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ON THE 3D PRINTABILITY OF MULTI-WALLED CARBON NANOTUBE/HIGH DENSITY POLYETHYLENE COMPOSITES

机译:壁碳纳米管/高密度聚乙烯复合材料的3D印刷性研究

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This study focuses on 3D printing of multi-walled carbon nanotube/high density polyethylene (MWCNT/HDPE) composites. First, rheological properties of 0.1, 1, and 5 wt.% MWCNT/HDPE composites were investigated to estimate the 3D printability window. Second, filaments with 1.75 mm diameter were fabricated and subsequently extruded by a commercial 3D printer. Finally, the filaments and 3D printed parts were tested to correlate the rheological, mechanical, and electrical properties with processing parameters. Experimental results show that flow behavior of MWCNT/HDPE composites is a critical factor affecting the 3D printability. The shear viscosity exhibits good shear thinning behavior at high shear rates and significantly increases with increasing nanotube loading from 0.1 to 5 wt.%, at low shear rates. Reliable MWCNT/HDPE filaments were obtained with smooth surface finish and good mechanical and electrical properties. The 0.1 and 1 wt.% MWCNT/HDPE filaments exhibit very good printing characteristics. However, under the flow conditions of a standard 0.4-mm nozzle, 3D printing of 5 wt.% MWCNT/HDPE filament can be rather difficult primarily due to high shear viscosity and nozzle clogging. Thus, further investigation is needed to fully optimize the 3D printing of MWCNT/HDPE composites.
机译:这项研究的重点是3D打印多壁碳纳米管/高密度聚乙烯(MWCNT / HDPE)复合材料。首先,研究了0.1、1和5重量%MWCNT / HDPE复合材料的流变性能,以估计3D可印刷性窗口。其次,制造直径为1.75毫米的长丝,然后通过商用3D打印机挤出。最后,对长丝和3D打印部件进行了测试,以将流变,机械和电气特性与加工参数相关联。实验结果表明,MWCNT / HDPE复合材料的流动行为是影响3D可印刷性的关键因素。在高剪切速率下,剪切粘度表现出良好的剪切稀化行为,并且在低剪切速率下,随着纳米管负载从0.1wt%增加至5wt。%而显着增加。获得了具有光滑表面光洁度和良好机械和电性能的可靠的MWCNT / HDPE长丝。 0.1重量%和1重量%的MWCNT / HDPE长丝表现出非常好的印刷特性。但是,在标准0.4毫米喷嘴的流动条件下,主要由于高剪切粘度和喷嘴堵塞,很难对5 wt。%MWCNT / HDPE长丝进行3D打印。因此,需要进一步研究以完全优化MWCNT / HDPE复合材料的3D打印。

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