Electrical, Mechanical, and Thermal Properties of LDPE Graphene Nanoplatelets Composites Produced by Means of Melt Extrusion Process

Электрические, механические и тепловые свойства композитов на основе ПЭНП и графеновых нанопластинок, полученных методом экструзии расплава
Roland Kádár, Karolina Gąska, Stanislaw Gubanski, Xiangdong Xu
2017-01-04

Electrical conductivityLDPE graphene nanoplatelet compositesMechanical propertiesMelt extrusionPolymer crystallinity
Composites of LDPE filled with different amounts of graphene nanoplatelets (GnP) were prepared in form of films by means of precoating technique and single screw melt-extrusion using two types of screws, compression and mixing. This manufacturing process imposes strong anisotropy on the sample's morphology, in which the nanoplatelets become oriented along the extrusion direction. Such orientation of GnP in LDPE matrix is confirmed by scanning electron microscopy observations and it yields unique electrical properties. As compared to pure LDPE, significant reductions of the through-plane conductivity are found for the composites at relatively low electric fields (<20 kV/mm) at low filler concentrations. Above the field level of 20 kV/mm, a crossover effect is observed that results in a strong field dependency of the conductivity where the non-linear behavior starts to dominate. Moreover, differential scanning calorimetry (DSC) results indicate a decrease in polymer crystallinity of the composite matrix with increasing filler content, whereas thermogravimetric (TG) analysis shows a slight increase in the material's thermal stability. Application of GnP also leads to improvement of mechanical properties, manifested by the increase of Young's modulus and tensile strength in both types of samples.
1
Above 20 kV/mm, the composites show a conductivity crossover and increasingly dominant nonlinear, field-dependent electrical behavior.
2
At low filler concentrations and electric fields below 20 kV/mm, graphene nanoplatelets significantly reduce the composites’ through-plane conductivity relative to pure LDPE.
3
Graphene nanoplatelets improve mechanical performance, increasing Young’s modulus and tensile strength for samples produced with both compression and mixing screws.
4
Increasing graphene nanoplatelet content decreases LDPE matrix crystallinity but slightly improves thermal stability.
5
LDPE/graphene nanoplatelet films produced by melt extrusion exhibit strong morphology anisotropy, with nanoplatelets oriented along the extrusion direction.

LDPE composites filled with graphene nanoplatelets (GnP) produced as films by melt extrusion

The effects of extrusion-induced GnP orientation and filler concentration on the composites’ electrical conductivity, crystallinity, thermal stability, and mechanical properties

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2017-01-04
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Roland Kádár
Karolina Gąska
Stanislaw Gubanski
Xiangdong Xu
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