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Thermal and rheological characterization of bitumen modified with microencapsulated phase change materials

机译:微囊化相变材料改性沥青的热流变特性

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The growing interest in the application of phase change materials (PCMs) and their benefit of storing or releasing thermal energy, attracted material scientists to investigate the suitability of PCM in bituminous road paving materials and to study the rheology of PCM-modified bitumen in particular. The use of PCM in road paving materials can contribute to minimize the distresses from seasonal extreme temperature variations in asphalt mixtures. In order to avoid or delay freezing and extreme low temperatures in asphalt pavements, the application of low temperature PCMs can be of great importance. Therefore, bitumens (160/220, 70/100 and 10/20) modified with microencapsulated PCM ( PCM) at low melting temperature were investigated. The dynamic shear rheometer (DSR) and differential scanning calorimetry (DSC) were used to evaluate the mechanical and thermal properties respectively. Based on the results, modification with 3% PCM by mass of bitumen has no adverse effects on bitumen rheology but the advantage of minimizing/regulating temperature variations. Furthermore, it is anticipated that the protection of phase change materials as in this case using a polymeric shell is very important for its use in bitumen without reducing its rheological performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:人们对相变材料(PCM)的应用及其存储或释放热能的好处的兴趣日益浓厚,吸引了材料科学家来研究PCM在沥青路面摊铺材料中的适用性,尤其是研究PCM改性沥青的流变性。在道路铺路材料中使用PCM可以最大程度地减少沥青混合物中季节性极端温度变化造成的困扰。为了避免或延迟沥青路面的冻结和极端低温,低温PCM的应用可能非常重要。因此,研究了在低熔融温度下用微囊化的PCM(PCM)改性的沥青(160 / 220、70 / 100和10/20)。动态剪切流变仪(DSR)和差示扫描量热法(DSC)分别用于评估机械性能和热性能。根据该结果,用3质量%的沥青PCM进行改性对沥青流变学没有不利影响,但是具有最小化/调节温度变化的优点。此外,预期在这种情况下使用聚合物壳来保护相变材料对于其在沥青中的使用而不会降低其流变性能是非常重要的。 (C)2019 Elsevier Ltd.保留所有权利。

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