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Investigation of a postprocessing method to tailor the mechanical properties of carbon nanotube/polyamide fibers

机译:研究定制碳纳米管/聚酰胺纤维机械性能的后处理方法

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摘要

The incorporation of carbon nanotubes to thermoplastic fibers can potentially improve mechanical, thermal and electrical properties. In this article, a methodology to tailor the mechanical properties of carbon nanotubeylon fibers is presented. Multiwalled nanotubes (MWNT) were combined to polyamide 12 through melt compounding and twin-screw extrusion. Pellets containing between 0 and 5.0 wt % MWNT were extruded and subsequently melt spun with a capillary rheometer to produce filaments. To further promote the alignment of the polymer chains and MWNTs, postdrawing parameters were systematically investigated: temperature, drawing speed and elongation. The best improvements in terms of elastic modulus and yield strength were measured at 140°C and 500% elongation, whereas drawing speed was shown to have a negligible effect. It was confirmed through electron microscopy and X-ray diffraction that these enhancements were mainly induced by the alignment of the polymer chains along the fibers' axis.
机译:将碳纳米管结合到热塑性纤维中可以潜在地改善机械,热和电性能。在本文中,提出了一种用于定制碳纳米管/尼龙纤维机械性能的方法。通过熔融混合和双螺杆挤出将多壁纳米管(MWNT)与聚酰胺12结合。挤出含有0至5.0重量%MWNT的粒料,随后用毛细管流变仪熔融纺丝以产生细丝。为了进一步促进聚合物链和MWNT的排列,系统地研究了拉伸后的参数:温度,拉伸速度和伸长率。在140℃和500%的伸长率下测得的弹性模量和屈服强度方面的最佳改善,而拉丝速度的影响可忽略不计。通过电子显微镜和X射线衍射证实,这些增强作用主要是由于聚合物链沿纤维轴的排列而引起的。

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