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Alignment of Multiwall Carbon Nanotubes in Polymer Composites by Dielectrophoresis

机译:介电电泳法对聚合物复合材料中多壁碳纳米管的排列

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摘要

Studies have proved that enhancing polymer matrices by adding carbon nanotubes to form structural reinforcements and to increase electrical conductivity has significantly improved mechanical and electrical properties at very low carbon nanotube loading. That mechanical and electrical properties of aligned composites are better than those of random ones has been demonstrated in past studies; however, alignment is not easy to achieve in carbon nanotube polymer composites by conventional techniques. In this report, we introduce a novel operation to actively align and network multiwall carbon nanotubes (MWCNTs) in a polymer matrix. In this process, MWCNTs were aligned using an RF electric field to elicit dipolar interactions among the nanotubes in a viscous matrix following immobilization by curing under continuous application of an anisotropic electric field. Scanning electron microscopy (SEM) images have been use to verify thernelectrostatic stabilization of the MWCNTs in the dispersion as well as alignment without agglomeration caused by the dielectrophoretic force. Alignment of MWCNTs was controlled as a function of magnitude, frequency, and processing time of the applied dielectrophoresis. Inrnthis work, MWCNTs are not only aligned along the field, but also migrate laterally to enhance thickness. Consequently, the actively aligned MWCNTs amplify the flexural modulus, wear resistance, and electrical conductivity.
机译:研究证明,通过添加碳纳米管以形成结构增强物并增加电导率来增强聚合物基体,在碳纳米管负载极低的情况下,其机械和电性能得到了显着改善。过去的研究表明,取向复合材料的机械和电学性能要优于无规复合材料。然而,通过常规技术在碳纳米管聚合物复合材料中不易实现取向。在此报告中,我们介绍了一种新颖的操作,可以在聚合物基质中主动对齐和网络化多壁碳纳米管(MWCNT)。在此过程中,通过在连续施加各向异性电场的作用下进行固化固定化之后,使用RF电场将MWCNT对准,从而在粘性基质中引起纳米管之间的偶极相互作用。扫描电子显微镜(SEM)图像已用于验证分散液中MWCNT的静电稳定性以及在不存在介电泳力引起的团聚的情况下的排列。根据所施加的介电泳的幅度,频率和处理时间来控制MWCNT的排列。在这项工作中,MWCNTs不仅沿磁场排列,而且横向迁移以增加厚度。因此,主动排列的MWCNT会放大挠曲模量,耐磨性和导电性。

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  • 来源
    《Japanese journal of applied physics》 |2009年第3issue1期|257-261|共5页
  • 作者

    Ming-Wen Wang;

  • 作者单位

    Department of Mechanical Engineering, Oriental Institute of Technology, Pan-Chiao, Taipei Hsien 220, Taiwan;

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  • 正文语种 eng
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