The Role of Carbonized Layers for Fire Protection of Polymer Materials

The present work studies the processes occurring in pre-flame zone in the form of «candle-like flame» which is spread over the surface of epoxy polymer. As exemplified by epoxy polymer, it can be seen that the dominating mechanism of heat transfer from flame to pre-flame zone of carbonized polymers...

Full description

Bibliographic Details
Main Authors: Z. A. Mansurov, B. Ya. Kolesnikov, V. L. Efremov
Format: Article
Language:English
Published: al-Farabi Kazakh National University 2018-01-01
Series:Eurasian Chemico-Technological Journal 
Online Access:http://ect-journal.kz/index.php/ectj/article/view/613
id doaj-89aea632cf254cb6adece0b6db841234
record_format Article
spelling doaj-89aea632cf254cb6adece0b6db8412342020-11-25T00:30:37Zengal-Farabi Kazakh National UniversityEurasian Chemico-Technological Journal 1562-39202522-48672018-01-01201637210.18321/ectj709613The Role of Carbonized Layers for Fire Protection of Polymer MaterialsZ. A. Mansurov0B. Ya. Kolesnikov1V. L. Efremov2The Institute of Combustion Problems, 050012, Bogenbay batyr str. 172, Almaty KazakhstanThe Institute of Combustion Problems, 050012, Bogenbay batyr str. 172, Almaty KazakhstanThe Institute of Combustion Problems, 050012, Bogenbay batyr str. 172, Almaty KazakhstanThe present work studies the processes occurring in pre-flame zone in the form of «candle-like flame» which is spread over the surface of epoxy polymer. As exemplified by epoxy polymer, it can be seen that the dominating mechanism of heat transfer from flame to pre-flame zone of carbonized polymers is a thermal conductivity by condensed phase (to phase). The mechanism of gasification processes in pre-flame zone is proposed. Gasification of the material in front of the flame edge is a controlling process, and when selecting flame retardants, it is necessary to register their ability to influence on kinetics and mechanism of gasification. The flame leading edge is bordered with the surface of polymer, which largely determines the nature of heat transfer in pre-flame region. Due to investigations of gas-phase composition at «candle-like» combustion of epoxy polymer it has been detected a considerable amount of oxygen (up to 10‒12%) near burning surface. Its presence facilitates the thermal oxidation of polymer, moreover the rate of thermal oxidation can significantly exceed the thermal decomposition rate of the polymer. The possibility to form the heat-insulating intumescent layer during decomposition of carbonizable polymers was used at development of flame retardant coatings ‒ complex multicomponent systems. Which in turns forms the intumescent carbonized layer with high porosity and low thermal conductivity, and protects based material or construction from premature heating up to critical temperatures.http://ect-journal.kz/index.php/ectj/article/view/613
collection DOAJ
language English
format Article
sources DOAJ
author Z. A. Mansurov
B. Ya. Kolesnikov
V. L. Efremov
spellingShingle Z. A. Mansurov
B. Ya. Kolesnikov
V. L. Efremov
The Role of Carbonized Layers for Fire Protection of Polymer Materials
Eurasian Chemico-Technological Journal 
author_facet Z. A. Mansurov
B. Ya. Kolesnikov
V. L. Efremov
author_sort Z. A. Mansurov
title The Role of Carbonized Layers for Fire Protection of Polymer Materials
title_short The Role of Carbonized Layers for Fire Protection of Polymer Materials
title_full The Role of Carbonized Layers for Fire Protection of Polymer Materials
title_fullStr The Role of Carbonized Layers for Fire Protection of Polymer Materials
title_full_unstemmed The Role of Carbonized Layers for Fire Protection of Polymer Materials
title_sort role of carbonized layers for fire protection of polymer materials
publisher al-Farabi Kazakh National University
series Eurasian Chemico-Technological Journal 
issn 1562-3920
2522-4867
publishDate 2018-01-01
description The present work studies the processes occurring in pre-flame zone in the form of «candle-like flame» which is spread over the surface of epoxy polymer. As exemplified by epoxy polymer, it can be seen that the dominating mechanism of heat transfer from flame to pre-flame zone of carbonized polymers is a thermal conductivity by condensed phase (to phase). The mechanism of gasification processes in pre-flame zone is proposed. Gasification of the material in front of the flame edge is a controlling process, and when selecting flame retardants, it is necessary to register their ability to influence on kinetics and mechanism of gasification. The flame leading edge is bordered with the surface of polymer, which largely determines the nature of heat transfer in pre-flame region. Due to investigations of gas-phase composition at «candle-like» combustion of epoxy polymer it has been detected a considerable amount of oxygen (up to 10‒12%) near burning surface. Its presence facilitates the thermal oxidation of polymer, moreover the rate of thermal oxidation can significantly exceed the thermal decomposition rate of the polymer. The possibility to form the heat-insulating intumescent layer during decomposition of carbonizable polymers was used at development of flame retardant coatings ‒ complex multicomponent systems. Which in turns forms the intumescent carbonized layer with high porosity and low thermal conductivity, and protects based material or construction from premature heating up to critical temperatures.
url http://ect-journal.kz/index.php/ectj/article/view/613
work_keys_str_mv AT zamansurov theroleofcarbonizedlayersforfireprotectionofpolymermaterials
AT byakolesnikov theroleofcarbonizedlayersforfireprotectionofpolymermaterials
AT vlefremov theroleofcarbonizedlayersforfireprotectionofpolymermaterials
AT zamansurov roleofcarbonizedlayersforfireprotectionofpolymermaterials
AT byakolesnikov roleofcarbonizedlayersforfireprotectionofpolymermaterials
AT vlefremov roleofcarbonizedlayersforfireprotectionofpolymermaterials
_version_ 1725325862467796992