Lee Seung-Jun, Jung Yu-Jin, Cho Chunhee, Jang Sung-Hwan
Department of Civil and Environmental Engineering, Hanyang University, Seoul 04763, Republic of Korea.
Department of Smart City Engineering, Hanyang University ERICA, Ansan 15588, Republic of Korea.
Nanomaterials (Basel). 2023 Aug 3;13(15):2248. doi: 10.3390/nano13152248.
Traffic accidents caused by road icing are a serious global problem, and conventional de-icing methods like spraying chemicals have several limitations, including excessive manpower management, road damage, and environmental pollution. In this study, the carbon nanotubes reinforced de-icing coating for the road system with a self-heating function was developed as part of the development of a new system to prevent accidents caused by road icing. The electrical characteristics of the fabricated coating were analyzed, and the carbon nanotube coating heating performance experiment was conducted to measure the temperature increments by applying a voltage to the coating at a sub-zero temperature using an environmental chamber. In addition, the coating was installed on the road pavement and the applicability was investigated through a heating test in winter. As a result of the experiment, the coating made with the higher carbon nanotube concentration presented higher heating owing to its higher electrical conductivity. In addition, the coating showed sufficient heating performance, although the maximum temperature by Joule heating decreased for the entire coating at sub-zero temperatures. Finally, field tests demonstrated the potential of electrically conductive coatings for de-icing applications.
道路结冰引发的交通事故是一个严重的全球性问题,而像喷洒化学物质这样的传统除冰方法存在诸多局限性,包括人力管理成本过高、道路损坏以及环境污染等。在本研究中,作为预防道路结冰引发事故的新系统开发的一部分,开发了具有自热功能的碳纳米管增强道路系统除冰涂层。分析了所制备涂层的电学特性,并进行了碳纳米管涂层加热性能实验,以通过在环境试验箱中对处于零下温度的涂层施加电压来测量温度增量。此外,将该涂层安装在路面上,并通过冬季加热试验研究其适用性。实验结果表明,碳纳米管浓度较高的涂层由于其较高的电导率而具有更高的加热效果。此外,尽管在零下温度下整个涂层通过焦耳加热达到的最高温度有所降低,但该涂层仍表现出足够的加热性能。最后,现场测试证明了导电涂层在除冰应用中的潜力。