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Trifunctional Epoxy Resin Composites Modified by Soluble Electrospun Veils: Effect on the Viscoelastic and Morphological Properties

机译:可溶性电纺纱修饰的三功能环氧树脂复合材料:对粘弹性和形态学特性的影响

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摘要

Electrospun veils from copolyethersulfones (coPES) were prepared as soluble interlaminar veils for carbon fiber/epoxy composites. Neat, resin samples were impregnated into coPES veils with unmodified resin, while dry carbon fabrics were covered with electrospun veils and then infused with the unmodified epoxy resin to prepare reinforced laminates. The thermoplastic content varied from 10 wt% to 20 wt%. TGAP epoxy monomer showed improved and fast dissolution for all the temperatures tested. The unreinforced samples were cured first at 180 °C for 2 h and then were post-cured at 220 °C for 3 h. These sample showed a high dependence on the curing cycle. Carbon reinforced samples showed significant differences compared to the neat resin samples in terms of both viscoelastic and morphological properties.
机译:由共聚醚砜(coPES)制备的电纺纱为碳纤维/环氧树脂复合材料的可溶性层间纱。将纯净的树脂样品用未改性的树脂浸渍到coPES面纱中,而干碳织物用电纺纱覆盖,然后注入未改性的环氧树脂以制备增强层压板。热塑性塑料含量为10重量%至20重量%。 TGAP环氧单体在所有测试温度下均显示出改善的快速溶解性。未增强的样品首先在180°C下固化2 h,然后在220°C下后固化3 h。这些样品显示出对固化周期的高度依赖性。与纯树脂样品相比,碳增强样品在粘弹性和形态学性能上均表现出显着差异。

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