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Investigation of Friction Mechanisms of Siped Tire Tread Blocks on Snowy and Icy Surfaces

机译:雪地和冰冷表面上胎面花纹胎块的摩擦机理研究

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摘要

Due to general safety reasons and an increasing individual demand on more traffic safety, winter tires have become more and more important. This evolution results in a rising requirement of the customers concerning the tire performance on the one hand, and the effort of the tire industry to improve the tire traction performance on snow and ice on the other hand. To engineer winter tires in an effective way, the friction influencing factors as well as the contact mechanics should be well known. Normally the design and development of tires is strongly based on vehicle tests, but in modern tire development processes the simulation as well as the experimental investigation of tires and tire components in the lab have become more popular. This strategy plays an especially important role for reducing the time of development cycles but also the development costs. With simulation and experiments in lab, new challenges come up which have to be solved. Lab experiments compete with totally different problems: First of all, the environmental influences like temperature and humidity have to be controlled. Furthermore, the test tracks used inside must be comparable to the proving ground outside, hence the properties of snow and ice have to be investigated in detail. Therefore not only is it very important to understand the formation of snow and ice, but also to find characteristics of both materials which can be identified and measured with mobile measurement devices outside on the test track and inside in the lab. Within this publication a general overview of the tire tread block test method as well as the test rig, which are used for identifying relevant tread block friction mechanisms on snow and ice, will be given. The results of the measurement will be shown and the acting friction phenomena will be explained.
机译:由于一般的安全原因以及个人对提高交通安全性的需求不断增长,冬季轮胎变得越来越重要。这种发展一方面导致客户对轮胎性能的需求增加,另一方面导致轮胎工业努力改善在冰雪上的轮胎牵引性能。为了有效地设计冬季轮胎,摩擦影响因素以及接触力学应该是众所周知的。通常,轮胎的设计和开发完全基于车辆测试,但是在现代轮胎开发过程中,实验室中轮胎和轮胎组件的仿真以及实验研究变得越来越流行。该策略在减少开发周期时间和开发成本方面起着特别重要的作用。在实验室进行仿真和实验后,必须解决新的挑战。实验室实验面临着完全不同的问题:首先,必须控制温度和湿度等环境影响。此外,内部使用的测试轨道必须与外部的试验场具有可比性,因此必须详细研究雪和冰的性质。因此,不仅重要的是要了解雪和冰的形成,而且要找到两种材料的特性,可以使用移动测量设备在测试轨道上和实验室内部对它们进行识别和测量。在该出版物中,将给出轮胎胎面花纹块测试方法的总体概述以及用于识别冰雪上相关胎面花纹块摩擦机理的测试装置。将显示测量结果,并说明作用的摩擦现象。

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