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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The alignment of single walled carbon nanotubes in an epoxy resin by applying a DC electric field
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The alignment of single walled carbon nanotubes in an epoxy resin by applying a DC electric field

机译:通过施加直流电场使环氧树脂中的单壁碳纳米管排列

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The alignment of single walled carbon nanotubes (SWCNTs) in an epoxy monomer liquid medium by the application of a DC electric field has been investigated, taking into account the various transport phenomena involved: the tube rotation in the electric field, the translation of polarized SWCNTs toward each other to form a chain-like structure and the migration of the tubes toward the positive electrode. Moreover, the relaxation mechanism which takes place when the electric field is switched off has also been considered. Experimental tests, performed to verify the effectiveness of the model, are based on the application of an electric field to a liquid epoxy-SWCNT colloid (0.025 wt.%) while measuring the current and observing the system by optical microscopy. As a result of the modeling it is possible to identify the processing conditions that allow the alignment of SWCNTs in an epoxy resin through the short-time application of a DC electric field. Experimental measurements are in agreement with the model's predictions.
机译:研究了单壁碳纳米管(SWCNTs)在DC电场作用下在环氧单体液体介质中的排列方式,同时考虑了所涉及的各种传输现象:电场中的管旋转,极化的SWCNT的平移彼此形成链状结构,并且管向正极迁移。此外,还考虑了在断开电场时发生的松弛机制。为验证模型的有效性而进行的实验测试是基于对液体环氧树脂-SWCNT胶体(0.025 wt。%)施加电场,同时测量电流并通过光学显微镜观察系统。作为建模的结果,可以通过短时间施加直流电场来确定允许在环氧树脂中对齐SWCNT的处理条件。实验测量与模型的预测一致。

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