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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Simultaneous dispersion and alignment of carbon nanotubes in epoxy resin through chronoamperometry
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Simultaneous dispersion and alignment of carbon nanotubes in epoxy resin through chronoamperometry

机译:通过计时安培法同时分散和对准环氧树脂中的碳纳米管

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摘要

A novel technique of dispersion, stretching and alignment of carbon nanotubes (CNTs) in an epoxy resin has been developed based on chronoamperometry. The procedure is to apply an electrical field in non-cured CNT/epoxy mixtures, using an electrode of large surface. CNT movements can be promoted by their intrinsic polarisation or by the introduction of electrical charges over their surfaces. The efficiency of the process can be monitored through the electrical current passing through the system as a function of time. Different experimental conditions, such as the applied voltage, have been analysed. The composites have been characterised through their thermal, mechanical and electrical behaviour. They show high dispersion degree of nanotubes, which are found to be stretched and untangled. CNTs show alignment along a preferred direction in the epoxy matrix, which affects to their electrical conductivity.
机译:基于计时电流法,已经开发了在环氧树脂中分散,拉伸和排列碳纳米管(CNT)的新技术。该过程是使用大表面的电极在未固化的CNT /环氧树脂混合物中施加电场。 CNT运动可以通过其固有极化或通过在其表面上引入电荷来促进。可以通过流经系统的电流作为时间的函数来监视过程的效率。已经分析了不同的实验条件,例如施加的电压。复合材料的特征在于其热,机械和电性能。它们显示出纳米管的高分散度,发现它们被拉伸和缠结。 CNT在环氧基质中沿优选方向排列,这会影响其导电性。

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