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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Experimental Investigation of Tire Dynamic Strain Characteristics for Developing Strain-Based Intelligent Tire System
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Experimental Investigation of Tire Dynamic Strain Characteristics for Developing Strain-Based Intelligent Tire System

机译:开发基于应变的智能轮胎系统的轮胎动态应变特性的实验研究

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摘要

The increasing demand for ground vehicles safety has led to the requirements for effective and accurate vehicle active safety systems, such as Anti-lock Braking System (ABS) and Traction Control System (TCS). As the only link between vehicle and road, the tire is in a very privileged position in a vehicle to acquire vital information which could be used to improve vehicle dynamics control systems. Hence the requirement for an "intelligent tire" that incorporates a system that is able to sense the tire and road conditions, and then interact with the vehicle dynamics control system to optimize the vehicle performance as well as provide warning information to the driver. In this paper, an experimental tire strain-based system is used to establish the proof of concept of an intelligent tire prototype. This experimental system comprises a data acquisition device and three rectangular rosette strain sensors, which can measure the tire surface dynamic strain in real time. Indoor tire rolling tests including steady state straight line and cornering are used to demonstrate the feasibility of the measuring tire strain history with a view to determining tire dynamic strain characteristics. Tire dynamic strain characteristics are extracted and analyzed with respect to the variation of tire operational conditions, such as inflation pressure, rolling speed and pre-loading. These relationships between dynamic strain characteristics and tire operational conditions indicate potential application of tire strain measurement in estimating tire behavior.
机译:对地面车辆安全性的日益增长的需求导致对有效和准确的车辆主动安全系统的需求,例如防抱死制动系统(ABS)和牵引力控制系统(TCS)。作为车辆与道路之间的唯一链接,轮胎在车辆中处于非常特权的位置,以获取重要信息,这些信息可用于改善车辆动力学控制系统。因此,需要一种“智能轮胎”,该系统应具有能够感知轮胎和道路状况,然后与车辆动力学控制系统进行交互以优化车辆性能以及向驾驶员提供警告信息的系统。在本文中,基于实验轮胎应变的系统用于建立智能轮胎原型的概念证明。该实验系统包括一个数据采集设备和三个矩形玫瑰形应变传感器,可以实时测量轮胎表面动态应变。室内轮胎滚动测试(包括稳态直线和转弯)被用来证明测量轮胎应变历史以确定轮胎动态应变特性的可行性。提取和分析轮胎动态应变特性,以分析轮胎工作条件的变化,例如充气压力,滚动速度和预紧力。动态应变特性和轮胎工作条件之间的这些关系表明轮胎应变测量在估计轮胎性能方面的潜在应用。

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