利用红外热成像技术研究导电沥青胶料的产热效率

A. Arabzadeh, H. Ceylan, Sunghwan Kim, Alireza (Ali) Sassani, K. Gopalakrishnan
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引用次数: 7

摘要

生产可持续无冰无雪路面的新兴技术之一是使用导电路面,例如,导电沥青混凝土(ECAC),它可以通过电阻加热融化冰雪。用导电材料改性沥青混凝土胶浆是生产高质量ECAC的一种很有前途的方法。本研究的目的是评估导电沥青胶合料(ECAM)样品在低于冰点温度下的导电性和产热效率——模拟北美冬季的恶劣天气条件。为此,用不同体积含量的碳纤维(CF)对沥青胶泥进行电改性。然后将ECAM样品在10分钟的时间窗口内以60V AC供电,以便通过红外热像仪(IRT)表征其产热能力。通过电阻率测量和热数据分析,确定了实现ECAM快速发热的最合理的CF含量;这对于在冬季实现高效的公路、桥梁和机场路面操作具有未来的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating the Heat Generation Efficiency of Electrically-Conductive Asphalt Mastic Using Infrared Thermal Imaging
One of the emerging technologies for producing sustainable ice-and snow-free pavements is the use of electrically-conductive surface courses, e.g., electrically-conductive asphalt concrete (ECAC) that can melt ice and snow through resistive heating. Modifying the mastic in asphalt concrete with electrically-conductive materials is a promising approach for producing high-quality ECAC. The objective of this study is to evaluate electrical conductivity and heat generation efficiency of electrically-conductive asphalt mastic (ECAM) specimens at a below-freezing temperature—simulating the harsh weather conditions in North America during the wintertime. To this end, asphalt mastic was electrically modified with carbon fiber (CF) at varying volume contents. The ECAM specimens were then powered by 60V AC during a time window of 10 minutes so that their heat generation capacity could be characterized through infrared thermography (IRT). Based on the resistivity measurements and thermal data analysis, the most reasonable CF content enabling rapid heatgenerating ECAM was identified; this has future implications with respect to achieving efficient highway, bridge, and airport pavement operations during wintertime.
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