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首页> 外文期刊>Journal of nanoscience and nanotechnology >Preparation and Repeated Repairability Evaluation of Sunflower Oil-Type Microencapsulated Filling Materials
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Preparation and Repeated Repairability Evaluation of Sunflower Oil-Type Microencapsulated Filling Materials

机译:向日葵油型微胶囊化填充材料的制备和重复可修复性评价

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Cracks are the main challenges for asphalt pavement, which should be timely repaired. One of the most commonly used repairing methods is to fill the binding materials into cracks, but the repeated repairing ability is insufficient. The self-healing microcapsule technologies provide the potentials for enhancing the repeated repairing ability of filling materials. Therefore, the microcapsule core material was selected from sunflower oil in this study, and the capsular wall material was selected from melamine-urea-formaldehyde resin, which was used to prepare the microcapsule by using in-situ polymerization method. Three kinds of microcapsules with different particle sizes were prepared by adjusting the emulsifier dosage and core wall ratio. The microstructure, molecular structure, thermal stability, and dispersion features were further studied, and the effects of microcapsules with different particle sizes on the repeated repairability of the filling materials were evaluated via the fatigue-repair-fatigue test. In addition, the traditional regenerative microcapsules were compared to determine the optimal particle size range for sunflower oil microcapsules. According to the experimental research, it was thus concluded that the emulsion droplet size distribution was most concentrated when the emulsifier content was 0.7%; and when the core-wall ratio was 1.3:1, the microcapsules had uniform particle size and good dispersion effect. When the microcapsule emulsification rate was 900 rpm and microcapsule content was 2%, then the repeated repair effect for the microcapsule crack filling materials was optimal. The sunflower oil type microcapsule therefore meets the filling temperature requirement for the filler.
机译:裂缝是沥青路面的主要挑战,应及时修复。一个最常用的方法修复的是填充材料结合到破解,但反复修复能力是不够的。自修复微胶囊技术,提供增强的填充材料的反复修复能力的潜力。因此,从葵花油中选择本研究中的微胶囊芯材料,和由蜜胺 - 脲 - 甲醛树脂,这是用于通过使用原位聚合方法制备微胶囊被选择囊壁材料。三种不同粒径的微胶囊通过调节乳化剂用量和心墙比率制备。微观结构,分子结构,热稳定性,和分散特征进行进一步研究,并用在填充材料的重复可修复不同粒度的微胶囊的效果经由疲劳修复疲劳试验进行了评价。此外,传统的再生微胶囊比较,以确定最优的粒径范围的向日葵油的微胶囊。根据实验研究,有人从而结束该乳液的液滴尺寸分布是最集中当乳化剂的含量为0.7%;和当芯壁比为1.3:1,微胶囊均匀的颗粒尺寸和良好的分散效果。当微胶囊乳化速率为900rpm和微胶囊的含量为2%,则对于在微囊裂缝填充材料重复修复效果是最佳的。因此,向日葵油型微胶囊符合该填料的填充温度要求。

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