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固态纺丝碳纳米管纱线的结构和过程依赖性性质。

Structure and process-dependent properties of solid-state spun carbon nanotube yarns.

机构信息

The Alan G MacDiarmid NanoTech Institute, University of Texas at Dallas, Richardson, TX 75083, USA.

出版信息

J Phys Condens Matter. 2010 Aug 25;22(33):334221. doi: 10.1088/0953-8984/22/33/334221. Epub 2010 Aug 4.

Abstract

The effects of processing conditions and apparent nanotube length on properties are investigated for carbon nanotube yarns obtained by solid-state drawing of an aerogel from a forest of multi-walled carbon nanotubes. Investigation of twist, false twist, liquid densification and combination methods for converting the drawn aerogel into dense yarn show that permanent twist is not needed for obtaining useful mechanical properties when nanotube lengths are long compared with nanotube diameters. Average mechanical strengths of 800 MPa were obtained for polymer-free twist-spun multi-walled carbon nanotube (MWNT) yarns and average mechanical strengths of 1040 MPa were obtained for MWNT yarns infiltrated with 10 wt% polystyrene solution. Strategies for increasing the mechanical properties are suggested based on analysis of intra-wall, intra-bundle and inter-bundle stress transfer.

摘要

通过对多壁碳纳米管森林进行固态拉伸,得到碳纳米管纱线,并研究了加工条件和表观纳米管长度对其性能的影响。对拉伸气凝胶进行扭绞、假捻、液体致密化以及致密纱线转化方法的研究表明,当纳米管长度与纳米管直径相比足够长时,获得有用的机械性能并不需要永久扭绞。无聚合物的扭绕纺制多壁碳纳米管(MWNT)纱线的平均机械强度为 800 MPa,而 10 wt%聚苯乙烯溶液渗透的 MWNT 纱线的平均机械强度为 1040 MPa。基于对层内、束内和束间应力传递的分析,提出了提高机械性能的策略。

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