St. Petersburg, Russian Federation
St. Petersburg, Russian Federation
St. Petersburg, Russian Federation
We investigated factors affecting the combustion products diffusion processes intensity in polymeric heat-insulating materials under fire conditions. We disclosed the content of activation and fluctuation approaches to the description of combustion products diffusion process in polymeric materials. We identified the effect of polymeric materials vitrification process on diffusion processes intensity. We analyzed interaction mechanisms of combustion products with polymeric materials
fire dangerous factors, fire hazard, fire risk, tetrachlormethane, solvents
1. Vorob'ev V.A., Andrianov R.A. Polimernye teploizolyacionnye materialy M: Stroyizdat, 1972. - 320 s.
2. Protivodymnaya zaschita zdaniy i pomescheniy: Posobie 4.91 k SNiP 2.04.05-91. - M.: Promstroyproekt, 1992. - 75 s. DOI: https://doi.org/10.1093/jaoac/75.1.91
3. Bobrov, Ovcharenko, Shoyhet: Teploizolyacionnye materialy i konstrukcii M.: Infra-M, 2011. - 456 s.
4. Banerjee R., Narayankhedkar K.G., Sukhatme S.P. Exergy analysis of pressure swing adsorption processes for air separation. Chem. Eng. Sci., 1990, v.45, No 2, p.p.467-475. DOI: https://doi.org/10.1016/0009-2509(90)87033-O
5. Heyfec L.I., Safonov M.S., Kostromitina M.B., Pavlov Yu.V., Voskresenskiy N.M., Bel'nov V.K. Eksperimental'noe obosnovanie kvaziravnovesnoy modeli dinamiki adsorbcii azota i kisloroda na ceolitah NaX i CaA. Zhurnal fizicheskoy himii, 2002, tom 76, No 6, s. 1124-1131. EDN: https://elibrary.ru/HANHST
6. Tihonov A.N., Samarskiy A.A. Uravneniya matematicheskoy fiziki. M.: «Nauka», 1966 g., 724 s. EDN: https://elibrary.ru/QJNNLR
7. Dubinin M.M. Fiziko-himicheskie osnovy sorbcionnoy tehniki. Moskva - Leningrad: Gosudarstvennoe himiko-tehnicheskoe izdatel'stvo, 1932.
8. Schegolev I.F. Elementy statisticheskoy mehaniki, termodinamiki i kinetiki. - M.: Intellekt, 2008. EDN: https://elibrary.ru/QJTNZH



