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Vehicle and course characterization process for indoor tire wear simulation

机译:用于模拟室内轮胎磨损的车辆和路线表征过程

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An empirical methodology is described for separately characterizing vehicles and road courses for subsequent combination to predict tire force histories in tire use or testing. By building a library of vehicle and wear course characterizations, indoor wear test simulations can be selectively constructed by using any combination of "virtual" test vehicles and wear courses. A reliable transient record of vertical, lateral and fore-aft forces and inclination angles can be generated and supplied to drive the indoor wear tire loading fixture. Vehicle characterization involves mapping the basic dynamic load transfer behavior over a range of acceleration, deceleration and cornering maneuvers. A unique indoor vehicle test facility is described for efficiently capturing the tire forces and inclination angles during various maneuvers. All four tire positions can be characterized. Vehicle center of gravity (CO) accelerations and speeds are also recorded during indoor testing. An alternative to experimental measurements is the use of a vehicle computer model for mapping the basic dynamic load transfer behavior. Empirical equations relating vehicle kinematics to tire forces and inclination angles have been developed and are presented. A method of utilizing these equations together with outdoor wear course measurements for predicting transient tire force histories is presented. The method is demonstrated and validated with several vehicle case studies. The tire force component of a wear course can be characterized by measurement of a few parameters: the vehicle CO accelerations and the longitudinal velocity. Course characterization is illustrated using the Department of Transportation's Uniform Tire Quality Grading wear course in the San Angelo, IX area. The full 650 km course was characterized and combined with the laboratory characterization of a 1997 Pontiac Grand Am. Four 650 km drive files were created, one for each tire position, for an indoor wear machine. These consisted of five time-based parameters: radial load, lateral force, wheel torque (acceleration, deceleration forces), inclination angle, and velocity. By sequencing a tire through these four drive files, it was "rotated" as it would have been on the actual vehicle. Examples of tire wear rates and irregular wear are shown for a number of tire constructions, comparing the indoor to the outdoor results. Good correlation was achieved. This simulation technique permits the tire force spectrum of quite complex and lengthy routes to be accurately reproduced in the precisely controlled environment of the laboratory. Each cornering maneuver, each braking and acceleration event, every hill and town can be reproduced in real-time. Only by combining the specific vehicle dynamics of a given vehicle with that of a specific wear route can tire wear be accurately simulated. This tire-vehicle system simulation methodology is referred to as a TS-Sim model.
机译:描述了一种经验方法,用于分别表征车辆和道路路线,以进行后续组合以预测轮胎使用或测试中的轮胎力历史。通过建立车辆和磨损过程特征库,可以通过使用“虚拟”测试车辆和磨损过程的任意组合来选择性地构建室内磨损测试模拟。可以生成可靠的瞬态记录,以记录垂直,横向和前后力以及倾斜角度,以驱动室内磨损轮胎装载夹具。车辆表征包括在加速,减速和转弯操作范围内绘制基本的动态载荷传递行为。描述了一种独特的室内车辆测试设施,用于在各种操纵过程中有效地捕获轮胎力和倾斜角度。所有四个轮胎位置都可以表征。室内测试期间还会记录车辆重心(CO)的加速度和速度。实验测量的替代方法是使用车辆计算机模型来映射基本动态载荷传递行为。已经开发并提出了将车辆运动学与轮胎力和倾角相关的经验方程。提出了一种利用这些方程式和户外磨损过程测量值来预测瞬时轮胎力历史的方法。该方法已通过多个车辆案例研究进行了验证。磨损过程中的轮胎力分量可以通过测量一些参数来表征:车辆CO加速度和纵向速度。使用IX地区San Angelo的运输部的统一轮胎质量等级磨损课程来说明课程特征。完整的650公里航道经过特征化,并与1997年的Pontiac Grand Am的实验室特征相结合。对于室内磨损机,创建了四个650公里的驱动文件,每个轮胎位置一个。这些参数由五个基于时间的参数组成:径向载荷,侧向力,车轮扭矩(加速,减速力),倾斜角度和速度。通过对这四个驱动文件进行排序,就可以像在实际车辆上一样“旋转”轮胎。显示了许多轮胎结构的轮胎磨损率和不规则磨损的示例,将室内结果与室外结果进行了比较。实现了良好的相关性。这种模拟技术可以在实验室的精确控制环境中准确地复制非常复杂和漫长的路线的轮胎力谱。每个转弯动作,每个制动和加速事件,每个山丘和城镇都可以实时复制。只有将给定车辆的特定车辆动力学与特定磨损路径的动力学结合起来,才能准确地模拟轮胎磨损。这种轮胎-车辆系统仿真方法称为TS-Sim模型。

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