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Investigation of de-icing of roads with conductive concrete pavement containing carbon fibre-reinforced polymer (CFRP)

机译:含碳纤维增强聚合物(CFRP)的导电混凝土路面对道路除冰的研究

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摘要

In this article, an electrically conductive concrete slab was made using carbon fibre-reinforced polymer (CFRP) and adding it to the concrete matrix. The purpose of making these conductive concrete slabs was evaluating the potential of de-icing the conductive concrete slabs due to electrical heating generated and also, investigating the mechanical strength of concrete samples. In this experiment, two direct and alternating electric current of 3.75 V were used. Using digital thermocouples, the slab surface temperatures were measured and recorded over time. The increase in the compressive strength of cubic concrete samples with the dimensions of 100 mm and 1 and 2% of CFRP, as compared with plain concrete specimens, was 8.39 and 21.43%, respectively. Also, increase in the flexural strength of beam concrete samples with the dimensions of 100 mm x 100 mm x 500 mm and 1 and 2% of CFRP, as compared with plain concrete specimens, was 5.62 and 5.34%, respectively. The temperature of concrete slabs containing 1% and 2% of CFRP in a 3.75-V alternating current at the time of 200 min was increased from -10 to 10.5 degrees C and 11.7 degrees C, respectively. The temperature of the slabs under the direct current of 3.75 V at the same time was increased to 5.5 and 6.4 degrees C, respectively. The results indicated that concrete slabs containing CFRPs, besides having proper mechanical properties, had a superior ability in de-icing.
机译:在本文中,使用碳纤维增强聚合物(CFRP)制成了导电混凝土板,并将其添加到混凝土基质中。制备这些导电混凝土板的目的是评估由于产生的电热而使导电混凝土板除冰的可能性,并且还研究混凝土样品的机械强度。在此实验中,使用了3.75 V的两个直流电和交流电。使用数字热电偶,测量并记录随时间变化的平板表面温度。与普通混凝土试样相比,尺寸为100 mm,CFRP为1%和2%的立方混凝土试样的抗压强度分别提高了8.39%和21.43%。此外,与普通混凝土试样相比,尺寸为100 mm x 100 mm x 500 mm的CFRP试样的抗弯强度分别为5.62%和5.34%,分别是CFRP的1%和2%。在200分钟的时间里,在3.75 V交流电中,含有1%和2%CFRP的混凝土板的温度分别从-10摄氏度增加到10.5摄氏度和11.7摄氏度。同时,在3.75 V的直流电下,板坯的温度分别升高到5.5和6.4摄氏度。结果表明,含有CFRP的混凝土板除具有适当的机械性能外,还具有优异的除冰能力。

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