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Research on the Application of MWCNTs/PLA Composite Material in the Manufacturing of Conductive Composite Products in 3D Printing

机译:MWCNTs / PLA复合材料在3D打印导电复合产品制造中的应用研究

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摘要

As an advanced manufacturing technology that has been developed in recent years, three-dimensional (3D) printing of macromolecular materials can create complex-shaped components that cannot be realized by traditional processing. However, only a few types of macromolecular materials are suitable for 3D printing: the structure must have a single function, and manufacturing macromolecular functional devices is difficult. In this study, using poly lactic acid (PLA) as a matrix, conductive composites were prepared by adding various contents of multi-walled carbon nanotubes (MWCNTs). The printability and properties of MWCNT/PLA composites with different MWCNT proportions were studied by using the fused deposition modeling (FDM) processing technology of 3D printing. The experimental results showed that high conductivity can be realized in 3D-printed products with a composite material containing 5% MWCNTs; its conductivity was 0.4 ± 0.2 S/cm, its tensile strength was 78.4 ± 12.4 MPa, and its elongation at break was 94.4% ± 14.3%. It had a good melt flow rate and thermal properties, and it enabled smooth printing, thus meeting all the requirements for the 3D printing of consumables.
机译:作为近年来发展起来的一种先进的制造技术,高分子材料的三维(3D)打印可以创建复杂形状的组件,而这些组件是传统工艺无法实现的。但是,只有少数几种大分子材料适用于3D打印:结构必须具有单一功能,并且制造大分子功能器件很困难。在这项研究中,以聚乳酸(PLA)为基质,通过添加各种含量的多壁碳纳米管(MWCNT)制备导电复合材料。利用3D打印的熔融沉积建模(FDM)技术研究了不同MWCNT比例的MWCNT / PLA复合材料的可印刷性和性能。实验结果表明,含有5%CNT的复合材料可在3D打印产品中实现高电导率。其电导率为0.4±0.2S / cm,抗张强度为78.4±12.4MPa,断裂伸长率为94.4%±14.3%。它具有良好的熔体流动速率和热性能,并且能够平滑打印,因此可以满足耗材3D打印的所有要求。

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