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Optimization of an Optical Test Bench for Tire Properties Measurement and Tread Defects Characterization

机译:用于轮胎性能测量和胎面缺陷表征的光学测试平台的优化

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Tire characteristics and behavior are of great importance in vehicle dynamics since the forces transmitted in the tire-road contact are the main contributors to global vehicle performance. Several research groups have focused on the study and modeling of tires. Some of the most important factors that need to be known are tread characteristics and pressure distribution in the tire-ground contact patch. In this work, a test bench has been used to adequately determine the aforementioned factors. The measurement principle of the test bench is the frustration of total internal reflection (FTIR) of light. It makes use of a laterally illuminated glass on which the tire leans. An interposed plastic interface between them causes the reflection of light. Finally, a video camera captures the bright image formed through the glass. The brightness level in each pixel of the image is related to existing normal pressure. A study of the parameters that affect the test bench calibration such as type of interface material used, diffuse light, hysteresis, creep and transverse light absorption is performed. Experimental tests are conducted to relate tire inflation pressure and camber angle to the pressure distribution. Furthermore, the test bench is used to detect and evaluate the influence of defects in the tire on the contact pressures.
机译:轮胎的特性和性能在车辆动力学中非常重要,因为在轮胎-道路接触中传递的力是全球车辆性能的主要贡献者。几个研究小组专注于轮胎的研究和建模。需要知道的一些最重要因素是胎面特性和轮胎-地面接触补丁中的压力分布。在这项工作中,已经使用测试台来充分确定上述因素。测试台的测量原理是对光的全内反射(FTIR)的抑制。它利用轮胎倾斜的侧面照明玻璃。它们之间插入的塑料界面会引起光反射。最后,摄像机捕获通过玻璃形成的明亮图像。图像每个像素中的亮度级别与现有的法向压力有关。对影响测试台校准的参数进行了研究,例如所使用的界面材料的类型,散射光,磁滞,蠕变和横向光吸收。进行了实验测试,以将轮胎充气压力和外倾角与压力分布相关联。此外,测试台用于检测和评估轮胎缺陷对接触压力的影响。

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