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Manufacturing polymer/carbon nanotube composite using a novel direct process

机译:使用新颖的直接方法制造聚合物/碳纳米管复合材料

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A direct process for manufacturing polymer carbon nanotube (CNT)-based composite yarns is reported. The new approach is based on a modified dry spinning method of CNT yarn and gives a high alignment of the CNT bundle structure in yarns. The aligned CNT structure was combined with a polymer resin and, after being stressed through the spinning process, the resin was cured and polymerized, with the CNT structure acting as reinforcement in the composite. Thus the present method obviates the need for special and complex treatments to align and disperse CNTs in a polymer matrix. The new process allows us to produce a polymer/CNT composite with properties that may satisfy various engineering specifications. The structure of the yarn was investigated using scanning electron microscopy coupled with a focused-ion-beam system. The tensile behavior was characterized using a dynamic mechanical analyzer. Fourier transform infrared spectrometry was also used to chemically analyze the presence of polymer on the composites. The process allows development of polymer/CNT-based composites with different mechanical properties suitable for a range of applications by using various resins.
机译:报道了一种用于制造基于聚合物碳纳米管(CNT)的复合纱线的直接方法。该新方法基于改进的CNT纱线干法纺丝方法,并且使纱线中的CNT束结构高度对齐。将取向的CNT结构与聚合物树脂结合,并在通过纺丝过程对其施加应力后,将树脂固化并聚合,其中CNT结构在复合材料中起到增强作用。因此,本方法消除了对特殊和复杂处理以将CNT排列和分散在聚合物基质中的需要。新工艺使我们能够生产具有可以满足各种工程规格的性能的聚合物/ CNT复合材料。使用扫描电子显微镜结合聚焦离子束系统研究了纱线的结构。使用动态机械分析仪表征拉伸性能。傅里叶变换红外光谱法还用于化学分析复合材料上聚合物的存在。该方法允许通过使用各种树脂来开发具有适用于一系列应用的不同机械性能的基于聚合物/ CNT的复合材料。

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