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Novel conductive wearing course using a graphite, carbon fiber, and epoxy resin mixture for active de-icing of asphalt concrete pavement

机译:使用石墨,碳纤维和环氧树脂混合物的新型导电型术术,用于沥青混凝土路面的活性去冰

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摘要

Ice and snow on road surfaces can affect driving safety severely and cause accidents. Numerous active snow and ice removal technologies, such as conductive asphalt concrete, heating cables and pipes, have been developed in recent years. However, they reduce the lifetime of the pavement and cannot be applied on the existing roads. In this study, a novel conductive ultra-thin anti-skidding wearing course (CUAWC) is firstly proposed, which consists of a lower conductive layer and an upper wearing course. The conductive layer consists of a mixture of graphite, carbon fiber, and an epoxy resin adhesive. The optimal proportion of each additive was determined using an electrical conductivity test. The mass percolation threshold of graphite and carbon fiber in the conductive mixture were 25 and 4%, respectively. Freeze-thaw cycle and cyclic loading tests were conducted to evaluate the long-term skid resistance and resistivity fluctuation rate of the CUAWC. Finally, a laboratory de-icing test and a field snow melting test were performed. The CUAWC specimens had good skid resistance, good durability and stable resistivity, even after multiple freezing-thawing cycles and a million load cycles. Furthermore, the proposed CUAWC has lower resistivity and higher conductivity than traditional conductive asphalt concrete and can be laid on top of existing road surfaces.
机译:道路表面上的冰雪可以严重影响驾驶安全性并导致事故。近年来,众多活跃的雪和冰除去技术,如导电沥青混凝土,加热电缆和管道。然而,它们减少了路面的寿命,不能应用于现有道路。在该研究中,首先提出了一种新颖的导电超薄防滑佩戴路线(CUAWC),其包括下导电层和上部佩戴路线。导电层由石墨,碳纤维和环氧树脂粘合剂的混合物组成。使用电导率测试测定每种添加剂的最佳比例。导电混合物中石墨和碳纤维的质量渗透阈值分别为25和4%。进行冻融循环和循环加载试验以评估CuAWC的长期滑动抗性和电阻率波动率。最后,进行了实验室去冰测试和现场雪熔试验。 CuAWC标本均具有良好的防滑性,良好的耐久性和稳定的电阻率,即使在多次冻结循环和百万负载周期之后也是如此。此外,所提出的CuAWC的电阻率低于传统导电沥青混凝土的电阻率和更高的导电性,并且可以放在现有的道路表面的顶部。

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