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Thermal Performance of Novel Multilayer Cool Coatings for Asphalt Pavements

机译:新型沥青路面多层凉爽涂料的热性能

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摘要

Cool coatings are typically used to address high-temperature problems with asphalt pavements, such as rutting. However, research on the effect of the coating structure on the cooling performance remains a major challenge. In this paper, we used a three-layer cool coating (TLCC) to experimentally investigate the effects of the reflective layer, the emissive layer, and the thermal insulation layer on the cooling effect using a self-developed cooling effect evaluation device (CEED). Based on the test results, we further established temperature fields inside uncoated and coated samples, which were used to study how the TLCC affects the inner temperature field. Our results showed that the reflective layer was the main parameter influencing the cooling effect (8.18 °C), while the other two layers were secondary factors that further improved the cooling effect to 13.25 °C. A comparison of the temperature fields showed that the TLCC could effectively change the internal temperature field compared with the uncoated sample, for example, by reducing the maximum temperature inside, whose corresponding position was also deeper. As the depth increased, the cooling effect of the TLCC first increased and then decreased slowly. The results emphasize the importance of considering the effect of the coating structure on the cooling performance. This study provides a reference for effectively alleviating high-temperature distresses on asphalt pavement, which is conducive to the sustainable development of pavements.
机译:冷涂料通常用于解决沥青路面的高温问题,例如车辙。然而,研究涂层结构对冷却性能的影响仍然是主要挑战。在本文中,我们使用三层冷却涂层(TLCC),通过使用自行开发的冷却效果评估装置(CEED),实验研究了反射层,发射层和隔热层对冷却效果的影响。根据测试结果,我们进一步建立了未涂层和涂层样品内部的温度场,这些温度场用于研究TLCC如何影响内部温度场。我们的结果表明,反射层是影响冷却效果(8.18°C)的主要参数,而其他两层是次要因素,它们进一步将冷却效果提高到13.25°C。对温度场的比较表明,TLCC可以有效地改变内部温度场,例如,通过降低内部最高温度来降低内部温度场,而内部最高温度相应的位置也更深。随着深度的增加,TLCC的冷却效果首先增加,然后缓慢降低。结果强调了考虑涂层结构对冷却性能的影响的重要性。该研究为有效减轻沥青路面高温病害提供参考,有利于路面的可持续发展。

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