Water resistance of thermal insulation composites with cellulose-containing filler

One of the urgent tasks is the development of new thermal insulation materials to improve the energy efficiency of construction. In this work, new composites were obtained based on previously unused cellulose-containing waste. The theoretical and experimental substantiation of the possibility of inc...

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Main Authors: Susoeva Irina, Vakhnina Tatiana, Titunin Andrey, Grunin Yuri
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/39/e3sconf_form2021_01002.pdf
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spelling doaj-18873293e13342b590df5fd23521d7622021-06-11T07:15:45ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012630100210.1051/e3sconf/202126301002e3sconf_form2021_01002Water resistance of thermal insulation composites with cellulose-containing fillerSusoeva Irina0Vakhnina Tatiana1Titunin Andrey2Grunin Yuri3Chair Logging and Processings of Wood of Productions, Kostroma State UniversityChair Logging and Processings of Wood of Productions, Kostroma State UniversityChair Logging and Processings of Wood of Productions, Kostroma State UniversityPhysics department Volga State Technical UniversityOne of the urgent tasks is the development of new thermal insulation materials to improve the energy efficiency of construction. In this work, new composites were obtained based on previously unused cellulose-containing waste. The theoretical and experimental substantiation of the possibility of increasing the water resistance of the heat-insulating composite has scientific significance. The features of the supramolecular structure of cellulose are analyzed. As a result of studies of the process of structure formation of a new heat-insulating material, it has been established that to ensure stable heat-insulating properties of composites from cellulose-containing waste, it is advisable to use a phenol-formaldehyde binder, water glass, or alumochromophosphate. The developed composite has a swelling 2.7 ... 3 times less, and water absorption 2.2 ... 2.4 times less than mineral wool slabs. The coefficient of thermal conductivity of the new composite material, depending on the type of cellulose-containing filler, ranges from 0.076 to 0.092 W/m∙K, which makes it possible to recommend it for use in thermal protection of buildings.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/39/e3sconf_form2021_01002.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Susoeva Irina
Vakhnina Tatiana
Titunin Andrey
Grunin Yuri
spellingShingle Susoeva Irina
Vakhnina Tatiana
Titunin Andrey
Grunin Yuri
Water resistance of thermal insulation composites with cellulose-containing filler
E3S Web of Conferences
author_facet Susoeva Irina
Vakhnina Tatiana
Titunin Andrey
Grunin Yuri
author_sort Susoeva Irina
title Water resistance of thermal insulation composites with cellulose-containing filler
title_short Water resistance of thermal insulation composites with cellulose-containing filler
title_full Water resistance of thermal insulation composites with cellulose-containing filler
title_fullStr Water resistance of thermal insulation composites with cellulose-containing filler
title_full_unstemmed Water resistance of thermal insulation composites with cellulose-containing filler
title_sort water resistance of thermal insulation composites with cellulose-containing filler
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description One of the urgent tasks is the development of new thermal insulation materials to improve the energy efficiency of construction. In this work, new composites were obtained based on previously unused cellulose-containing waste. The theoretical and experimental substantiation of the possibility of increasing the water resistance of the heat-insulating composite has scientific significance. The features of the supramolecular structure of cellulose are analyzed. As a result of studies of the process of structure formation of a new heat-insulating material, it has been established that to ensure stable heat-insulating properties of composites from cellulose-containing waste, it is advisable to use a phenol-formaldehyde binder, water glass, or alumochromophosphate. The developed composite has a swelling 2.7 ... 3 times less, and water absorption 2.2 ... 2.4 times less than mineral wool slabs. The coefficient of thermal conductivity of the new composite material, depending on the type of cellulose-containing filler, ranges from 0.076 to 0.092 W/m∙K, which makes it possible to recommend it for use in thermal protection of buildings.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/39/e3sconf_form2021_01002.pdf
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AT vakhninatatiana waterresistanceofthermalinsulationcompositeswithcellulosecontainingfiller
AT tituninandrey waterresistanceofthermalinsulationcompositeswithcellulosecontainingfiller
AT gruninyuri waterresistanceofthermalinsulationcompositeswithcellulosecontainingfiller
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