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- W4308485588 abstract "• 6 wt% loading level of GNP in PA 6 substantially improves the tensile modulus by 61.4% and flexural modulus by 55.9%. • T g and thermal stability of the PA 6 nanocomposites were improved. % Crystallinity increases upto 49% with GNP addition. • Volume resistivity of PA 6 reduced to order of 10 11 Ω.cm at 2 wt% composites, viable for electrostatic discharge products. • Addition of GNP in PA 6 has resulted in a potential multifunctional PA 6 nanocomposite monofilaments for FFF 3D printing. The pliability of polyamide 6 (PA 6) at high temperatures was exploited in developing a multifunctional polymer nanocomposite viable for electrostatic discharge applications. Co-rotating twin-screw extruder was used to compound 2 wt%, 4 wt%, and 6 wt% graphene nanoplatelets (GNP) with PA 6 to produce monofilaments for Fused Filament Fabrication using Lulzbot 3D printer. The nanographene morphology was evaluated via scanning electron microscopy and materials properties investigation were done according to ASTM standards. Tensile and flexural properties improved incrementally with GNP addition and a significant improvement of 61.4 % and 55.9 % in tensile and flexural modulus respectively was recorded at 6 wt% addition. The nanocomposites exhibited good thermal stability and an increasing crystallization phenomenon with a maximum crystallinity of 49.0 % at 6 wt% loading level was observed. Volume resistivity of the PA 6 matrix was appreciably reduced to the order of 10 11 Ω.cm at 2 wt% nanographene addition, which seems promising for manufacturing static discharge products." @default.
- W4308485588 created "2022-11-12" @default.
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- W4308485588 date "2023-01-01" @default.
- W4308485588 modified "2023-09-26" @default.
- W4308485588 title "Fused filament fabrication of polyamide 6 nanographene composite for electrostatic discharge applications" @default.
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- W4308485588 doi "https://doi.org/10.1016/j.mseb.2022.116086" @default.
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