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Influence of surface modified graphene oxide on the mechanical performance and curing kinetics of epoxy resin

机译:表面改性石墨烯氧化物对环氧树脂机械性能及固化动力学的影响

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摘要

In this study, the hyperbranched polyester were successfully grafted onto graphene oxide (GO). The mechanical performance and curing kinetics of epoxy resin (EP), EP/ graphene oxide (EP/GO), and EP/ hyperbranched polyester grafted GO (EP/GO-B) were investigated by means of mechanical tests and differential scanning calorimetry (DSC). Results revealed that the presence of GO lowered the cure temperature and accelerated the curing of EP, and the addition of GO-B exhibited a stronger effect in accelerating the cure of EP compared with GO. Activation energies were calculated using Kissinger approach, and Ozawa approach, respectively. Results revealed lowered activation energy after the addition of GO or GO-B at low degrees of cure, indicating that GO had a large effect on the curing reaction. The presence of GO facilitated the curing reaction, especially the initial epoxy-amine reaction. Moreover, GO-B exhibited better performance. Related mechanism was proposed.
机译:在本研究中,将超支化聚酯成功接枝到氧化石墨烯(GO)上。 通过机械试验和差示扫描量热法研究了环氧树脂(EP),EP /石墨烯氧化物(EP / GO)和EP /超支化聚酯接枝GO(EP / GO-B)的机械性能和固化动力学(EP / GO-B)(DSC )。 结果表明,去降低固化温度并加速EP的固化,加入GO-B与GO相比加速EP的固化效果更强。 使用基辛格方法和ozawa方法计算激活能量。 结果显示在低固化程度下添加或Go-B后的激活能量降低,表明持续对固化反应有很大的影响。 促进固化反应的存在,尤其是初始环氧胺反应。 此外,GO-B表现出更好的性能。 提出了相关机制。

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