Dul Sithiprumnea, Fambri Luca, Pegoretti Alessandro
Department of Industrial Engineering and INSTM Research Unit, University of Trento, Via Sommarive 9, 38123 Trento, Italy.
Nanomaterials (Basel). 2018 Jan 18;8(1):49. doi: 10.3390/nano8010049.
Composite acrylonitrile-butadiene-styrene (ABS)/carbon nanotubes (CNT) filaments at 1, 2, 4, 6 and 8 wt %, suitable for fused deposition modelling (FDM) were obtained by using a completely solvent-free process based on direct melt compounding and extrusion. The optimal CNT content in the filaments for FDM was found to be 6 wt %; for this composite, a detailed investigation of the thermal, mechanical and electrical properties was performed. Presence of CNT in ABS filaments and 3D-printed parts resulted in a significant enhancement of the tensile modulus and strength, accompanied by a reduction of the elongation at break. As documented by dynamic mechanical thermal analysis, the stiffening effect of CNTs in ABS is particularly pronounced at high temperatures. Besides, the presence of CNT in 3D-printed parts accounts for better creep and thermal dimensional stabilities of 3D-printed parts, accompanied by a reduction of the coefficient of thermal expansion). 3D-printed nanocomposite samples with 6 wt % of CNT exhibited a good electrical conductivity, even if lower than pristine composite filaments.
通过基于直接熔融共混和挤出的完全无溶剂工艺,获得了适用于熔融沉积成型(FDM)的、碳纳米管(CNT)含量分别为1 wt%、2 wt%、4 wt%、6 wt%和8 wt%的复合丙烯腈-丁二烯-苯乙烯(ABS)长丝。发现FDM长丝中CNT的最佳含量为6 wt%;针对该复合材料,对其热性能、力学性能和电学性能进行了详细研究。ABS长丝和3D打印部件中CNT的存在导致拉伸模量和强度显著提高,同时断裂伸长率降低。动态力学热分析表明,CNT在ABS中的增强作用在高温下尤为明显。此外,3D打印部件中CNT的存在使3D打印部件具有更好的蠕变和热尺寸稳定性,同时热膨胀系数降低。含有6 wt% CNT的3D打印纳米复合材料样品表现出良好的导电性,尽管低于原始复合长丝。