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Carbon nanotubes based engineering materials for thermal management applications

机译:基于碳纳米管的热管理应用工程材料

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We developed innovative solutions for reaching high performance in carbon-nanotube-filled engineering materials. Electrospinning was applied to improve the thermal conductivity in polymer composites via the alignment of nanotubes in a polymer matrix. Alignment was achieved by flow-confinement and charge-induced alignment during electrospinning. Additionally, the use of liquid crystal polymer as a matrix increased the degree of alignment leading to the remarkable increase of the thermal conductivity in composites by a factor 33. We developed the reduction from method to produce metal-matrix composites filled with carbon nanotubes. We were able to engineer the coefficient of thermal expansion (CTE) of the copper composite, for example 3 wt% of carbon nanotubes added to copper yielded CTEs comparable with ceramics and semiconductors. In situ thermal polymerization of natural oils (plant and fish) was applied to produce nanotubes-based thermal greases. This method creates novel, environmentally friendly thermal grease with excellent thermal conductivity (increased by a factor 12), that is easy to handle compound and to remove. Such thermal greases can be applied to surfaces by various methods, including screen printing, and demonstrate good thermal stability, reduced thermal expansion, and no pumping-out effect.
机译:我们开发了创新的解决方案,可用于达到碳纳米管填充的工程材料的高性能。施用静电纺丝以通过在聚合物基质中的纳米管的比定通过纳米管的比定来改善聚合物复合材料中的导热率。通过在静电纺丝期间通过流动限制和电荷诱导的对准实现对准。另外,液晶聚合物作为基质的使用增加了对准程度,导致复合材料中的导热率显着增加。我们开发了从方法中减少以生产填充有碳纳米管的金属 - 基质复合材料。我们能够将铜复合材料的热膨胀系数(CTE)工程师推动,例如添加到铜的3wt%的碳纳米管,得到与陶瓷和半导体相当的CTE。原位热聚合天然油(植物和鱼类)以产生基于纳米管的热润滑脂。该方法产生新颖的环保热润滑脂,具有优异的导热率(增加倍数12),易于处理化合物并去除。这种热润滑脂可以通过各种方法施加到表面,包括丝网印刷,并表现出良好的热稳定性,降低热膨胀,并且没有泵送效果。

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