In this paper thermal and thermo-oxidative stability of nylon 6 based nanocomposites containing up to 5% by weight of fatty acid coated calcium carbonate (CaCO3) nanoparticles is studied. Thermal stability of compression-moulded samples was evaluated by thermogravimetric analysis (TG) under air and nitrogen atmosphere. Kinetic analysis of TG data was performed by using the Flynn-Wall-Ozawa method. Results show that the presence of coated nanoparticles adversely affects the thermal and thermo-oxidative stability of nylon 6. Kinetic analysis shows that a complex, multi-step decomposition process occurs. Moreover, the presence of nanoparticles do not affect the rate limiting step of nylon 6 decomposition in air, while under nitrogen atmosphere the decomposition process occurs through a diffusion-driven regime in presence of high amounts of CaCO3.

Nylon 6 based nanocomposites: influence of calcium carbonate nanoparticles on the thermal stability / M., Avella; Carfagna, Cosimo; P., Cerruti; M. E., Errico; G., Gentile. - In: MACROMOLECULAR SYMPOSIA. - ISSN 1022-1360. - 234:(2006), pp. 163-169.

Nylon 6 based nanocomposites: influence of calcium carbonate nanoparticles on the thermal stability

CARFAGNA, COSIMO;
2006

Abstract

In this paper thermal and thermo-oxidative stability of nylon 6 based nanocomposites containing up to 5% by weight of fatty acid coated calcium carbonate (CaCO3) nanoparticles is studied. Thermal stability of compression-moulded samples was evaluated by thermogravimetric analysis (TG) under air and nitrogen atmosphere. Kinetic analysis of TG data was performed by using the Flynn-Wall-Ozawa method. Results show that the presence of coated nanoparticles adversely affects the thermal and thermo-oxidative stability of nylon 6. Kinetic analysis shows that a complex, multi-step decomposition process occurs. Moreover, the presence of nanoparticles do not affect the rate limiting step of nylon 6 decomposition in air, while under nitrogen atmosphere the decomposition process occurs through a diffusion-driven regime in presence of high amounts of CaCO3.
2006
Nylon 6 based nanocomposites: influence of calcium carbonate nanoparticles on the thermal stability / M., Avella; Carfagna, Cosimo; P., Cerruti; M. E., Errico; G., Gentile. - In: MACROMOLECULAR SYMPOSIA. - ISSN 1022-1360. - 234:(2006), pp. 163-169.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/417917
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