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research article

Radical photoinduced cationic frontal polymerization in porous media

Maugeri, Daniele
•
Sangermano, Marco
•
Leterrier, Yves  
2021
Polymer International

Two different interpenetrating phase composites were produced using a radical photoinduced cationic frontal polymerization process. The composites were based on polyurethane (PU) and aluminium open-cell foams impregnated with a formulation of a cycloaliphatic epoxy with different concentrations of a cationic photoinitiator and a thermal initiator. The influence of both types of initiators on the frontal polymerization features was systematically evaluated for the PU foam. It was found to occur only when the concentration of both initiators was greater than 0.5 wt%, leading to full conversion of the epoxy in the whole volume of the 15 mm thick composite samples within less than 100 s. The maximum temperature reached by the propagation front was in the range 275-305 degrees C depending on the type of formulation, leading to pores in the epoxy phase and extensive degradation of the PU phase. In the case of the opaque aluminium foam, an additional layer of pure resin was required on the UV-exposed surface, which corresponded to a critical mass of a few grams to ensure sufficient heat generation and trigger the front propagation. (c) 2020 Society of Chemical Industry

  • Details
  • Metrics
Type
research article
DOI
10.1002/pi.6156
Web of Science ID

WOS:000598771200001

Author(s)
Maugeri, Daniele
Sangermano, Marco
Leterrier, Yves  
Date Issued

2021

Publisher

WILEY

Published in
Polymer International
Volume

70

Issue

3

Start page

269

End page

276

Subjects

Polymer Science

•

Polymer Science

•

interpenetrating phase composites

•

frontal polymerization

•

photopolymerization

•

epoxy

•

polyurethane foam

•

aluminium foam

•

interpenetrating phase composites

•

consolidation

•

monomers

•

behavior

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPAC  
Available on Infoscience
December 30, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/174354
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