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Direct impregnation of thermoplastic melt into flax textile reinforcement for semi-structural composite parts

机译:热塑性熔体直接浸渍半结构复合部件的亚麻纺织加固

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摘要

We performed an experimental study to manufacture flax fiber textile reinforced thermoplastic composites by direct impregnation method in a closed mold. To reduce the process time, we adopted compression resin transfer molding resin because of its short flow path during the highly viscous resin impregnation process. Fiber preheating process was introduced before the impregnation process in order to avoid the resin cooling down when contacting the flax fibers. Optimal process temperature conditions such as mold temperature, resin temperature and fiber temperature were experimentally determined while minimizing the effect of thermal degradation of flax fiber and obtaining good impregnation quality. In particular, a sequential pressure cycle was proposed to improve the impregnation quality and to obtain the uniform fiber volume fraction in the final part. The impregnation quality was assessed by the density measurement and by the micrographic image analysis. The mechanical properties of the final parts were comparable with the literature values obtained by the compression molding of matrix-fiber premixed materials such as commingle yarns or film stacking, whereas the process cycle time of was much shorter than the other conventional methods in the literature. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们进行了一种实验研究,通过在封闭模具中直接浸渍方法制造亚麻纤维纺织品增强热塑性复合材料。为了减少处理时间,我们采用压缩树脂转移成型树脂,因为其在高粘性树脂浸渍过程中的短流动路径。在浸渍过程之前引入纤维预热过程,以避免在接触亚麻纤维时冷却树脂。实验确定了最佳过程温度条件,例如模具温度,树脂温度和纤维温度,同时最小化亚麻纤维的热降解并获得良好的浸渍质量的影响。特别地,提出了序贯压力循环以改善浸渍质量并在最终部分中获得均匀的纤维体积分数。通过密度测量和微型图像分析评估浸渍质量。最终部件的机械性能与通过通过诸如通用纱线或薄膜堆叠的基质 - 纤维预混材料的压缩成型而获得的文献值相当,而过程循环时间比文献中的其他常规方法短得多。 (c)2016年Elsevier B.v.保留所有权利。

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