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Thermogravimetric analysis shows that the weight loss of the composites is less than 2.40 wt.% after oxidizing at 1400 °C for 220 h.
The amount of carbon in these composites is less than 6.8 wt.%, and the X-ray diffraction experiment confirms that all samples are pure single phase indexed with the orthorhombic Pnma space group.
We found that the presence of MLG can greatly increase electrical conductivity of the MLG/PVC composites, and the surface electrical conductivity of the MLG/PVC composites is less than 3 × 108 Ohm/square when the MLG loading is about 3.5 wt%, meeting anti-static requirement for commercial anti-static PVC films.
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In Figure 6, the loss tangents of the PEI/MWNT/BSTZ composites are less than 5%.
The loss tangents of the PEI/MWNT composites were less than 4%, as shown in Figure 4.
In addition, most loss tangents of the composites were less than 0.05.
The electrical properties of the composites are less affected by the presence of agglomerates.
At the same temperature, all the curves of the composites indicated that the weight loss of the composites was less than that of the pure PAI matrix.
It is observed that hybrid composites are less notch sensitive compared to only-carbon or only-glass composites.
By comparing the effects of SWCNT and MWCNT, they found that MWCNT-containing composites was less conducting that the SWCNT-based series and composites based on oxidized CNTs were less conducting than that containing unoxidized ones.
But the mechanical properties of natural fibre composites are less than that of synthetic composite like glass fiber reinforced polymer (GFRP).
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