Plasma surface activation at different process parameters (namely, power and etching time) has been combined with nanoparticle adsorption (i.e., a natural montmorillonite) in order to improve the thermal stability and flame retardancy of PET fabrics. Scanning electron microscopy coupled to elemental analysis has put in evidence a direct relationship between the distribution of nanoparticles on fibers and process parameters. The presence of the above nanoparticles affects the thermal stability of fabrics in air, as assessed by thermogravimetric analysis: a delay of the mass loss process has been observed for the treated samples. Combustion behavior has been investigated by cone calorimetry: plasma activated fabrics have shown a remarkable improvement in terms of time to ignition (up to 104%) and a slight reduction of the heat release rate (ca. 10%) as compared to neat PET.

Influence of surface activation by plasma and nanoparticle adsorption on the morphology, thermal stability and combustion behavior of PET fabrics / F. Carosio, J. Alongi, A. Frache. - In: EUROPEAN POLYMER JOURNAL. - ISSN 0014-3057. - 47:5(2011 May), pp. 893-902. [10.1016/j.eurpolymj.2011.01.009]

Influence of surface activation by plasma and nanoparticle adsorption on the morphology, thermal stability and combustion behavior of PET fabrics

J. Alongi
;
2011

Abstract

Plasma surface activation at different process parameters (namely, power and etching time) has been combined with nanoparticle adsorption (i.e., a natural montmorillonite) in order to improve the thermal stability and flame retardancy of PET fabrics. Scanning electron microscopy coupled to elemental analysis has put in evidence a direct relationship between the distribution of nanoparticles on fibers and process parameters. The presence of the above nanoparticles affects the thermal stability of fabrics in air, as assessed by thermogravimetric analysis: a delay of the mass loss process has been observed for the treated samples. Combustion behavior has been investigated by cone calorimetry: plasma activated fabrics have shown a remarkable improvement in terms of time to ignition (up to 104%) and a slight reduction of the heat release rate (ca. 10%) as compared to neat PET.
No
English
Etching; Flame retardancy; Nanoparticles; PET fabrics; Plasma treatment; Polymers and Plastics
Settore CHIM/04 - Chimica Industriale
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
mag-2011
Elsevier
47
5
893
902
10
Pubblicato
Periodico con rilevanza internazionale
scopus
crossref
Aderisco
info:eu-repo/semantics/article
Influence of surface activation by plasma and nanoparticle adsorption on the morphology, thermal stability and combustion behavior of PET fabrics / F. Carosio, J. Alongi, A. Frache. - In: EUROPEAN POLYMER JOURNAL. - ISSN 0014-3057. - 47:5(2011 May), pp. 893-902. [10.1016/j.eurpolymj.2011.01.009]
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Prodotti della ricerca::01 - Articolo su periodico
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262
Article (author)
Periodico con Impact Factor
F. Carosio, J. Alongi, A. Frache
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/464756
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