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首页> 外文期刊>Journal of intelligent material systems and structures >Conductive asphalt concrete: A review on structure design, performance, and practical applications
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Conductive asphalt concrete: A review on structure design, performance, and practical applications

机译:导电沥青混凝土:结构设计,性能和实际应用综述

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摘要

Conductive asphalt concrete can be used to help pavement snow melting/deicing by an asphalt pavement electrical heater. It is an emerging technology to ensure safety driving during winter time. Based on the Joule heating law, an electric current passing through the conductive asphalt concrete (a conductor) could generate enough heat to prevent snow accumulation and icing on the asphalt pavement surface. This article provides a review on the material design, construction technique, performance evaluation, and engineering applications of conductive asphalt concrete. The literature shows that the conductivity and mechanical properties of conductive asphalt concrete are strongly dependent on the material compositions and mixing programs. Meanwhile, the mechanism of conductivity improvement is identified according to the characteristics of conductive additives. In addition, the effects of service conditions on the resistivity are evaluated. Asphalt pavement electrical heater technique shows some appreciable advantages in environment protection and traffic safety aspects, although it has few applications in the highway industry. It therefore recommends that further investigations on asphalt pavement electrical heater are indispensable and should focus on some covered issues besides the existing research, such as proper material selection, resistivity stability, desirable high operational efficiency, and suitable construction technique.
机译:导电沥青混凝土可用于通过沥青路面电加热器帮助路面融雪/除冰。它是确保冬季安全驾驶的一项新兴技术。根据焦耳热定律,流过导电沥青混凝土(导体)的电流会产生足够的热量,以防止积雪和在沥青路面上结冰。本文对导电沥青混凝土的材料设计,施工技术,性能评估和工程应用进行了综述。文献表明,导电沥青混凝土的电导率和机械性能在很大程度上取决于材料组成和混合程序。同时,根据导电助剂的特性确定了导电性提高的机理。此外,评估了使用条件对电阻率的影响。沥青路面电加热器技术在环境保护和交通安全方面显示出一些明显的优势,尽管在高速公路行业中应用很少。因此,建议对沥青路面电加热器进行进一步的研究是必不可少的,除现有的研究外,还应侧重于一些涵盖的问题,例如正确的材料选择,电阻率稳定性,理想的高运行效率和合适的施工技术。

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