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首页> 外文期刊>Journal of Applied Polymer Science >Microencapsulation of imidazole curing agents by spray-drying method
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Microencapsulation of imidazole curing agents by spray-drying method

机译:喷雾干燥法将咪唑固化剂微囊化

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An epoxy resin-imidazole system was used to form the adhesives for the anisotropic conducting film (ACF), and a latent curing system was necessary for the ACF. In this study, imidazoles were microencapsulated for the latent curing system. Polycaprolactone (PCL) was used as the wall material, and the spray-drying method was used to form the microcapsule. The imidazoles used in this study were imidazole, 2-methylimidazole, and 2-phenylimidazole. The effect of the ratio of PCL to imidazoles, and the effect of PCL molecular weight were investigated during the microcapsule formation. The amount of imidazoles in the microcapsule was measured using thermogravimetric analyzer and elemental analysis. The permeability of the microcapsules was measured in ethanol, and the shelf life of the microcapsules was studied for the epoxy resin. The curing behavior of these microcapsules to epoxy resin was examined using differential scanning calorimeter. In the curing reaction, the microcapsule of imidazoles exhibited delayed kinetic behaviors compared to pure imidazoles. And the curing times were estimated at 150 and 180°C using an indentation method. These microcapsules of imidazoles exhibited a long shelf life, and the curing did not occur in some of the microcapsule-epoxy resin systems at 20°C for 15 days.
机译:环氧树脂-咪唑体系用于形成各向异性导电膜(ACF)的粘合剂,而潜在的固化体系对于ACF是必需的。在这项研究中,将咪唑微囊化为潜在的固化体系。将聚己内酯(PCL)用作壁材料,并使用喷雾干燥法形成微囊。本研究中使用的咪唑为咪唑,2-甲基咪唑和2-苯基咪唑。在微胶囊形成过程中研究了PCL与咪唑的比例的影响以及PCL分子量的影响。使用热重分析仪和元素分析法测量微胶囊中咪唑的量。在乙醇中测量微胶囊的渗透性,并研究环氧树脂的微胶囊的保存期限。使用差示扫描量热仪检查了这些微胶囊对环氧树脂的固化行为。在固化反应中,与纯咪唑相比,咪唑微胶囊显示出延迟的动力学行为。并且使用压痕法估计固化时间在150和180℃。这些咪唑的微胶囊显示出长的保存期限,并且在某些微胶囊-环氧树脂体系中在20℃下15天未发生固化。

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