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Cure Monitoring and Characterization of Epoxy/Amine Networks, Modified with 1-Butyl-3- Bethylimidazolium Tetrafluoroborate Ionic Liquid

机译:固化环氧/胺网络的监测和表征,用1-丁基-3-甲基乙基咪唑鎓四氟硼酸盐离子液体改性

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In the present work, electrochemical impedance spectroscopy (EIS) was employed for cure monitoring of bisphenol A/F based epoxy resin- polyoxypropylenediamine hardener systems modified with various concentrations of 1-butyl-3- methylimidazolium tetrafluoroborate ([BMIM]BF4) ionic liquid (IL). These systems exhibited phase separation induced by an increase in the molar mass through the curing of the resin. The progress of the curing process was accompanied by a steady increase of impedance for all types of samples, as expected, due to the increasing viscosity of the medium for increased degree of cure. The results were compared to those of unmodified resin-hardener systems. The sensitivity of EIS as a cure monitoring technique increased dramatically with the addition of the IL. The cure kinetics of the epoxy resin was characterized by differential scanning calorimetry and the data were used to create a model for comparison with the EIS results. The change of the ionic conductivity during curing as a function of IL concentration and the effect of IL loading on mechanical properties of the resin were also studied. We demonstrate that [BMIM]BF4 loading of 5wt.% increased the room temperature ionic conductivity of the fully cured product by an order of magnitude with only a 2.5% reduction in compression strength from that of pure epoxy.
机译:在本作工作中,采用电化学阻抗光谱(EIS)用于治疗基于双酚A / F基的环氧树脂 - 聚氧基二胺化合物固化物硬化系统,其改性各种浓度的1-丁基-3-甲基咪唑鎓四氟硼酸盐([Bmim] BF4)离子液体( IL)。这些系统通过树脂固化而表现出通过摩尔质量的增加引起的相分离。固化过程的进展伴随着所有类型样品的阻抗增加,因为培养基的粘度增加了治疗程度的增加。将结果与未改性的树脂硬化系统的结果进行比较。随着IL的添加,EIS作为固化监测技术的敏感性随着IL的增加而增加。环氧树脂的固化动力学通过差示扫描量热法表征,数据用于创建模型,以与EIS结果进行比较。还研究了固化期间的离子电导率的变化以及IL浓度的函数和IL负载对树脂机械性能的影响。我们证明[Bmim] BF4负载5wt。%将完全固化产物的室温离子电导率提高,纯环氧树脂的压缩强度降低2.5%。

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