得可以考虑接触的各向异性特性。可变摩擦系数允许我们考虑车轮和地面的弹性特性。

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