间接评估汽车轮胎在起动运动模式下的滚动阻力

V. Karpenko, Oleksiy Voropay, Eduard Neskreba
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Based on the obtained dependences of the internal pressure and temperature of the tire on time, it is necessary to evaluate how the rolling resistance coefficient changes. Methodology. As a result of experimental studies, on vehicles equipped with tires of various sizes and seasonality, the dependences of the pressure and temperature of the tire material at three points (tread zone, shoulder part and sidewall) were obtained. Using the results of the experiment, as well as based on the dependencies presented in scientific papers devoted to the study of the performance characteristics of car tires, an indirect assessment of the rolling resistance coefficient when driving in the starting mode is made. Results. The value of the increase in the internal pressure of the gas filler in the tire has been established and the driving time for the studied vehicles in the starting mode has been determined. The most intense temperature rise is observed in the shoulder area of the tires. 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引用次数: 1

摘要

问题。从轮胎的状况和它们的正确选择取决于天气条件,首先,汽车的许多操作性能的指标取决于。行驶过程中轮胎内部压力和温度升高,对轮胎的滚动阻力有显著影响。在较高的滚动阻力系数时,首先是油耗增加,轮胎磨损增加等。了解滚动阻力系数在运动起始阶段的变化是很重要的。的目标。本工作的目的是确定特定车辆运动时间的启动方式。根据得到的轮胎内压和温度随时间的变化规律,有必要对滚动阻力系数的变化规律进行评估。方法。通过试验研究,在不同尺寸和季节的轮胎上,得到了胎面区、胎肩和侧壁三个点轮胎材料压力和温度的依赖关系。利用试验结果,并结合研究汽车轮胎性能特性的相关文献,对汽车轮胎在启动模式下行驶时的滚动阻力系数进行了间接评估。结果。确定了轮胎充气筒内压力的增加值,确定了研究车辆在启动模式下的行驶时间。在轮胎的肩部区域观察到最强烈的温度上升。与夏季轮胎相比,冬季轮胎的表层温度升高较小,因此,在接近0℃及以下的温度下,使用冬季轮胎驾驶更安全。创意。提出了一种间接评估汽车轮胎在启动模式下(冷胎)滚动阻力的方法,即知道轮胎内部气压和轮胎温度的变化,就可以预测轮胎滚动阻力系数的变化。实用价值。利用间接评估汽车轮胎滚动阻力所得到的依赖关系,可以在不借助实验的情况下判断滚动阻力系数的值。众所周知,当环境温度达到+5℃或更低时,需要及时更换夏季轮胎,从而显著提高道路安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indirect assessment of the rolling resistance of a car tire in the starting mode of motion
Problem. From the condition of the tires and their correct choice depending on the weather conditions, first of all, the indicators of many operational properties of the car depend. The internal pressure and temperature of the tire increases during driving, as a result, there is a significant effect on the rolling resistance of the tire. At high values of the rolling resistance coefficient, first of all, fuel consumption increases, tire wear increases, etc. It is important to know how the rolling resistance coefficient changes during the starting period of motion. Goal. The purpose of this work is to determine the starting mode of motion time for specific vehicles. Based on the obtained dependences of the internal pressure and temperature of the tire on time, it is necessary to evaluate how the rolling resistance coefficient changes. Methodology. As a result of experimental studies, on vehicles equipped with tires of various sizes and seasonality, the dependences of the pressure and temperature of the tire material at three points (tread zone, shoulder part and sidewall) were obtained. Using the results of the experiment, as well as based on the dependencies presented in scientific papers devoted to the study of the performance characteristics of car tires, an indirect assessment of the rolling resistance coefficient when driving in the starting mode is made. Results. The value of the increase in the internal pressure of the gas filler in the tire has been established and the driving time for the studied vehicles in the starting mode has been determined. The most intense temperature rise is observed in the shoulder area of the tires. The temperature of the surface layer of winter tires increases less than summer tires, and, accordingly, driving on winter tires is safer at temperatures close to 0°C and below. Originality. A technique for indirectly assessing the rolling resistance of a car tire when driving in the starting mode (on "cold" tires) is presented, that is, knowing how the internal air pressure and tire temperature change, it is possible to predict a change in the rolling resistance coefficient. Practical value. Using the dependences obtained as a result of an indirect assessment of the rolling resistance of car tires, one can judge the value of the rolling resistance coefficient without resorting to experiments. The well-known assertion that it is necessary to timely replace summer tires with winter ones (when the ambient temperature can reach +5 ° C and lower) is confirmed, thereby significantly improving road safety.
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