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Magnetic alignment of carbon nanofibers in polymer composites and anisotropy of mechanical properties

机译:聚合物复合材料中碳纳米纤维的磁取向和力学性能各向异性

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摘要

Engineering applications of carbon nanofibers and nanotubes require their alignment in specific directions. Single-walled carbon nanotubes can be aligned in a magnetic field due to the presence of small amounts of catalyst elements, such as Ni and Co. However, for carbon nanofibers, their extremely low magnetic susceptibility is not sufficient for magnetically induced alignment. We present a method of solution-coating of NiO and CoO onto the surface of the carbon nanofibers. Due to the NiO- and CoO-coating, these nanofibers can be well aligned in the polymer composites under moderate magnetic field (3 T). Both transmission electron microscopy and scanning electron microscopy results show the well-aligned nanofibers in a polymer matrix. Mechanical testing shows a pronounced anisotropy in tensile strength in directions normal (12.1 MPa) and parallel (22 MPa) to the applied field, resulting from the well-aligned nanofibers in the polymer matrix. The mechanism of magnetic alignment due to coating of NiO and CoO on the nanofiber surface is discussed.
机译:碳纳米纤维和纳米管的工程应用要求它们在特定方向上对齐。由于存在少量催化剂元素(如Ni和Co),单壁碳纳米管可以在磁场中取向。但是,对于碳纳米纤维,其极低的磁化率不足以实现磁感应取向。我们提出了一种将NiO和CoO溶液涂覆到碳纳米纤维表面的方法。由于使用了NiO和CoO涂层,这些纳米纤维可以在中等磁场(3 T)下在聚合物复合材料中很好地排列。透射电子显微镜和扫描电子显微镜结果均显示聚合物基质中排列良好的纳米纤维。机械测试显示,在正常(12.1 MPa)方向和平行于(22 MPa)方向上,拉伸强度具有明显的各向异性,这是由于聚合物基质中的纳米纤维排列良好而引起的。讨论了由于在纳米纤维表面上涂覆NiO和CoO而引起的磁取向机理。

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