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Skid Resistance Analysis on Asphalt Pavement Based on Rubber Friction Mechanisms

机译:基于橡胶摩擦机理的沥青路面防滑性能分析

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Enhancing skid resistance of asphalt pavements is an urgent issue for pavement designers to improve traffic safety. This paper aims to investigate the theoretical mechanisms of friction coefficient between rubber and asphalt pavement and apply the method to estimate the skid resistance of asphalt pavements. The rubber friction theory was integrated with fractal features of asphalt pavements. Numerical example results were compared with laboratory test results measured by friction pendulum instrument. Further numerical calculations were conducted and analyzed to evaluate the impacts of different parameters to the friction coefficient. The results verify that the rubber friction theory could be applied to estimate the skid resistance of asphalt pavements and show the fractal dimension of asphalt pavements has the largest impacts on the skid resistance, which is followed by vehicle speed. The nonlinear relationship between the fractal dimension and the friction coefficient is achieved. Moreover, the selection of an inexplicit parameter in previous theories is recommended in the paper.
机译:增强沥青路面的防滑性是路面设计者提高交通安全性的紧迫问题。本文旨在研究橡胶与沥青路面间摩擦系数的理论机理,并将该方法应用于沥青路面的抗滑性估算。橡胶摩擦理论与沥青路面的分形特征相结合。将数值示例结果与用摩擦摆仪测量的实验室测试结果进行了比较。进行了进一步的数值计算和分析,以评估不同参数对摩擦系数的影响。结果证明,橡胶摩擦理论可用于估算沥青路面的防滑性能,并表明沥青路面的分形维数对防滑性能的影响最大,其次是车速。分形维数与摩擦系数之间存在非线性关系。此外,建议在以前的理论中选择一个不明确的参数。

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