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In-Situ Steering Dynamics Analysis of Skid Steering for Articulated Motor-Driven Vehicle

机译:铰接式机动车辆滑移转向原位转向动力学分析

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摘要

The traditional hydraulic steering mode in articulated motor-driven vehicle makes the vehicle structure complex. Further more, the forces between the front and rear part of the articulated vehicle could damage the articulated joint body in the process of vehicle steering. However, skid steering mode could make the vehicle steer with the different speed of each wheel, which is flexible without hydraulic steering system. The purpose of this paper is to introduce the principle of skid steering mode in articulated motor-driven vehicle. In this paper, the theory of traditional wheeled vehicle's skid-steering mode and hydraulic steering mode of articulated vehicle are used to establish the in-situ skid-steering kinematic and dynamic model. Based on the model, the vehicle trajectory and the dynamic relationships among the body structure of the vehicle, longitudinal forces, lateral forces of each wheel are described. With these analyses, the kinematic and dynamic simulations are implemented according to the parameters of an underground mine articulated vehicle, which could provide references for the designing and studying of articulated motor-driven vehicle with skid steering mode.
机译:铰接式电动车辆中的传统液压转向模式使车辆结构复杂。此外,在车辆转向过程中,多关节车辆的前部和后部之间的力可能损坏多关节关节体。但是,打滑转向模式会使车辆以每个车轮不同的速度转向,这在没有液压转向系统的情况下非常灵活。本文的目的是介绍铰接式机动车辆的滑行转向模式原理。本文利用传统轮式车辆的滑移转向和液压铰接车辆的理论,建立了原位滑移的运动学和动力学模型。基于该模型,描述了车辆的轨迹以及车辆的车身结构,每个车轮的纵向力,横向力之间的动态关系。通过这些分析,根据地下矿用铰接车辆的参数进行了运动学和动力学仿真,为滑行转向的铰接式机动车辆的设计和研究提供了参考。

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