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首页> 外文期刊>Materials >Evaluating and Modeling the Internal Diffusion Behaviors of Microencapsulated Rejuvenator in Aged Bitumen by FTIR-ATR Tests
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Evaluating and Modeling the Internal Diffusion Behaviors of Microencapsulated Rejuvenator in Aged Bitumen by FTIR-ATR Tests

机译:FTIR-ATR试验评估和建模微胶囊化再造成沥青中的内部扩散行为

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Microencapsulated rejuvenator has been attracted much attention for self-healing bitumen. The diffusion coefficient is one of the key parameters to estimate the feasibility of rejuvenator to age bitumen. The objective of this research was to evaluate diffusion behaviors of microencapsulated rejuvenator in aged bitumen by a FTIR-ATR method. Various microcapsule samples were mixed in bitumen to form thin films. The core material of microcapsules used as rejuvenator was diphenylsilane (DPS), its fairly specific absorption band at 843 cm ?1 was selected as a marker band to calculate the diffusion coefficient (D). The microstructure parameters, including contents, mean size and mean shell thickness of microcapsules, were considered to understand the diffusion behaviors under different temperatures (20, 30, 40 and 50 °C) in bitumen. The results showed that a larger mean size of microcapsules did not greatly affect the D values under the same temperature. In contrast, a higher mean shell thickness decreased the D values because of the decrement of damage probability of microcapsules under the same content. With the same microcapsule sample in bitumen, the D values presented a trend of linear increase when the content of microcapsules was increased. All these results indicated that the microstructure affected the diffusion behaviors based on the concentration of released rejuvenator. A preliminary model of diffusion behaviors of microencapsulated rejuvenator in bitumen was given based on the Arrhenius equation considering the microstructure of microcapsules, the amount of released rejuvenator and the age degree of bitumen. This model may be a guide to the construction and application of self-healing bitumen using microcapsules.
机译:微胶囊化的再造成了对自我治疗沥青的关注。扩散系数是估计恢复剂的可行性到年龄沥青的关键参数之一。本研究的目的是通过FTIR-ATR方法评估微囊化恢复剂的扩散行为。将各种微胶囊样品混合在沥青中以形成薄膜。用作Rejuvenator的微胶囊的核心材料是二苯基硅烷(DPS),其相当特异性的吸收带在843cm = 1中选择为标记带以计算扩散系数(D)。认为微观结构参数,包括微胶囊的含量,平均壳壳厚度,以了解沥青中不同温度(20,30,40和50℃)下的扩散行为。结果表明,在相同温度下,微胶囊的较大平均尺寸不会影响D值。相反,由于在相同内容下的微胶囊的损伤概率减小,更高的平均壳厚度降低了D值。在沥青中具有相同的微胶囊样品,当微胶囊的含量增加时,D值呈现线性增加的趋势。所有这些结果表明,微观结构基于释放雷语浓度影响扩散行为。基于考虑微胶囊的微观结构,释放的再烧伤剂和沥青年龄程度,给出了沥青中微胶囊化雷化器的扩散行为的初步模型。该模型可以是使用微胶囊构造和应用自愈沥青的指导。

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