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Ionic liquids facilitated dispersion of chitin nanowhiskers for reinforced epoxy composites

机译:离子液体促进几丁蛋白纳米须用于增强环氧复合材料的分散

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摘要

In this work, we propose a novel approach to produce a high-strength epoxy nanocomposite using ionic liquids facilitated dispersion of chitin nanowhiskers (CNWs). Samples with 0-3 wt% CNWs and 1 wt% of [Emim][OAc] were fabricated by mixing, casting, and curing. The morphological observations of the ethanol/ionic liquid suspensions by TEM indicated that [Emim][OAc] helped in dispersing the CNWs. The tensile, impact, dynamical mechanical properties, and thermal stability of the composites were further evaluated to access the reinforcing effect of CNWs. Increase of 35 % tensile strength, 175 % toughness and 90 % impact strength were observed upon addition of 2 wt% of CNWs. Thermal stability of the epoxy was not affected by the addition of CNWs. The SEM observations of the composites evidenced that the fracture mechanisms had changed upon CNWs addition. This work shows the advantage of the novel approach using ionic liquids as nanofiller dispersant in fabricating CNWs nanocomposites.
机译:在这项工作中,我们提出了一种新的方法来生产使用离子液体的高强度环氧纳米复合物,便于几丁酸纳米须(CNWS)的分散。 通过混合,浇铸和固化,制造具有0-3wt%CNW和1wt%的[emim] [emim] [Oac]的样品。 TEM的乙醇/离子液体悬浮液的形态学观察表明[emim] [OAC]有助于分散CNWS。 进一步评估复合材料的拉伸,冲击,动力学机械性能和热稳定性以获得CNWS的增强效果。 加入2wt%的CNWs,观察到增加35%拉伸强度,175%韧性和90%的冲击强度。 环氧树脂的热稳定性不受加入CNW的影响。 复合材料的SEM观察证明了断裂机制在CNW添加时已经改变了。 这项工作显示了使用离子液体作为制造CNWS纳米复合材料的纳米填充分散剂的新方法的优点。

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