装有自动制动控制系统的轮式车辆制动研究

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY
D. Leontiev, V. Bogomolov, V. I. Klymenko, L. Ryzhyh, S. I. Lomaka, A. V. Suhomlin, A. V. Kuripka1, A. Frolov
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The presence of new mathematical relationships between the position of the coordinate of the vehicle’s gravity center, realized by the clutches of its wheels, and the braking coefficient of the vehicle makes it possible to simulate the change in the deceleration of a wheeled vehicle in various braking modes of its motion. The terms describing the interaction of an elastic tire with a supporting surface in the braking mode of a wheeled vehicle have been substantiated. Equations are written that permit to calculate: a position of the coordinate of gravity center of a multi-axle wheeled vehicle relative to its front and rear axles; a braking coefficient value of a multi-axle wheeled vehicle based on the coordinates of the position of its gravity center, clutches that are realized between its tires and a supporting surface; load distribution between the respective front and rear axles of the vehicle. 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引用次数: 1

摘要

本文以多轴车辆为例,提出了一种由制动力调节自动控制系统根据制动力速率和附着系数确定车辆停车距离的方法。本研究的目的是计算多轴轮式车辆的制动力自动控制系统的制动效率参数,该系统基于轮胎与支承表面之间的附着关系。所考虑的方法的一个特点是在自动系统运行过程中使用计算的车辆制动系数和附着力使用系数来调节制动力。通过车轮离合器实现的车辆重心坐标位置与车辆制动系数之间新的数学关系的存在,使得模拟轮式车辆在其运动的各种制动模式下的减速度变化成为可能。描述在轮式车辆制动模式下弹性轮胎与支承面相互作用的术语已经得到证实。写出了可以计算多轴轮式车辆重心坐标相对于前、后轴的位置的方程;基于车辆重心位置坐标的多轴轮式车辆的制动系数值,轮胎与支承面之间实现的离合器;车辆前轴和后轴之间的负载分布。为了计算轮式车辆的停车距离,建议取附着力使用系数值为0.83,而不考虑车辆所处的天气和气候条件的变化(在公认假设下的计算误差不大于5%)。以图形的形式给出了多轴轮式车辆重心坐标位置的设计简图,从而对车辆前后轴之间的质量重分布有了一个大致的认识。本文分析了各种因素对汽车车轮制动模式下轮胎与支承面实现附着力值变化的影响。提出了确定多轴轮式车辆制动效率参数的概念,澄清了车辆运动理论中的一些规定,特别是在多轴轮式车辆在制动模式下车轴垂直载荷增加的问题上,可以应用计算方法确定车辆的减速度。给出了多轴轮式车辆相邻前后轴间重量分配系数的计算方法,提高了用该计算方法确定车辆减速度的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
About Braking of Wheeled Vehicle Equipped with Automated Brake Control System
The paper proposes a method for determining a vehicle stopping distance based on a braking rate and a coefficient of using an adhesion force by an automated control system for regulating a braking force on the example of a multi-axle vehicle. The aim of the study is to calculate parameters of the braking efficiency of a multi-axle wheeled vehicle equipped with an automated braking force control system based on the adhesion between a tire and a supporting surface. A peculiarity of the considered method is the use of the calculated braking coefficient of the vehicle and the coefficient of use of adhesion forces during the operation of automated system for regulating the braking force. The presence of new mathematical relationships between the position of the coordinate of the vehicle’s gravity center, realized by the clutches of its wheels, and the braking coefficient of the vehicle makes it possible to simulate the change in the deceleration of a wheeled vehicle in various braking modes of its motion. The terms describing the interaction of an elastic tire with a supporting surface in the braking mode of a wheeled vehicle have been substantiated. Equations are written that permit to calculate: a position of the coordinate of gravity center of a multi-axle wheeled vehicle relative to its front and rear axles; a braking coefficient value of a multi-axle wheeled vehicle based on the coordinates of the position of its gravity center, clutches that are realized between its tires and a supporting surface; load distribution between the respective front and rear axles of the vehicle. To calculate the stopping distance of a wheeled vehicle, it is proposed to take a coefficient value of use of the adhesion force equal to 0.83, regardless of the change in weather and climatic conditions in which the vehicle is operated (a calculation error under an accepted assumption is not more than 5 %). In a graphical form, a design diagram of the coordinate position of a gravity center of a multi-axle wheeled vehicle is presented, which gives a general idea about the redistribution of masses between front and rear axles of the vehicle. Scientific publications on the change in the value of the realized adhesion between the tire and the supporting surface in the braking mode of the automobile wheel under various factors have been analyzed in the paper. The proposed concept for determining parameters of the braking efficiency of a multi-axle wheeled vehicle clarifies some provisions in the theory of vehicle motion, in particular, it allows to apply the calculated method for determining the deceleration of a vehicle in the problem of increasing vertical loads on the axles of a multi-axle wheeled vehicle in the braking mode. The given method for calculating coefficients of weight distribution between adjacent front or rear axles of a multi-axle wheeled vehicle increases an accuracy of determining the amount of deceleration of the vehicle by the calculation method.
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来源期刊
Science & Technique
Science & Technique ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
47
审稿时长
8 weeks
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