The influence of degree of loading and load placing on steerability of vehicles

I. Kuzio, M. Sokil
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Abstract

The methodology of research of the influence of the degree of loading, kinematic parameters of movement, and nonlinear power characteristics of elastic elements and shock-absorbers of the suspension system on their steerability on curved sections of the road is developed. The research is based on the equation of kinetostatics of the system of sprung-unsprung part and differential equations that relate the motion of the sprung part of vehicles. Concerning the last, they take into account both loading of a vehicle and nonlinear-elastic characteristics of shock-absorbers. For the case when elastic characteristics of shock-absorbers are described by degree or close to it dependence, the fluctuation of sprung part is described analytically. Their peculiarity is that the frequency and therefore dynamic force of wheels pressure on the bearing surface (road) depends on the amplitude. It is the last value and characteristics of the road surface that determine the main parameters of steerability and stability of the movement of wheeled vehicles along curved sections of the road. Taken together, the mentioned above allowed to obtain the dependence of the critical value of the dynamic angle of rotation of the steered wheels, as a function of the amplitude of longitudinal-angular oscillations, kinematic motion parameters, and the level of loading of a vehicle. It is established: - fluctuation of the sprung part significantly reduce the value of the limiting angle of rotation of the steered wheels along the curved sections of the road; - for the period of acceleration of the vehicle and the closer location of the center of gravity of the cargo transported to the tailgate, the limit value of the dynamic angle of rotation of the steered wheels is less; - the suspension system with the progressive law of change of regenerative force of elastic shock-absorbers in a wider range of change fluctuations amplitude of the suspended part satisfies ergonomic conditions of transportation. The obtained calculated dependencies can simultaneously be basic during the modernization of existing or the creation of new suspension systems in order to improve the main operation characteristics of wheeled vehicles
装载程度和装载位置对车辆转向性能的影响
提出了研究悬架系统弹性元件和减震器在弯曲路面上的受力程度、运动运动学参数和非线性动力特性对其转向性能影响的方法。研究的基础是弹簧-非弹簧部件系统的静力学方程和车辆弹簧部件运动的微分方程。对于后者,他们考虑了车辆的载荷和减振器的非线性弹性特性。对于减振器弹性特性按程度描述或接近于程度描述的情况,对弹簧部分的波动进行了解析描述。它们的特点是车轮压力在承载面(道路)上的频率和动力取决于振幅。路面的最后值和特征决定了轮式车辆在弯曲路段行驶时的转向性和稳定性的主要参数。综上所述,可以得到方向盘动态转角临界值与纵角振荡振幅、运动学运动参数和车辆载荷水平的关系。结果表明:-弹簧部分的波动显著降低了转向车轮沿弯曲路段的极限转角值;-对于车辆加速周期和运输货物的重心位置越靠近后挡板,转向轮的动态转角极限值越小;-弹性减振器再生力在较大范围内变化波动幅度呈递进变化规律的悬架系统满足人体工程学运输条件。计算得到的依赖关系可同时用于现有悬架系统的现代化或创建新的悬架系统,以改善轮式车辆的主要运行特性
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