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Influence of Friction Heat on Tire Traction on Ice and Snow

机译:摩擦热对冰雪路面轮胎牵引力的影响

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The internal drum test bench of the Universitat Karlsruhe (TH) allows tire performance measurements under controllable conditions. In cooperation with Continental AG a research project was initiated to focus on traction on ice and snow surfaces. The test chamber was upgraded with a cooling system, surface conditioners and a snow production system. As a major result of these experiments, a strong correlation of thermal conditions and transmittable forces has been discovered. Furthermore, a high-speed infrared camera was used to monitor the temperature increase of the tire surfaces under traction. This paper presents the developed theoretical model, which describes the time dependent temperature increase in the contact zone. Based on this model, a formula to determine the thermal limiting curve of force transmission on ice and snow was derived. The computed curves were verified through comparison with experimental data.
机译:卡尔斯鲁厄大学(TH)的内部鼓测试台可在可控条件下测量轮胎性能。与Continental AG合作,启动了一个研究项目,着重研究冰雪表面的牵引力。测试室升级了冷却系统,表面调节器和造雪系统。这些实验的主要结果是,发现了热条件和传递力之间的强相关性。此外,使用了高速红外照相机来监视牵引下轮胎表面的温度升高。本文介绍了开发的理论模型,该模型描述了随时间变化的接触区温度升高。在此模型的基础上,推导了确定冰雪上力传递热极限曲线的公式。通过与实验数据进行比较来验证计算的曲线。

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