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Highly Conductive Carbon Fiber Reinforced Concrete for Icing Prevention and Curing

机译:高导电性碳纤维增强混凝土的防结冰和固化

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摘要

This paper aims to study the feasibility of highly conductive carbon fiber reinforced concrete (CFRC) as a self-heating material for ice formation prevention and curing in pavements. Tests were carried out in lab ambient conditions at different fixed voltages and then introduced in a freezer at −15 °C. The specimens inside the freezer were exposed to different fixed voltages when reaching +5 °C for prevention of icing and when reaching the temperature inside the freezer, i.e., −15 °C, for curing of icing. Results show that this concrete could act as a heating element in pavements with risk of ice formation, consuming a reasonable amount of energy for both anti-icing (prevention) and deicing (curing), which could turn into an environmentally friendly and cost-effective deicing method.
机译:本文旨在研究高导电性碳纤维增强混凝土(CFRC)作为自热材料预防路面结冰和固化的可行性。在实验室环境条件下以不同的固定电压进行测试,然后将其引入-15°C的冰箱中。当达到+5°C以防止结冰时以及达到冰柜内部的温度即-15°C以使结冰固化时,冰柜内部的样品要承受不同的固定电压。结果表明,这种混凝土可以作为人行道中的加热元件,有结冰的风险,为防冰(预防)和除冰(固化)消耗了合理的能量,这可以转变为对环境友好且具有成本效益的除冰方法。

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