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Poly-m-Aramid Nanofiber Mats: Production for Application as Structural Modifiers in CFRP Laminates

机译:聚-M-芳纶纳米纤维垫:用于施用作为CFRP层压板的结构改性剂的生产

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Poly(m-phenylene isophtalamide) electrospun nanofibrous membranes were produced to be used as structural reinforcements for carbon fiber reinforced composites production. In order for the polymer to be electrospun, it needs however to be fully solubilized, so the addition of some salts is required to help disrupt the tight macromolecular packing based on intra- and inter-molecular hydrogen bonding. Such salts may also contribute to the electrospinnability of the overall solution, since the provide it with a higher conductivity, whatever the solvent might be. The salt haobwever stays in the final nanofibrous mat. The membranes containing the salt are also observed to be highly hygroscopic, with a water content up to 26%, in the presence of 20%wt LiCl in the nanofibrous mat. When those membranes were interleaved among prepregs to produce a laminates, the obtained composite displayed thermal properties comparable to those of a reference nanofiber-free composite, though the former showed also easier delamination. Hence the removal of the hygroscopic salt was performed, that lead to thinner membranes, whose water content matched that of the pristine polymer. The washing step induced a thinning of the layers and of the fibers diameters, though no fiber shrinking nor membrane macroscopic damages were observed. These preliminary encouraging results thus pave the way to a deeper study of the optimized condition for producing convenient poly(m-phenylene isophtalamide) electrospun nanofibrous membranes to be used for carbon fiber reinforced composites structural modification.
机译:生产聚(M-亚苯基异戊酰胺)电纺纳米纤维膜被制备用作碳纤维增强复合材料的结构增强剂。为了使聚合物是电纺,然而,需要完全溶解,因此需要添加一些盐来帮助基于和分子间氢键合来破坏紧密大分子包装。这种盐也可能有助于整体溶液的电脱水平,因为无论溶剂都有更高的导电性,都可以提供更高的导电性。盐豪龙留在最终纳米纤维垫中。含有盐的膜也观察到高吸湿性,水含量高达26%,在纳米纤维垫中存在20%wt LiCl。当这些膜在预浸料中交错时以产生层压材料,所得复合材料显示出与游离纳米纤维复合材料的热性质相当,尽管前者也表现出更容易分层。因此,进行除湿盐的去除,使其导致薄膜,其水含量与原始聚合物的含水含量匹配。虽然没有观察到纤维缩小,但是纤维直径的洗涤步骤诱导薄纤维直径。因此,这些初步令人鼓舞的结果因此铺平了对生产方便的聚(M-亚苯基异珠胺)电纺纳米纤维膜的优化条件的更深入研究,以用于碳纤维增强复合材料结构改性。

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