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Effectiveness of superhydrophobic material on the hydroplaning risk of asphalt pavements

机译:超疏水材料对沥青路面水刺风险的有效性

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摘要

One of the major issues in road safety is the slipperiness of the topcoat surface of the road during rainfalls. The presence of water on the pavement surface reduces friction on the topcoat surface. In the absence of sufficient friction, accidents caused by slipping seem inevitable. A common phenomenon during rain is hydroplaning. The hydroplaning characteristics are affected by water film thickness, tire inflation pressure, pavement texture depth, surface hydraulic properties, and tire tread depth. The present study aims to determine the impact of superhydrophobic coating of octafluoropentyl methacrylate (OFPMA) on the hydroplaning risk and water layers thickness in asphalt pavements. For this purpose, a device for simulating rainy conditions on asphalt pavements was designed. The water flow velocity over a variety of uncoated and coated asphalt surfaces with various degrees of the superhydrophobic coating was measured and the hydroplaning speed was calculated. According to the results, the mean values of the hydroplaning speed of a vehicle on the coated asphalt samples were roughly 1.33 times greater than the uncoated asphalt samples. Furthermore, the outcomes in this paper indicated that superhydrophobic coatings could be an innovative method to mitigate hydroplaning risk and decrease water film thickness on pavements.
机译:道路安全的主要问题之一是降雨期间道路面部表面的光滑。路面上的水的存在减少了面漆表面上的摩擦。在没有足够摩擦的情况下,滑倒引起的事故似乎是不可避免的。雨期间的常见现象是水渗透。水镀膜特性受水膜厚度,轮胎充气压力,路面纹理深度,表面液压性能和轮胎胎面深度的影响。本研究旨在确定甲基丙烯酸叔烷基酯(OFPMA)超疏水涂层对沥青路面中的水层风险和水层厚度的影响。为此目的,设计了一种用于模拟沥青路面上雨量条件的装置。测量各种未涂覆的涂覆沥青表面的水流速度,并计算出不同程度的超疏水涂层,并计算水渗透速度。根据结果​​,载体沥青样品上载体的水合速度的平均值大约比未涂覆的沥青样品大大1.33倍。此外,本文的结果表明,超疏水涂层可以是一种可创新的方法,用于减轻水渗透的风险并降低路面上的水膜厚度。

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