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Mechanical properties of vapor-grown carbon fiber composites with thermoplastic matrices

机译:具有热塑性基质的气相生长碳纤维复合材料的机械性能

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This article discusses the mechanical properties of vapor-grown carbon fiber (VGCF)ylon and VGCF/polypropylene composites. Fibers in the as-produced condition yielded composites with marginally improved mechanical properties. Microscopic examination of these composites clearly showed regions of uninfiltrated fibers, which could account for the unsatisfactory mechanical properties. The infiltration of the fibers by both polymers was improved by carefully ball milling the raw fiber so as to reduce the diameter of the fiber clumps to less than 300 pm. Properties of composites made with ball-milled material were improved in every respect. VGCF reinforcement in nylon slightly improved the tensile strength and doubled the modulus, while VGCF in polypropylene doubled the tensile strength and quadrupled the modulus compared to unreinforced material. Moreover, the composites were sufficiently improved that differences in fiber surface preparation became important. For example, air-etched fibers and fibers covered with low concentrations of aromatics produced polypropylene composites with significantly better mechanical properties than did fibers whose surfaces were heavily coated with aromatics. Both the tensile strength and the modulus of the composites fabricated with clean fibers exceeded theoretical values for composites made with fibers randomly oriented in three dimensions, indicating that the injection-molding process oriented the fibers to some extent.
机译:本文讨论了气相生长碳纤维(VGCF)/尼龙和VGCF /聚丙烯复合材料的机械性能。处于生产状态的纤维产生的复合材料的机械性能略有改善。对这些复合材料的显微镜检查清楚地显示出未渗透纤维的区域,这可以解释机械性能不理想的原因。通过小心地球磨粗纤维可以改善两种纤维对纤维的渗透,从而将纤维块的直径减小到小于300 pm。用球磨材料制成的复合材料的性能在各个方面都有所改善。与未增强材料相比,尼龙中的VGCF增强材料略微提高了拉伸强度并使模量增加了一倍,而聚丙烯中的VGCF增强了拉伸强度并使模量增加了四倍。而且,复合材料得到了充分的改进,使得纤维表面制备方面的差异变得很重要。例如,空气蚀刻的纤维和覆盖有低浓度芳族化合物的纤维所制得的聚丙烯复合材料的机械性能明显好于其表面被芳族化合物大量覆盖的纤维。用清洁纤维制成的复合材料的拉伸强度和模量都超过了用在三个维度上随机取向的纤维制成的复合材料的理论值,这表明注塑工艺在一定程度上使纤维取向。

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