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首页> 外文期刊>Journal of Composite Materials >Void reduction in VARTM composites by compaction of dry fiber preforms with stationary and moving magnets
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Void reduction in VARTM composites by compaction of dry fiber preforms with stationary and moving magnets

机译:通过用静止和移动磁铁的干纤维预成型压实vartm复合材料的空隙减少

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摘要

Voids are the most common process-induced defects in composite laminates fabricated by vacuum assisted resin transfer molding (VARTM). Reduction or total elimination of these defects is essential for the improved performance and long-term durability of the structural composites. This study introduces a novel method that reduces the void content in VARTM laminates to below 1% by compacting the fibrous mat before infusion. The compaction is achieved by applying magnetic pressure on the vacuum bag by either stationary or moving magnets which are removed before the resin infusion. To assess the effectiveness of the proposed method, 6-, 12-, and 18-ply random mat glass/epoxy laminates are fabricated by VARTM using compacted and uncompacted mats and their properties are compared. In addition, different sets of magnets are used to investigate the effect of compaction levels on the resin flow and the quality of the final part. The placement of stationary magnets on the entire vacuum bag surface is practical for fabrication of small parts. For medium to large parts, however, magnets with a smaller footprint can be moved to apply the compaction pressure over a larger vacuum bag surface. The results show that by applying compaction pressure of 0.2 MPa or higher either by stationary or moving magnets on the dry preforms, the void volume fraction was decreased by 65%-95% to 0.1%-0.8% in all laminates.
机译:空隙是由真空辅助树脂转移成型(vartm)制造的复合层压板中最常见的过程诱导的缺陷。减少或总消除这些缺陷对于结构复合材料的改善性能和长期耐久性至关重要。本研究介绍了一种新的方法,通过在输注前压实纤维垫,将活泼层压板中的空隙含量降低到低于1%。通过在树脂输注前除去的固定或移动磁铁对真空袋上的磁力压力施加磁力来实现压实。为了评估所提出的方法的有效性,通过使用压实的垫和未加工的垫子制造6-,12-和18倍的随机垫玻璃/环氧层压板,并比较它们的性质。另外,不同的一组磁体用于研究压实水平对树脂流量和最终部分的质量的影响。固定磁体在整个真空袋表面上的放置对于制造小部件是实用的。然而,对于较大的零件,可以移动具有较小占地面积的磁体以在更大的真空袋表面上施加压力。结果表明,通过在干燥的预成型件上施加0.2MPa或移动磁铁的压实压力,空隙体积分数在所有层压板中降低65%-95%至0.1%-0.8%。

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