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Non-traditional processing of carbon nanotubes: A review
Alexandria Engineering Journal ( IF 6.8 ) Pub Date : 2021-07-05 , DOI: 10.1016/j.aej.2021.06.041
Jun Ma 1 , Jie Yuan 1 , Wuyi Ming 1 , Wenbin He 1 , Guojun Zhang 2 , Hongmei Zhang 2 , Yang Cao 1 , Zhiwen Jiang 1
Affiliation  

In recent years, carbon nanotubes(CNTs) have begun to attract attention in the fields of field emission, nanoelectronic devices, nano machines and composite reinforced materials. But the traditional processing methods for cutting these increase tool wear. However, non-traditional processing can be used to machine materials of any hardness and strength. In this paper, the research trends of non-traditional processing of CNTs are critically reviewed. First, this study introduces the application of CNTs and their development history. Second, the surface morphology, purification and growth effects of laser-processed CNTs are summarised, these are analysed and discussed. Subsequently, the effects of ultrasonic parameters and other external parameters on the diormance of ultrasonically processed CNTs are analysed. Next, the effects of electrical and non-electrical parameters on the surface morphology of CNTs processed by micro-electro-discharge machining(μEDM) are compared, and a summary analysis is presented. In addition, the research on the improvement of the performance of CNTs by electrochemical machining(ECM) is reviewed and prospected. Simultaneously, different non-traditional processing of CNTs is discussed. Finally, the most recent progress in non-traditional processing of CNTs is described, and the future trends, which may potentially guide subsequent research studies, are predicted.



中文翻译:

碳纳米管的非传统加工:综述

近年来,碳纳米管(CNTs)在场发射、纳米电子器件、纳米机械和复合增强材料等领域开始受到关注。但是传统的切削加工方法会增加刀具磨损。然而,非传统加工可用于加工任何硬度和强度的材料。在本文中,对碳纳米管非传统加工的研究趋势进行了批判性回顾。首先,本研究介绍了碳纳米管的应用及其发展历史。其次,总结了激光加工的碳纳米管的表面形态、净化和生长效果,并对这些进行了分析和讨论。随后,分析了超声参数和其他外部参数对超声处理的 CNTs 的影响。下一个,μEDM) 进行了比较,并提出了总结分析。此外,还对电化学加工(ECM)提高碳纳米管性能的研究进行了综述和展望。同时,讨论了碳纳米管的不同非传统加工。最后,描述了碳纳米管非传统加工的最新进展,并预测了可能指导后续研究的未来趋势。

更新日期:2021-08-01
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