亚麻预成型材料在复合材料成型过程中的压实性能

IF 2.3 3区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES Journal of Composite Materials Pub Date : 2024-08-05 DOI:10.1177/00219983241266928
Rishad Rayyaan, Zeshan Yousaf, Mahmudul Akonda, Prasad Potluri, William Richard Kennon
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引用次数: 0

摘要

亚麻增强复合材料因其绿色生产、可回收利用以及良好的比强度而在汽车和民用工业中越来越受欢迎。制造复合材料时,首先要对多层亚麻预型件施加压缩压力,然后进行树脂浸渍,从而造成嵌套,即一层纤维与相邻层纤维嵌合。预制构件在压缩过程中的这种分层是决定复合材料纤维体积分数的一个重要特征。在这项研究中,研究了四种亚麻结构,如:无纺布带、单向织物、啤酒花织物和带玻璃纤维纱的无纺布带,在 1 到 10 巴的压力下,在单层和多层状态下,在干燥和潮湿状态下,在不同的加载周期下,以及在不同层取向(0°/0° 和 0°/90°)下的压实行为。对单层和多层堆叠的嵌套进行了计算。结果表明,与编织结构相比,无纺结构的厚度减薄幅度更大。与编织结构相比,压实下无纺布结构的嵌套系数大于 1,表明嵌套程度较低。就反复压实下的厚度而言,在所有结构中,第一次压实时的厚度减幅最大,而第二次和第三次压实时的减幅最小。在对湿润性进行研究时,与干燥阶段相比,所有结构的湿层厚度减少幅度都更大。最后,对复合材料的纤维体积分数进行了比较研究。
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Compaction behaviour of flax-preforms during forming for composites
Flax reinforced composites are becoming popular in automotive and civil industries due to their green production and recycling, and for good specific strength. To manufacture composites, firstly a multi-layer of flax preforms undergo compressive pressure before resin impregnation that causes nesting, wherein, fibres of one layer fit into the adjacent layers. This debulking of the preforms under compression is an important feature that determines the fibre volume fraction of composites. In this study, four flax structures such as: nonwoven tapes, unidirectional fabric, hopsack fabric, and nonwoven tape with glass veils were investigated for compaction behaviour under pressures between 1 and 10 bars, in single and multi-layer states, in dry and wet states, under different loading cycles, and in different ply orientations (0°/0° and 0°/90°). Nesting has been calculated for single- and multi-layer stacks. It was observed that the nonwoven structures shown greater thickness reduction compared to woven structures. Nesting factor was found to be higher than 1 for the nonwoven structures under compaction, indicating lower nesting, compared to the woven structures. In terms of thickness under repeated compaction, the reduction was the highest during first compressions, compared to the 2nd and 3rd compressions, for all the structures. When wettability was examined, thickness reduction for wet plies was higher for all the structures, compared to the dry phase. Finally, a comparative study was shown to evaluate fibre volume fractions of the composites.
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来源期刊
Journal of Composite Materials
Journal of Composite Materials 工程技术-材料科学:复合
CiteScore
5.40
自引率
6.90%
发文量
274
审稿时长
6.8 months
期刊介绍: Consistently ranked in the top 10 of the Thomson Scientific JCR, the Journal of Composite Materials publishes peer reviewed, original research papers from internationally renowned composite materials specialists from industry, universities and research organizations, featuring new advances in materials, processing, design, analysis, testing, performance and applications. This journal is a member of the Committee on Publication Ethics (COPE).
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