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Experimentally Measured Thermal Transport Properties of Aluminum-Polytetrafluoroethylene Nanocomposites with Graphene and Carbon Nanotube Additives

机译:用石墨烯和碳纳米管添加剂进行实验测量的铝 - 聚四氟乙烯纳米复合材料的热传输性能

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Reactive materials such as aluminum and polytetrafluoroethylene (Teflon) are used for energy generation applications and specifically in ordnance technologies. With the advent of nanotechnology various nano-scale additives have become incorporated into reactive material formulations with the hope of enhanced performance. An important component to the study of energy generation is an examination of energy transport through a reactant matrix. This study examines an experimental approach to quantifying thermal properties of an Al/Teflon nanocomposite reactant matrix that has been impregnated with carbon additives. Various structures of carbon are investigated and include amorphous nanoscale carbon spheres (nano C), graphene flakes and unaligned multiwalled carbon nanotubes (CNTs). The additives were selected based on their completely different structures with the hypothesis that the structure of the additive will influence the thermal transport properties of the matrix. Results show graphene has the greatest influence on the thermophysical properties. For example, thermal conductivity of the composites containing graphene increased by 98%. Graphene similarly enhanced the thermal diffusivity and specific heat of the Al/Teflon matrix. Conversely, nano C and CNTs decreased the thermal conductivity and thermal diffusivity of the samples significantly.
机译:反应性材料如铝和聚四氟乙烯(Teflon)用于能量发电应用,具体地用武器技术。随着纳米技术的出现,各种纳米级添加剂已掺入反应性材料配方中,希望具有增强的性能。研究能源生成的重要组成部分是通过反应物基质进行能量传输的检查。本研究研究了量化浸渍有碳添加剂的Al / Teflon纳米复合反应物基质的热性能的实验方法。研究了各种碳结构并包括无定形纳米级碳球(纳米C),石墨烯片和未对准的多壁碳纳米管(CNT)。基于它们的完全不同的结构选择添加剂,其中添加剂的结构会影响基质的热传输性能。结果显示石墨烯对热物理性质的影响最大。例如,含有石墨烯的复合材料的热导率增加了98%。石墨烯类似地增强了Al / Teflon基质的热扩散性和比热。相反,纳米C和CNT显着降低了样品的导热率和热扩散性。

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