Sep 2026· Journal of composite materials· 0 citations· 54 references
Abstract
This study aims to investigate the influence of graphene nanoplatelet (GNP) content on the crystallization and melting behavior of polyamide 6 (PA6) nanocomposites produced via melt mixing and injection molding. Compositions containing 0.05 and 0.10 phr of GNP were prepared and characterized using differential scanning calorimetry (DSC), activation energy analysis through the Friedman isoconversional method, Sestak–Berggren–Sbirrazzuoli (SbC) kinetic modeling, and field emission scanning electron microscopy (FEG-SEM). The presence of GNP shifted crystallization to higher temperatures and reduced the activation energy for crystallization, confirming the nanofiller’s nucleating effect. Pseudo-Avrami and SbC modeling showed excellent agreement with experimental data, revealing that GNP modifies crystallization kinetics by reducing the Nakamura Kg index and altering the reaction orders for nucleation and growth. During melting, neat PA6 exhibited complex, multi-step behavior associated with its heterogeneous melting response, whereas the nanocomposites, particularly those with 0.10 phr GNP, exhibited smoother melting behavior and lower apparent kinetic barriers. These results suggest that GNP modifies the thermal history and crystallization/melting behaviour of PA6, although confirmation of specific crystalline phases or structural changes would require complementary techniques such as XRD or WAXD. SEM analysis showed GNP incorporation into the PA6 matrix with localized agglomeration. Overall, the incorporation of GNP alters the crystalline morphology, reduces kinetic barriers, and significantly affects the thermal behavior of PA6, providing valuable insight into processing optimization and the development of advanced PA6-based nanocomposites.
Repeated thermomechanical processing of engineering thermoplastics such as polyamide-6 (PA6), as encountered during mechanical recycling, is often accompanied by progressive losses in mechanical and structural performance. Here, we show that graphene nanoplatelets (GNPs) can mitigate these effects and improve the dur...
Sarab Ahmed, I. Kinloch, M. Bissett· ACS Sustainable Chemistry &a...· 0 citations
This study investigates the crystallization behavior of poly(butylene succinate) (PBS) through blending with highly crystalline polyoxymethylene (POM) to address the inherently slow crystallization rate of PBS. The non-isothermal crystallization kinetics of the individual constituents within the blend systems were syst...
Nanocellular polyetherimide (PEI) exhibits enhanced toughness and impact resistance compared to the initial solid precursor, an effect usually attributed to the presence of nanometric cells within a confined glassy polymer matrix. In this work, we examine whether the CO2 saturation step used in gas dissolution foaming...
F. Lizalde-Arroyo, F. Van Loock, V. Bernardo et al.· Advances in Materials· 0 citations
The influence of amino-functionalized double-walled carbon nanotubes (DWCNTNH2) on the curing behavior and multifunctional properties of an epoxy resin was systematically investigated. Isothermal FTIR analysis, interpreted using Kamal’s autocatalytic model and model-free isoconversional DSC analysis, showed that the pr...
R. Longo, L. Guadagno, M. Raimondo et al.· Polymers· 0 citations
Biopolymers such as polyhydroxybutyrate (PHB) have emerged as promising alternatives to petroleum-based plastics due to plastic pollution. In this context, this study investigates PHB/graphene oxide (GO) nanocomposites. GO was synthesized via chemical oxidation of graphite, and its formation was confirmed by X-ray diff...
M. A. Alves, Pedro Afonso de Moraes Paes, Nancy Camilly Marques de Sena et al.· REVISTA DELOS· 0 citations
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