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Experimental Study on Tire Contact Patch Characteristics for Vehicle Handling with Enhanced Optical Measuring System

机译:试验研究轮胎印迹车辆处理的特点增强的光学测量系统

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摘要

Understanding the behavior of the contact patch can help to identify various parameters like pressure distribution, contact patch dimension, and tire forces, which play a crucial role in vehicle handling performance. In current work, the Stereo-Digital Image Correlation (DIC) application in measuring the contact patch dimension in the static and dynamic condition of standing or rolling tire is developed. Under the static measurement of a standing tire, Stereo DIC is used to plot the three-dimensional (3D) view of the contact patch aiming to extract contact patch dimension information. Under the dynamic condition of a rolling tire, tire carcass deflection in the radial direction can help to obtain contact patch dimensions using curvature information as presented. Also, a novel method to measure the contact patch dimension is proposed. The technique uses a white strip pasted onto the drum of the tire test rig available. A pair of action cameras is applied on the tire test rig to capture videos of tire rolling behavior over the drum. Captured videos are then processed in MATLAB to track the position of the white strip pasted on the drum using color intensity information. Based on the video images, the contact patch length (CPL) is calculated in combination with a scale factor. The lateral deformation of a tire plays a vital role in lateral force and moment generation, and it is essential to understand the relationship between deformation and force. The study also shows how the contact patch displacement is measured and integrated to calculate the forces generated by the tire. Stereo-DIC is applied to measure displacement distribution. Separate testing is performed of a rubber sample from the tire tread area to evaluate tire tread material property, which is then used in combination with strain to calculate forces. Test rig measurements have confirmed the estimated tire forces.
机译:理解印迹的行为可以帮助确定各种参数压力分布、接触补丁维度,和轮胎的力量,发挥着至关重要的作用车辆处理的性能。Stereo-Digital图像相关性(DIC)应用测量接触补丁维度在静态和动态条件下的站立或滚动轮胎。静态测量站的轮胎,立体声DIC用于绘制三维(3 d)视图的印迹旨在提取接触补丁维度信息。条件的滚动轮胎,轮胎尸体在径向方向偏转可以帮助使用曲率得到印迹维度信息。提出了测量接触补丁维度。这项技术使用一个白色带粘贴到鼓的轮胎试验台。相机是应用于轮胎试验台捕获视频的轮胎滚动行为鼓。MATLAB跟踪白色条的位置贴在鼓使用颜色强度信息。印迹长度(CPL)计算结合一个比例因子。变形的轮胎起着至关重要的作用侧向力和时刻生成,基本理解之间的关系变形和力。印迹位移测量综合计算产生的力量轮胎。位移分布。轮胎胎面橡胶样品的执行区域评价轮胎胎面材料属性,然后与应变结合使用计算的力量。证实了估计轮胎力。

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