用纳米碳纤维和纳米粘土增强的高密度聚乙烯杂化纳米复合材料

Jacob Samuel, Abdirahman A Yussuf, Rashed Al-Zufairi, Aseel Al-Banna, Tahani Al-Shammary, Gils Abraham
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摘要

研究了碳纳米纤维(CNF)和有机改性纳米粘土(OMMT)对高密度聚乙烯(HDPE)杂化纳米复合材料最终性能的影响。杂化纳米复合材料在双螺杆挤出机中通过熔融混合制备,以获得更好的分散性。报告了纳米填料对力学、热学、流变学和形态学性能的影响。由于填料和基体之间的良好粘附性,OMMT 和 CNF 的加入略微改善了混合纳米复合材料的机械性能。另一方面,如 DSC 结果所示,增强填料数量的增加对热性能(如熔化和结晶温度)没有显著影响。热重分析(TGA)结果表明,混合纳米复合材料基体中填料含量的增加大大提高了纯高密度聚乙烯的热稳定性。同样,由于协同效应,混合体系的流变行为显示粘度显著增加。混合体系的模量和复合粘度略有增加,而损失正切则由于刚度的增加而有所降低。扫描电子显微镜(SEM)和透射电子显微镜(TEM)对纳米复合材料的形态特征进行了表征。纳米级图像显示,纳米填料颗粒分散良好,没有任何明显的聚集现象,这进一步表明了纳米填料在高密度聚乙烯基体中的相容能力。
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High density polyethylene hybrid nanocomposites reinforced with carbon nanofiber and nanoclay
The influence of carbon nano fiber (CNF) along with organically modified nanoclay (OMMT) on the final properties of high density polyethylene (HDPE) hybrid nanocomposites has been investigated. The hybridized nanocomposites were prepared in a twin screw extruder by melt mixing to achieve better dispersion. The effect of nano fillers on the mechanical, thermal, rheological, and morphological properties has been reported. The incorporation of OMMT along with CNF slightly improved the mechanical properties of the resultant hybrid nanocomposite due to the good adhesion between the filler and matrix. On the other hand, as shown in DSC results, increasing reinforcing filler quantity has no significant influence on the thermal properties such as melting and crystallization temperatures. Thermogravimetric analysis (TGA) results have shown that increasing filler content in the hybrid nanocomposite matrix has enhanced drastically the thermal stability of the neat HDPE. Similarly, the rheological behavior of the hybrid system showed significant increase in the viscosity due to the synergetic effect. A marginal increase in moduli and complex viscosity was observed in the hybrid system, while loss tangent was found to be decreased due to the increase in the stiffness. The morphological features of nanocomposites were characterized by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The nanoscale images showed the well dispersion of filler nanoparticles without any prominent aggregation, which further indicates the compatibilizing ability of nanofillers within the HDPE matrix.
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