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Hybrid Composites Based on Carbon Fiber/Carbon Nanofilament Reinforcement

机译:基于碳纤维/碳纳米丝增强的杂化复合材料

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摘要

Carbon nanofilament and nanotubes (CNTs) have shown promise for enhancing the mechanical properties of fiber-reinforced composites (FRPs) and imparting multi-functionalities to them. While direct mixing of carbon nanofilaments with the polymer matrix in FRPs has several drawbacks, a high volume of uniform nanofilaments can be directly grown on fiber surfaces prior to composite fabrication. This study demonstrates the ability to create carbon nanofilaments on the surface of carbon fibers employing a synthesis method, graphitic structures by design (GSD), in which carbon structures are grown from fuel mixtures using nickel particles as the catalyst. The synthesis technique is proven feasible to grow nanofilament structures—from ethylene mixtures at 550 °C—on commercial polyacrylonitrile (PAN)-based carbon fibers. Raman spectroscopy and electron microscopy were employed to characterize the surface-grown carbon species. For comparison purposes, a catalytic chemical vapor deposition (CCVD) technique was also utilized to grow multiwall CNTs (MWCNTs) on carbon fiber yarns. The mechanical characterization showed that composites using the GSD-grown carbon nanofilaments outperform those using the CCVD-grown CNTs in terms of stiffness and tensile strength. The results suggest that further optimization of the GSD growth time, patterning and thermal shield coating of the carbon fibers is required to fully materialize the potential benefits of the GSD technique.
机译:碳纳米丝和纳米管(CNT)已显示出有望增强纤维增强复合材料(FRP)的机械性能并赋予其多功能性的希望。尽管将碳纳米丝与聚合物基质在FRP中直接混合有几个缺点,但是在复合材料制造之前,大量均匀的纳米丝可以直接在纤维表面上生长。这项研究证明了采用合成方法在设计上通过石墨结构(GSD)在碳纤维表面上生成碳纳米丝的能力,其中碳结构是使用镍颗粒作为催化剂从燃料混合物中生长出来的。事实证明,该合成技术在商用聚丙烯腈(PAN)基碳纤维上从550°C的乙烯混合物中生长纳米丝结构是可行的。拉曼光谱和电子显微镜被用来表征表面生长的碳物质。为了进行比较,还使用催化化学气相沉积(CCVD)技术在碳纤维纱线上生长多壁CNT(MWCNT)。力学特性表明,使用GSD生长的碳纳米丝的复合材料在刚度和拉伸强度方面优于使用CCVD生长的碳纳米管。结果表明,需要进一步优化GSD生长时间,构图和碳纤维的热屏蔽涂层,以充分体现GSD技术的潜在优势。

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