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Tire/Road Rolling Resistance Modeling: Discussing the Surface Macrotexture Effect

机译:轮胎/道路滚动阻力建模:讨论表面宏观纹理效果

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This paper deals with the modeling of rolling resistance and the analysis of the effect of pavement texture. The Rolling Resistance Model (RRM) is a simplification of the no-slip rate of the Dynamic Friction Model (DFM) based on modeling tire/road contact and is intended to predict the tire/pavement friction at all slip rates. The experimental validation of this approach was performed using a machine simulating tires rolling on road surfaces. The tested pavement surfaces have a wide range of textures from smooth to macro-micro-rough, thus covering all the surfaces likely to be encountered on the roads. A comparison between the experimental rolling resistances and those predicted by the model shows a good correlation, with an R2 exceeding 0.8. A good correlation between the MPD (mean profile depth) of the surfaces and the rolling resistance is also shown. It is also noticed that a random distribution and pointed shape of the summits may also be an inconvenience concerning rolling resistance, thus leading to the conclusion that beyond the macrotexture, the positivity of the texture should also be taken into account. A possible simplification of the model by neglecting the damping part in the constitutive model of the rubber is also noted.
机译:本文涉及滚动阻力的建模及路面纹理效果分析。滚动电阻模型(RRM)是基于造型轮胎/道路接触的动态摩擦模型(DFM)的防滑速率的简化,并且旨在预测所有滑动率的轮胎/路面摩擦。使用在道路表面上滚动的机器模拟轮胎进行这种方法的实验验证。测试的路面表面具有宽幅纹理,从光滑到宏观微粗糙,因此覆盖了可能在道路上遇到的所有表面。实验滚动电阻与模型预测的那些的比较显示出良好的相关性,R2超过0.8。还示出了表面和滚动阻力的MPD(平均轮廓深度)之间的良好相关性。还注意到,随机分布和尖锐的形状的峰值也可能是滚动阻力的不便,从而导致结论,即超越宏观纹理,也应该考虑纹理的积极性。还注意到通过忽略橡胶本构模型中的阻尼部分来实现模型的可能简化。

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