Cationic photopolymerization of epoxy novolac resins (ENR) formulations were investigated with the aim to develop new UV-Cured coatings characterized by high thermomechanical properties for applications in harsh environments in oil and gas industry. Hybrid coatings were developed by dispersion of inorganic fillers and the properties of UV-cured films were fully characterized in terms of their viscoelastic properties, thermal properties, resistance to heat and adhesion strength.

Novel cationic UV-cured hybrid coatings with enhanced mechanical resistance and thermal properties / Trentalange, Carlo; Sangermano, Marco; Condini, Alessandro; Giuliani, Angela. - ELETTRONICO. - (2022). (Intervento presentato al convegno RADTECH 2022 tenutosi a Orlando, FL, USA nel 9th-12th May 2022).

Novel cationic UV-cured hybrid coatings with enhanced mechanical resistance and thermal properties

Condini, Alessandro
Penultimo
;
2022-01-01

Abstract

Cationic photopolymerization of epoxy novolac resins (ENR) formulations were investigated with the aim to develop new UV-Cured coatings characterized by high thermomechanical properties for applications in harsh environments in oil and gas industry. Hybrid coatings were developed by dispersion of inorganic fillers and the properties of UV-cured films were fully characterized in terms of their viscoelastic properties, thermal properties, resistance to heat and adhesion strength.
2022
2022 UV & EB Technical Conference Proceedings
Chevy Chase, MD, USA
The Association for Ultraviolet and Electron Beam Technologies
Trentalange, Carlo; Sangermano, Marco; Condini, Alessandro; Giuliani, Angela
Novel cationic UV-cured hybrid coatings with enhanced mechanical resistance and thermal properties / Trentalange, Carlo; Sangermano, Marco; Condini, Alessandro; Giuliani, Angela. - ELETTRONICO. - (2022). (Intervento presentato al convegno RADTECH 2022 tenutosi a Orlando, FL, USA nel 9th-12th May 2022).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/399925
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