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Analysis of flammability and smoke emission of rigid polyurethane foams modified with nanoparticles and halogen-free fire retardants

Kamila SałasińskaCentral Institute for Labour Protection – National Research Institute (CIOP-PIB), Czerniakowska 16, 00-701, Warsaw, PolandMonika BoruckaCentral Institute for Labour Protection – National Research Institute (CIOP-PIB), Czerniakowska 16, 00-701, Warsaw, PolandMilena LeszczyńskaWarsaw University of Technology, Wołoska 141, 02-507, Warsaw, PolandWojciech ZatorskiCentral Institute for Labour Protection – National Research Institute (CIOP-PIB), Czerniakowska 16, 00-701, Warsaw, PolandMaciej CelińskiCentral Institute for Labour Protection – National Research Institute (CIOP-PIB), Czerniakowska 16, 00-701, Warsaw, PolandAgnieszka GajekCentral Institute for Labour Protection – National Research Institute (CIOP-PIB), Czerniakowska 16, 00-701, Warsaw, PolandJoanna RyszkowskaWarsaw University of Technology, Wołoska 141, 02-507, Warsaw, Poland
2017en
ABI

Аннотация

Using one-step method, rigid polyurethane foams were made, modified with developed fire retardant systems containing halogen-free flame retardants and nanofillers in the form of multi-walled carbon nanotubes or nanoscale titanium dioxide. The materials were subjected to a test using a cone calorimeter and smoke-generating chamber, and selected samples were further analyzed via thermogravimetry and oxygen index. Moreover, the products of thermal degradation of selected samples were identified using gas chromatography with mass spectrometer. Conducted flammability tests confirmed the presence of a synergistic effect between the used nanofillers and halogen-free flame retardants. It has been observed that the carbonized layer, the formation of which favored the presence of nanoadditives, inhibits the combustion process. Furthermore, nanofillers influenced favorably reduction in the amount and the number of occurring products of thermal degradation.

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