Dal Lago Eleonora, Cagnin Elisabetta, Boaretti Carlo, Roso Martina, Lorenzetti Alessandra, Modesti Michele
Department of Industrial Engineering, University of Padova, Via Marzolo, 9-35131 Padova, Italy.
Polymers (Basel). 2019 Dec 23;12(1):29. doi: 10.3390/polym12010029.
The present work examines the influence of different carbon-based fillers on the performance of electrically conductive polymer blend composites. More specifically, we examined and compared the effects of graphene (GR), carbon nanotubes (CNTs) and carbon black (CB) on a PC/ABS matrix by morphological investigation, electrical and physic-mechanical characterization. Electrical analyses showed volume resistivity decreased when the CNTs and CB content were increased, although the use of melt-mixed GR did not really influence this property. For the latter, solution blending was found to be more suitable to obtain better GR dispersion, and it obtained electrical percolation with a graphene content ranging from 0.5% to 1% by weight, depending on the solvent removal method that was applied. There was a gradual improvement in all of the composites' dielectric properties, in terms of loss factor, with temperature and the concentration of the filler. As expected, the use of rigid fillers increased the composite stiffness, which is reflected in a continuous increment in the composites' modulus of elasticity. The improvements in tensile strength and modulus were coupled with a reduction in impact strength, indicating a decrease in polymer toughness and flexibility. TEM micrographs allowed us to confirm previous results from studies on filler dispersion. According to this study and the comparison of the three carbon-based fillers, CNTs are the best filler choice in terms of electrical and mechanical performance.
本工作研究了不同碳基填料对导电聚合物共混复合材料性能的影响。更具体地说,我们通过形态学研究、电学和物理力学表征,研究并比较了石墨烯(GR)、碳纳米管(CNTs)和炭黑(CB)对PC/ABS基体的影响。电学分析表明,当CNTs和CB含量增加时,体积电阻率降低,尽管使用熔融共混的GR对该性能没有实际影响。对于后者,发现溶液共混更适合获得更好的GR分散,并且根据所采用的溶剂去除方法,在石墨烯含量为0.5%至1%(重量)范围内实现了电渗滤。所有复合材料的介电性能,就损耗因子而言,随着温度和填料浓度的增加而逐渐改善。正如预期的那样,使用刚性填料增加了复合材料的刚度,这反映在复合材料弹性模量的持续增加上。拉伸强度和模量的提高伴随着冲击强度的降低,表明聚合物的韧性和柔韧性降低。透射电子显微镜照片使我们能够证实先前关于填料分散研究的结果。根据本研究以及对三种碳基填料的比较,就电学和力学性能而言,CNTs是最佳的填料选择。