Mantia Francesco Paolo La, Titone Vincenzo, Milazzo Alessandro, Ceraulo Manuela, Botta Luigi
Department of Engineering, University of Palermo, Viale delle Scienze, 90128 Palermo, Italy.
INSTM, Consortium for Materials Science and Technology, Via Giusti 9, 50125 Florence, Italy.
Nanomaterials (Basel). 2021 Nov 13;11(11):3058. doi: 10.3390/nano11113058.
The effect of graphene nanoplatelets (GnPs) on the morphology, rheological, and mechanical properties of isotropic and anisotropic polypropylene (PP)/recycled polyethylene terephthalate (rPET)-based nanocomposite are reported. All the samples were prepared by melt mixing. PP/rPET and PP/rPET/GnP isotropic sheets were prepared by compression molding, whereas the anisotropic fibers were spun using a drawing module of a capillary viscometer. The results obtained showed that the viscosity of the blend is reduced by the presence of GnP due to the lubricating effect of the graphene platelets. However, the Cox-Merz rule is not respected. Compared to the PP/rPET blend, the GnP led to a slight increase in the elastic modulus. However, it causes a slight decrease in elongation at break. Morphological analysis revealed a poor adhesion between the PP and PET phases. Moreover, GnPs distribute around the droplets of the PET phase with a honey-like appearance. Finally, the effect of the orientation on both systems gives rise not only to fibers with higher modulus values, but also with high deformability and a fibrillar morphology of the dispersed PET phase. A fragile-ductile transition driven by the orientation was observed in both systems.
报道了石墨烯纳米片(GnPs)对各向同性和各向异性聚丙烯(PP)/再生聚对苯二甲酸乙二酯(rPET)基纳米复合材料的形态、流变学和力学性能的影响。所有样品均通过熔融共混制备。PP/rPET和PP/rPET/GnP各向同性片材通过压缩模塑制备,而各向异性纤维则使用毛细管粘度计的拉伸模块纺丝。所得结果表明,由于石墨烯片的润滑作用,GnP的存在降低了共混物的粘度。然而,Cox-Merz规则并不适用。与PP/rPET共混物相比,GnP使弹性模量略有增加。然而,它导致断裂伸长率略有下降。形态分析表明PP和PET相之间的粘附性较差。此外,GnPs以类似蜂蜜的外观分布在PET相的液滴周围。最后,取向对两个体系的影响不仅产生了具有更高模量值的纤维,而且还产生了具有高变形性和分散PET相的纤维状形态。在两个体系中均观察到由取向驱动的脆-韧转变。