Effects of the Nanofillers on Physical Properties of Acrylonitrile-Butadiene-Styrene Nanocomposites: Comparison of Graphene Nanoplatelets and Multiwall Carbon Nanotubes

Nanomaterials
Sithiprumnea DulLuca Fambri

Abstract

The effects of carbonaceous nanoparticles, such as graphene (GNP) and multiwall carbon nanotube (CNT) on the mechanical and electrical properties of acrylonitrile⁻butadiene⁻styrene (ABS) nanocomposites have been investigated. Samples with various filler loadings were produced by solvent free process. Composites ABS/GNP showed higher stiffness, better creep stability and processability, but slightly lower tensile strength and electrical properties (low conductivity) when compared with ABS/CNT nanocomposites. Tensile modulus, tensile strength and creep stability of the nanocomposite, with 6 wt % of GNP, were increased by 47%, 1% and 42%, respectively, while analogous ABS/CNT nanocomposite showed respective values of 23%, 12% and 20%. The electrical percolation threshold was achieved at 7.3 wt % for GNP and 0.9 wt % for CNT. The peculiar behaviour of conductive CNT nanocomposites was also evidenced by the observation of the Joule's effect after application of voltages of 12 and 24 V. Moreover, comparative parameters encompassing stiffness, melt flow and resistivity were proposed for a comprehensive evaluation of the effects of the fillers.

References

Jan 19, 2018·Nanomaterials·Sithiprumnea DulAlessandro Pegoretti

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Citations

Mar 28, 2020·Chemistry : a European Journal·S GentiluomoFrancesco Bonaccorso
Oct 2, 2020·Advanced Science·Zhen JiangLuke A Connal
Dec 28, 2019·Nanomaterials·Chungyeon Cho, Jihun Son
Oct 29, 2021·ACS Applied Materials & Interfaces·Dharneedar RavichandranKenan Song

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Methods Mentioned

BETA
chips
transmission electron microscopy

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