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Evaluation of new GFRTP and CFRTP using epsilon caprolactam as matrix fabricated with VaRTM

机译:使用ε-己内酰胺作为VaRTM制备的基质评估新的GFRTP和CFRTP

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Thermoplastic resins used as a matrix of fiber reinforced thermoplastics (FRTPs) are composed of high polymers that remain highly viscous even at a higher temperature than their melting points. As a result, they need an even higher temperature, a higher pressure and a longer processing time to allow them to bond with fibers that require large and specialized equipment. In contrast, fiber-reinforced thermoset plastics (FRPs) can be easily molded owing to the use of lower viscosity liquid resin as the matrix using simpler devices. In this paper, a new fabrication method of FRTPs using in situ polymerizable ε caprolactam as the matrix is presented. This method uses vacuum-assisted resin transfer molding without the need for large and specialized equipment. The ε-caprolactam molecules were converted from their monomer form into a polyamide 6 resin, with ring-opening polymerization of ε-caprolactam during the molding process at a lower temperature than its melting temperature. The two kinds of FRTPs obtained using ε-caprolactam as the matrix had neither voids nor unfilled parts because ε-caprolactam had a very low viscosity before the polymerization. These FRTPs not only exhibit superior bending properties but also are suitable for high-speed molding, namely, within a few minutes of process time.
机译:用作纤维增强热塑性塑料(FRTP)基质的热塑性树脂由即使在高于其熔点的温度下仍保持高粘度的高聚物组成。结果,它们需要更高的温度,更高的压力和更长的处理时间,才能使其与需要大型专用设备的纤维粘合。相反,由于使用较简单的装置将较低粘度的液态树脂用作基质,因此可以轻松地模制纤维增强的热固性塑料(FRP)。本文提出了一种以原位可聚合ε-己内酰胺为基质的新型FRTPs的制备方法。该方法使用真空辅助树脂传递模塑,而无需大型且专用的设备。 ε-己内酰胺分子从其单体形式转变为聚酰胺6树脂,在成型过程中,ε-己内酰胺的开环聚合反应温度低于其熔融温度。使用ε-己内酰胺作为基质获得的两种FRTPs既没有空隙也没有未填充的部分,因为ε-己内酰胺在聚合前的粘度非常低。这些FRTP不仅显示出优异的弯曲性能,而且适用于高速成型,即在几分钟的加工时间内。

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