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Vacuum infused anionic polyamide-6 composites a quest for uniformity

机译:真空注入阴离子聚酰胺-6复合材料以寻求均匀性

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摘要

In recent years, the use of thermoplastic composites (TPC) increased significantly because of their low cost, fast processing cycles and recyclability. In an effort to provide a manufacturing technique well suited for large TPC parts, Delft University of Technology has developed an infusion process based on a reactive anionic polyamide-6 (APA-6) resin system. Following recent work where significant differences in mechanical and physical laminates property with respect to flow direction were identified, the work presented in this thesis aims at improving laminate uniformity by testing different heating set-ups and infusion strategies.ududFirst, the fibre coupling agent, contained in the proprietary 8225 finish, was tested to asses its compatibility with APA-6. Results show that this fibre coupling agent is compatible with the APA-6 matrix system, but is not better or worse that the previous 8207 finishudused in previous work done at TU Delft.ududThrough a second study, key laminate properties were evaluated (ILSS, crystallinity and degree of conversion) using two different heating set-ups (platen press and infrared panels) over three different curing temperatures (160-180℃). The results of this study identified that the infrared method yielded better laminates than the platen press set-up. However, most laminate produced still had non-uniform properties with respect to flow direction, but laminates cured at 180℃ showed better average properties.ududBased on these results, to improve property uniformity, a third study was conducted using the double infusion strategy: a low infusion temperatures (110-150℃) followed by a curing step performed at 180℃. The results showed that the best laminate uniformity could be achieved with this double infusion strategy at infusion temperatures between 110℃ and 130℃. The Tm and ILSS of these laminates exhibited lower standard deviation when compared to the one infused at 150℃ and the one polymerised with a non-isothermal strategy. This uniformity enhancement was also validated with comparative laminate C-scans and optical microscopy results.
机译:近年来,由于热塑性复合材料(TPC)的低成本,快速的加工周期和可回收性,其使用量显着增加。为了提供一种非常适合大型TPC零件的制造技术,代尔夫特理工大学开发了一种基于反应性阴离子聚酰胺6(APA-6)树脂体系的灌注工艺。在确定了机械和物理层压板性能相对于流向的显着差异的最新工作之后,本文提出的工作旨在通过测试不同的加热设置和注入策略来提高层压板的均匀性。 ud ud首先,纤维耦合经过测试,可以评估专有的8225面漆中所含的塑料代理是否与APA-6兼容。结果表明,该纤维偶联剂与APA-6基质体系兼容,但与TU代夫特大学先前工作中使用的先前的8207整理剂相比并没有好坏。在三种不同的固化温度(160-180℃)下,使用两种不同的加热装置(压板和红外板)进行了评估(ILSS,结晶度和转化度)。这项研究的结果表明,红外方法比压板机更能生产出更好的层压板。然而,大多数生产的层压板在流动方向上仍具有不均匀的性能,但在180℃下固化的层压板表现出更好的平均性能。 ud ud基于这些结果,为提高性能均匀性,使用了双注入技术进行了第三项研究策略:低注入温度(110-150℃),然后在180℃进行固化步骤。结果表明,在110℃至130℃的注入温度下,采用这种双重注入策略可以获得最佳的层压板均匀性。与在150℃下注入的层压板和采用非等温策略聚合的层压板相比,这些层压板的Tm和ILSS表现出较低的标准偏差。这种均匀性的提高还通过对比层压C扫描和光学显微镜结果得到了验证。

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    Charron Jean-François;

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  • 年度 2011
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