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Fabrication of High Quality Large Wet Lay-Up/Vacuum Bag Laminates by Sliding a Magnetic Tool

机译:通过滑动磁性工具制造高质量的大型湿叠/真空袋层压板

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摘要

This study presents a novel method to fabricate high-quality, large composite parts which can be used in a wet lay-up/vacuum bag (WLVB) process. The new method utilizes a commercial lifting magnet, which is commonly used for transporting ferrous plates, to apply a magnetic consolidation pressure on the WLVB composite lay-up. The pressure is applied on a large area of the laminate by slowly sliding the magnet over the vacuum bag surface, which leads to an improved laminate quality. When further improvement is desirable, multiple passes of the magnet can be performed, where each pass successively compacts the lay-up. To explore the feasibility of implementing this technique, random mat and plain weave glass/epoxy laminates were fabricated, and their properties compared to conventional WLVB laminates. The effects of the number of moving passes of the lifting magnet on the laminate microstructure and properties are also investigated. As a result of multiple passes, the fiber volume fraction in random mat and plain weave laminates increases to 34% and 53%, representing 80% and 16% improvements, respectively. In addition, the void volume fraction reduces almost by 60% to a very low level of 0.7% and 1.1%, respectively. Consequently, the flexural properties considerably enhance by 20–81%, which demonstrates the potential of the proposed method to produce WLVB parts with substantially higher quality. It is also shown that there exists an optimal number of passes, depending on the fabric type where additional passes induce new voids as a result of excessive resin removal.
机译:这项研究提出了一种新颖的方法来制造高质量的大型复合零件,该零件可用于湿式上铺/真空袋(WLVB)工艺。这种新方法利用了通常用于运输铁板的商用起重磁铁,在WLVB复合叠层上施加磁固结压力。通过使磁体在真空袋表面上缓慢滑动,可将压力施加到层压板的大部分区域,从而提高层压板的质量。当需要进一步改进时,可以执行多次磁通,每次磁通依次压紧叠层。为了探索实施该技术的可行性,制造了无序毡和平纹玻璃/环氧树脂层压板,并比较了传统WLVB层压板的性能。还研究了提升磁铁的移动次数对层压板的微观结构和性能的影响。由于多次通过,无序毡层和平纹编织层板中的纤维体积分数增加到34%和53%,分别代表提高了80%和16%。此外,空隙体积分数几乎减少了60%,分别降至0.7%和1.1%的极低水平。因此,弯曲性能大大提高了20-81%,这表明了所提出的方法具有生产质量更高的WLVB零件的潜力。还表明存在最佳的通过次数,这取决于织物的类型,其中由于过多的树脂去除,额外的通过会引起新的空隙。

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