Transportation Environmental Research Team, Korea Railroad Research Institute (KRRI), #176 Cheoldo Bangmulgwan-ro, Uiwang-si, Gyeonggi-do 16105, Republic of Korea.
Department of BioNano Technology, Gachon University, 1342 Seongnamdaero, Sujeong-gu, Seongnam-si 13120, Gyeonggi-do, Republic of Korea.
J Nanosci Nanotechnol. 2019 Mar 1;19(3):1269-1275. doi: 10.1166/jnn.2019.16162.
Icing of railway contact wires in the cold climates of the USA, Canada, China, Japan, and South Korea can cause significant problems and delays in the operation schedules of electric-powered trains and subway cars. As anti-icing methods, manual de-icing, contact-wire thermal running, resistive-wire-heating de-icing, and chemical de-icing have all been explored and tested. Among them, environmentally friendly chemical de-icing based on the same concept as that of automobileengine antifreezer can be practically effective for application to contact wires at railcar depots. In the present study, the railway contact wires are coated with anti-icing mixtures of ethylene glycol/tap water and glycerol/tap water at various ratios (v/v %) as well as with tap water alone, at temperatures of -30 and -40 °C in a deep freezer. The morphological change on the wire surfaces is observed under optical microscopy. The surface-contact angles are measured to examine the surface difference between uncoated and coated railway contact-wire fragments. Conclusively, the fragments coated with 40/60 and 60/40 (v/v %) ratios of ethylene glycol or glycerol with tap water, as compared with the uncoated fragments, are shown to have been effectively de-iced. The surface-characterizations data thus indicate that mixtures of glycerol or ethylene glycol with tap water can be practical de-icing agents for application to railway contact wires.
在美国、加拿大、中国、日本和韩国的寒冷气候中,铁路接触线结冰会导致电动列车和地铁车辆的运营计划出现重大问题和延误。作为防冰方法,已经探索和测试了手动除冰、接触线热运行、电阻丝加热除冰和化学除冰。其中,基于与汽车发动机防冻液相同概念的环保化学除冰方法可实际有效地应用于铁路车厂的接触线。在本研究中,将铁路接触线在 -30 和 -40°C 的冰箱中用不同比例(v/v%)的乙二醇/自来水和甘油/自来水的抗冰混合物以及自来水单独进行了涂层处理。在光学显微镜下观察线表面的形态变化。测量表面接触角以检查未涂层和涂层铁路接触线碎片之间的表面差异。最后,与未涂层的碎片相比,用乙二醇或甘油与自来水的 40/60 和 60/40(v/v%)比例涂层的碎片被证明已有效除冰。表面特性数据表明,乙二醇或甘油与自来水的混合物可以作为实用的除冰剂应用于铁路接触线。