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Snow Traction Performance of Low Rolling Resistance Drive Tires for Class-8 Tractor Trailers

机译:用于8级拖拉机拖车的低滚动阻力轮胎的雪牵引性能

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Dynamic traction testing of a sample of drive tires for class 8 tractor-trailers provides information about the relation among rolling resistance, tire design, and traction performance in snow conditions. The tests were conducted to address concerns that low rolling resistance tires used to save fuel and reduce emissions may have inferior traction on snow. In addition to the dynamic traction testing, based on ASTM F-1805, rolling resistance was tested using ISO 28580, and characteristics of the tread design were measured, including tread depth and void ratio, using ASTM F421 and ASTM F-870. In general, tires designed for increased traction, usually made with open shoulders, had a higher snow traction rating than tires designed for highway applications with closed shoulders. There was no significant correlation between the snow traction rating and the coefficient of rolling resistance. Although the tires with the lowest values of rolling resistance tended to have lower snow traction ratings, many tire models with much higher values of rolling resistance had similar low snow traction ratings. Of the tire design parameters examined, the only one to have significant correlation with the snow traction rating (p<0.05) was gross contact area, which was not significantly correlated with the rolling resistance coefficient. Conversely, the rolling resistance coefficient was correlated significantly (p<0.05) only with average tread depth, which was not significantly correlated with the snow traction rating. The results of this investigation suggest that tire manufacturers use a variety of design features in the development of low rolling resistance tires, and that it is possible to design low rolling resistance tires with superior snow traction.
机译:8级拖拉机拖车的驱动轮胎样本的动态牵引试验提供了有关滚动阻力,轮胎设计和散雪条件的关系的信息。进行了测试以解决涉及用于节省燃料的低滚动阻力,减少排放可能在雪地上具有较差的牵引力。除了基于ASTM F-1805的动态牵引试验之外,使用ISO 28580测试滚动电阻,使用ASTM F421和ASTM F-870测量胎面设计的特性,包括胎面深度和空隙率。通常,设计用于增加牵引力的轮胎,通常用敞开的肩部制造,比轮胎更高的雪牵引等级,而不是用于封闭肩部的公路应用。雪牵引额定值与滚动阻力系数之间没有显着相关性。虽然具有滚动阻力值最低的轮胎往往具有较低的雪牵引率,但许多具有较高滚动抗性值的轮胎模型具有相似的低雪牵引率。在检查轮胎设计参数的情况下,唯一一个与雪牵引额定值具有显着相关性的(P <0.05)是总接触面积,与滚动阻力系数没有明显相关。相反,滚动阻力系数显着相关(P <0.05),仅具有平均胎面深度,这与雪牵引额定值没有显着相关。该调查的结果表明轮胎制造商在低滚动阻力轮胎的开发中使用各种设计特征,并且可以设计具有优越的雪牵引力的低滚动阻力轮胎。

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