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Effect of expanded graphite/polyethylene glycol composite phase change material (EP-CPCM) on thermal and pavement performance of asphalt mixture

机译:膨胀石墨/聚乙二醇复合相变材料(EP-CPCM)对沥青混合料热路径性能的影响

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摘要

The application of phase change materials (PCMs) to the temperature regulation of asphalt pavements has recently become a hot topic of research. At the same time, studies concerning the influence of PCMs on the thermal and pavement performance of asphalt mixtures are still rarely available. The primary objective of this study was to reveal the effect of an expanded graphite/polyethylene glycol composite phase change material (EP-CPCM) on the thermal and pavement performance of asphalt mixtures. EP-CPCM was incorporated into an AC-13 asphalt mixture at various dosages. First, the thermal performance, including thermal constants and thermal regulation effects of the EP-CPCM-modified asphalt mixtures was evaluated, followed by an investigation of the pavement performance in terms of rutting and cracking resistance, moisture stability, and fatigue resistance. The results indicate that by reducing the heating and cooling rates as well as extending the heating and cooling times, EP-CPCM can regulate the temperature of asphalt pavements. The thermal balance inside the pavement and heat exchange between pavement and the ambient environment also improved. The rutting resistance and cracking resistance of asphalt mixtures were enhanced, mainly when the dosage of EP-CPCM was limited. However, the adverse effects of EP-CPCM on the moisture stability under hot water conditions, freeze-thaw conditions, fatigue life, and stress sensitivity gradually emerged when the dosage of EP-CPCM increased. (C) 2021 Elsevier Ltd. All rights reserved.
机译:相变材料(PCM)在沥青路面温度调节的应用最近成为了研究的热门话题。与此同时,关于PCMS对沥青混合物的热量和路面性能的影响的研究仍然很少。本研究的主要目的是揭示膨胀石墨/聚乙二醇复合相变材料(EP-CPCM)对沥青混合物的热量和路面性能的影响。 EP-CPCM在各种剂量下掺入AC-13沥青混合物中。首先,评估热性能,包括EP-CPCM改性沥青混合物的热常数和热调节效果,然后在旋转和开裂性,湿度稳定性和疲劳性方面进行路面性能的研究。结果表明,通过降低加热和冷却速率以及延长加热和冷却时间,EP-CPCM可以调节沥青路面的温度。路面之间的路面和热交换内的热平衡也有所提高。增强了沥青混合物的车辙抗性和抗裂性,主要是当EP-CPCM的用量有限时。然而,当EP-CPCM的用量增加时,EP-CPCM对热水条件下的水分稳定性,冻融病症,疲劳寿命和应激敏感性的不利影响。 (c)2021 elestvier有限公司保留所有权利。

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