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Effective formulation and processing of nanofilled carbon fiber reinforced composites

机译:纳米氧化碳纤维增强复合材料的有效配方和加工

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This work describes a successful approach toward the development of a carbon fiber-reinforced composite based on an optimized nanofilled resin for industrial applications. The epoxy matrix is prepared by mixing a tetrafunctional epoxy precursor with a reactive diluent which allows reduction of the viscosity of the epoxy precursor and facilitation of the dispersion of 0.5% wt multiwall carbon nanotubes. The proper choice of the viscosity value and the infusion technique allow improvement of the electrical properties of the panels. The obtained in-plane electrical conductivity is about 20 kS m ~(?1) , whereas a value of 3.9 S m ~(?1) is achieved for the out of plane value. Such results confirm that the fibers govern the conduction mechanisms in the direction parallel to the fibers, whereas the percolating path created by the effective distribution of carbon nanotubes achieved by resin formulation and adopted processing approach lead to a significant enhancement of the overall electrical performance of the composites.
机译:这项工作描述了基于用于工业应用的优化纳米填充树脂的碳纤维增强复合材料的成功方法。通过将四官能环氧前体与反应性稀释剂混合来制备环氧基质,这允许减少环氧前体的粘度,并促进0.5%wt多壁碳纳米管的分散体。正确选择粘度值和输注技术允许改善面板的电气性质。所获得的面内导电率为约20ks m〜(Δ1),而达到平面值的值为3.9 s m〜(Δ1)。这样的结果证实,纤维在与纤维平行的方向上控制导电机制,而通过树脂配方实现的碳纳米管的有效分布产生的渗透路径,并采用了加工方法产生的碳纳米管产生的渗透性导致了对整体电气性能的显着提高复合材料。

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