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Nanofilled polyethylene terephthalate fibers for the production of hierarchical polymer based composites

机译:纳米填充的聚对苯二甲酸乙二醇酯纤维,用于生产分层的聚合物基复合材料

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The potential improvement of physical and mechanical properties in nanostructured composites can be fully exploited by proper distribution of the nanofillers in the polymer matrix, which strongly affects both their final properties and processability. A nanofilled thermosetting polymer can be used as a matrix for continuous fibers when the alignment of a high aspect ratio nanofiller is achieved: in this case a hierarchical composite is obtained. In this work a new processing technology for the production of hierarchical polymer based composites is proposed. First, the alignment of graphene nanoplatelets (GNPs) in thermoplastic fibers of amorphous polyetylene terephthalate (PETg) is achieved by a fiber spinning process. The obtained nanocomposite fibers with a very high filler content (10 wt%) are then transferred into a reactive epoxy resin. After dissolution of PETg, the nanofillers remained oriented in the thermosetting matrix. The characterization of the obtained nanocomposites has been carried by means of different experimental techniques which provided complementary results.
机译:纳米填料在聚合物基体中的适当分布可以充分利用纳米结构复合材料中物理和机械性能的潜在改善,这会极大地影响其最终性能和可加工性。当实现高长径比的纳米填料的排列时,可以将纳米填充的热固性聚合物用作连续纤维的基质:在这种情况下,可以获得分层的复合材料。在这项工作中,提出了一种用于生产分层聚合物基复合材料的新加工技术。首先,无定形聚对苯二甲酸乙二醇酯(PETg)的热塑性纤维中石墨烯纳米片(GNP)的排列是通过纤维纺丝工艺实现的。然后将获得的具有非常高的填料含量(10 wt%)的纳米复合纤维转移到反应性环氧树脂中。 PETg溶解后,纳米填料在热固性基质中保持定向。所获得的纳米复合材料的表征已经通过提供互补结果的不同实验技术进行了。

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