Kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral filler

This article presents the research of dependencies with a filler in the form of fly ash, the mixture temperature and other factors influencing the kinetic characteristics of composite foaming based on the mixture of thermosetting resin (phenol-formaldehyde resins of different brands), fly ash and sp...

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Main Author: A.E. Burdonov
Format: Article
Language:English
Published: Peter the Great St. Petersburg Polytechnic University 2014-05-01
Series:Инженерно-строительный журнал
Subjects:
Online Access:http://www.engstroy.spb.ru/index_2014_03/01.pdf
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spelling doaj-037631befaa74472b3f9de6ee90a11f72020-11-25T03:01:27ZengPeter the Great St. Petersburg Polytechnic UniversityИнженерно-строительный журнал2071-47262071-03052014-05-0147391610.5862/MCE.47.1Kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral fillerA.E. Burdonov 0Irkutsk State Technical UniversityThis article presents the research of dependencies with a filler in the form of fly ash, the mixture temperature and other factors influencing the kinetic characteristics of composite foaming based on the mixture of thermosetting resin (phenol-formaldehyde resins of different brands), fly ash and special modifiers. The article shows the duration and multiplicity of foaming, as well as the induction period of the composition depending on the amount of the filler used and other process parameters. It was found out that to obtain a homogeneous composite, the minimum thickness of the upper layer in the wooden form (S = 1m2) should be not less than 4 mm. The reaction with fly ash Thermal Power Station-9 (Open joint-stock company “Irkutskenergo”, Angarsk) starts by 27% earlier than the use of fly ash in Ust-Ilimsk Hydroelectric Power Station. Using the obtained data, we developed mathematical models, expressed by regression equations.http://www.engstroy.spb.ru/index_2014_03/01.pdfinsulationfoaming kineticsfly ashphenol formaldehyde resinfillercomposite materials
collection DOAJ
language English
format Article
sources DOAJ
author A.E. Burdonov
spellingShingle A.E. Burdonov
Kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral filler
Инженерно-строительный журнал
insulation
foaming kinetics
fly ash
phenol formaldehyde resin
filler
composite materials
author_facet A.E. Burdonov
author_sort A.E. Burdonov
title Kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral filler
title_short Kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral filler
title_full Kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral filler
title_fullStr Kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral filler
title_full_unstemmed Kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral filler
title_sort kinetic features of foaming thermosetting polymers in the preparation of thermal insulation materials in the presence of a mineral filler
publisher Peter the Great St. Petersburg Polytechnic University
series Инженерно-строительный журнал
issn 2071-4726
2071-0305
publishDate 2014-05-01
description This article presents the research of dependencies with a filler in the form of fly ash, the mixture temperature and other factors influencing the kinetic characteristics of composite foaming based on the mixture of thermosetting resin (phenol-formaldehyde resins of different brands), fly ash and special modifiers. The article shows the duration and multiplicity of foaming, as well as the induction period of the composition depending on the amount of the filler used and other process parameters. It was found out that to obtain a homogeneous composite, the minimum thickness of the upper layer in the wooden form (S = 1m2) should be not less than 4 mm. The reaction with fly ash Thermal Power Station-9 (Open joint-stock company “Irkutskenergo”, Angarsk) starts by 27% earlier than the use of fly ash in Ust-Ilimsk Hydroelectric Power Station. Using the obtained data, we developed mathematical models, expressed by regression equations.
topic insulation
foaming kinetics
fly ash
phenol formaldehyde resin
filler
composite materials
url http://www.engstroy.spb.ru/index_2014_03/01.pdf
work_keys_str_mv AT aeburdonov kineticfeaturesoffoamingthermosettingpolymersinthepreparationofthermalinsulationmaterialsinthepresenceofamineralfiller
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