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Toughened epoxy adhesive modified with core-shell nanoparticles containing epoxy groups on the surface

机译:用表面含有环氧基团的核壳纳米粒子改性的增韧环氧胶

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The epoxy resins were toughened with reactive core-shell nanoparticles(CSNPs) with butyl acrylate (BA) as the core and methyl methacrylate (MMA) copolymerizing with glycidyl methacrylate (GMA) as the shell.The chemical structure of the CSNPs was characterized by FT-IR.The morphology of toughened epoxy networks were analyzed by SEM and TEM,and their adhesion properties were also detected.The results show that mixing methods and CSNP concentration have great influence on the morphology and adhesion properties of the toughened epoxy networks.CSNPs are uniformly dispersed in the epoxy resins by the grinding method.The modified epoxy networks obtained from the modified epoxy networks prepared by the grinding method(MEPN2) with 10 wt% CSNPs show the best adhesion properties,and the increase in maximum peel strength,25°C sheer strength and 150°C sheer strength of the modified epoxy networks is 401.3%,46.9% and 27.6% respectively over the unmodified epoxy networks due to the small-scale coagulations of CSNPs.
机译:以丙烯酸丁酯(BA)为核,甲基丙烯酸甲酯(MMA)与甲基丙烯酸缩水甘油酯(GMA)为壳共聚的反应性核壳纳米粒子(CSNPs)对环氧树脂进行增韧。 -IR。通过SEM和TEM分析了增韧环氧网络的形貌,并检测了它们的粘附性能。结果表明,混合方法和CSNP浓度对增韧环氧网络的形貌和粘附性能有很大的影响。通过研磨方法(MEPN2)与10wt%CSNPs制备的改性环氧网络获得的改性环氧网络表现出最佳的粘合性能,并且最大剥离强度提高了25°。由于小规模的凝结,改性环氧网络的纯剪切强度和150°C剪切强度分别比未改性环氧网络高401.3%,46.9%和27.6%。 CSNP的信息。

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