Elimination of Stray Forces from Tire Dynamics Measurements or Beware the Backpath

IF 0.9 Q4 ENGINEERING, MECHANICAL Tire Science and Technology Pub Date : 2021-08-04 DOI:10.2346/tire.21.20027
G. R. Potts
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Abstract

The forces that enter the mounted tire spindle of laboratory-type tire dynamics test machines include the following items: (1) direct tire-generated forces, tire nonuniformities, and tread pattern vibrations; (2) direct tire-transmitted rough road surface or cleat impact forces; (3) direct machine resonance-amplified versions of items 1 and 2; (4) machine frame backpath-transmitted versions of items 1–3; (5) dynamic loadcell crosstalk; (6) external noise from foundation vibrations; and (7) adjacent load station vibrations traveling through the machine frame. Although items 1 and 2 are sought in spindle vibration measurements, items 3–7 are also included in the mix and confound the measurement, confusing the analyst into thinking that machine properties are tire properties. Not only do items 3–6 not exist in vehicle operation but also comparison of results from one test machine to another can be an exercise in comparing machine to machine, not tire to tire. Tire dynamics measurements should simulate tires in roadway operation, not create a whole new set of problems that do not exist in vehicles. Elimination of item 7 paved the way to developing a tire failure warning system that operates on tire endurance test machines and can be adapted for operation on passenger vehicles to warn the driver of tire trouble. This article develops the theory of stray force measurement, describes a method for eliminating stray forces from experimental tire dynamics data, and provides experimental verification of the effectiveness of these methods.
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从轮胎动力学测量中消除杂散力或小心回道
进入试验型轮胎动力学试验机安装的轮胎主轴的力包括以下几个项目:(1)轮胎直接产生的力、轮胎不均匀性和胎面花纹振动;(2)直接由轮胎传递的粗糙路面或明显的冲击力;(3)第1项和第2项的直接机器共振放大版本;(4)机架回程传输版本1-3项;(5)动态称重传感器串扰;(6)基础振动产生的外部噪声;(7)相邻负载站振动通过机架传播。虽然项目1和2是在主轴振动测量中寻找的,但项目3-7也包括在混合中,混淆了测量,使分析人员误认为机器性能是轮胎性能。不仅3-6项在车辆操作中不存在,而且一台测试机器与另一台测试机器的结果比较可以是机器与机器之间的比较,而不是轮胎与轮胎之间的比较。轮胎动力学测量应该模拟轮胎在道路上的运行,而不是产生一套在车辆中不存在的全新问题。消除第7项为开发轮胎故障预警系统铺平了道路,该系统可在轮胎耐久性测试机上运行,并可适用于客运车辆,以警告驾驶员轮胎故障。本文发展了杂散力测量的理论,描述了一种从轮胎动力学实验数据中消除杂散力的方法,并对这些方法的有效性进行了实验验证。
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来源期刊
Tire Science and Technology
Tire Science and Technology ENGINEERING, MECHANICAL-
CiteScore
2.10
自引率
0.00%
发文量
11
期刊介绍: Tire Science and Technology is the world"s leading technical journal dedicated to tires. The Editor publishes original contributions that address the development and application of experimental, analytical, or computational science in which the tire figures prominently. Review papers may also be published. The journal aims to assure its readers authoritative, critically reviewed articles and the authors accessibility of their work in the permanent literature. The journal is published quarterly by the Tire Society, Inc., an Ohio not-for-profit corporation whose objective is to increase and disseminate knowledge of the science and technology of tires.
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