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Synthesis and Self-Healing Mechanism of Self-Healing Epoxy Microcapsule Materials

机译:自愈合环氧微胶囊材料的合成与自愈合机理

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Self-healing epoxy resin microcapsules are prepared by interfacial polymerization, in which the core materials are epoxy resin, the wall materials are constructed with triethylenetetramine and the epoxy resin. The orthogonal experimental L9(3~4) are designed to investigate the influence of emulsifier dosage, hardener dosage, curing temperature and hardener adding rate on the core content and storage life of epoxy resin microcapsule. Scanning electron microscope is used to characterize surface topography and distribution. Fourier transform infrared spectroscopy is used to study reaction mechanism of the microcapsule wall materials, respectively. The results indicate that when the dosage of emulsifier is 1.2%, the dosage of hardener is 1.2%, the hardener droplets adding rate is 1.2 g/h and the curing temperature is 50°C, the prepared microcapsules with a high level of core content are spherical in shape with good surface compactness and dispersibility. Future research may focus on improving microcapsule storage stability and the obstacles encountered in practical applications.
机译:通过界面聚合制备自愈的环氧树脂微胶囊,其中芯材料是环氧树脂,壁材料用三乙基甲胺和环氧树脂构成。正交实验L9(3〜4)旨在研究乳化剂剂量,硬化剂量,固化温度和硬化剂添加率对环氧树脂微胶囊的核含量和储存寿命的影响。扫描电子显微镜用于表征表面形貌和分布。傅里叶变换红外光谱分别用于研究微胶囊壁材料的反应机理。结果表明,当乳化剂的剂量为1.2%时,硬化剂的剂量为1.2%,硬化剂液滴添加速率为1.2g / h,固化温度为50℃,制备的微胶囊具有高水平的核心含量是球形的,表面紧凑性和分散性良好。未来的研究可以专注于改善微胶囊储存稳定性和在实际应用中遇到的障碍物。

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