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Continuous carbon nanotube-polycarbonate composite fibers through melt spinning

机译:通过熔融纺丝连续的碳纳米管-聚碳酸酯复合纤维

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Among the many potential applications of carbon nanotubes (CNT), its usage to strengthen polymers has been paid considerable attention due to the exceptional stiffness, excellent strength and the low density. This has provided numerous opportunities for the invention of new material systems for applications requiring high strength and high modulus. In this paper, composite fibers of polycarbonate (PC) and multiwall carbon nanotubes (MWNTs) are prepared in dimethyl formamide (DMF) using melt mixing-coagulation technique followed by melt spinning at 220°C. The spinning of the coagulated PC-MWNTs is done at various draw ratios and the resultant fibers are studied by optical microscope, SEM and AFM. The mechanical properties of the composite fiber are determined and it is found that the addition of 1-1.5 wt% of MWNT increased the tensile strength of the polymer fiber from 900 MPa to 1890 MPa and Young’s modulus from 1372 MPa to 2060 MPa. The results show that the mixing of MWNT with the polycarbonate matrix, above its melting point followed by coagulation in water might have developed a strong interfacial bonding between functionalized MWNTs and PC.
机译:在碳纳米管(CNT)的许多潜在应用中,由于其出色的刚度,出色的强度和低密度,其用于增强聚合物的用途已引起了广泛的关注。这为用于需要高强度和高模量的应用的新材料系统的发明提供了许多机会。在本文中,使用熔融混合-混凝技术,然后在220°C熔融纺丝,在二甲基甲酰胺(DMF)中制备聚碳酸酯(PC)和多壁碳纳米管(MWNTs)的复合纤维。凝结的PC-MWNTs的纺丝是在不同的拉伸比下进行的,所得纤维通过光学显微镜,SEM和AFM研究。确定了复合纤维的机械性能,发现添加1-1.5 wt%的MWNT可以使聚合物纤维的抗张强度从900 MPa增加到1890 MPa,杨氏模量从1372 MPa增加到2060 MPa。结果表明,MWNT与聚碳酸酯基体的混合,高于其熔点,然后在水中凝结,可能在官能化的MWNT与PC之间形成了牢固的界面结合。

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