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首页> 外文期刊>Journal of the Korean Physical Society >The grinding behavior of ground copper powder for Cu/CNT nanocomposite fabrication by using the dry grinding process with a high-speed planetary ball mill
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The grinding behavior of ground copper powder for Cu/CNT nanocomposite fabrication by using the dry grinding process with a high-speed planetary ball mill

机译:高速行星式球磨机干磨工艺制备Cu / CNT纳米复合材料的研磨铜粉的研磨行为

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摘要

The behavior of ground copper powder for copper-carbon nanotube (copper-CNT) nanocomposite fabrication during high-speed planetary ball milling was investigated because the study of the behavior characteristics of copper powder has recently gained scientific interest. Also, studies of Cu/CNT composites have widely been done due to their useful applications to enhanced, advanced nano materials and components, which would significantly improve the properties of new mechatronics-integrated materials and components. This study varied experimental conditions such as the rotation speed and the grinding time with and without CNTs, and the particle size distribution, median diameter, crystal structure and size, and particle morphology were monitored for a given grinding time. We observed that pure copper powders agglomerated and that the morphology changed with changing rotation speed. The particle agglomerations were observed with maximum experiment conditions (700 rpm, 60 min) in this study of the grinding process for mechanical alloys in the case of pure copper powders because the grinding behavior of Cu/CNT agglomerations was affected by the addition of CNTs. Indeed, the powder morphology and the crystal size of the composite powder could be changed by increasing the grinding time and the rotation speed.
机译:由于近来对铜粉行为特性的研究引起了人们的关注,因此研究了用于高速行星球磨的铜-碳纳米管(copper-CNT)纳米复合材料制造中研磨铜粉的行为。而且,由于铜/碳纳米管复合材料对增强的,先进的纳米材料和组件的有用应用,因此已经进行了广泛的研究,这将显着改善新型机电一体化材料和组件的性能。这项研究改变了各种实验条件,例如在有和没有CNT的情况下的转速和研磨时间,并在给定的研磨时间下监测了粒径分布,中值粒径,晶体结构和尺寸以及颗粒形态。我们观察到纯铜粉会聚结,并且形态随转速的变化而变化。在纯铜粉情况下,在机械合金磨削过程的最大试验条件下(700 rpm,60分钟)观察到了颗粒团聚,因为铜/ CNT团聚的磨削行为受CNT的添加影响。实际上,可以通过增加研磨时间和旋转速度来改变复合粉末的粉末形态和晶体尺寸。

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