Innovative composite on the basis of an aerogel mat with an epoxy resin modified with PET waste and PCM

The article presents a patent proposition of a composite – sandwich panel made of aerogel mat and a composition of encapsulated phase-change material PCM and epoxy resin modified by glycolysis based on poly(ethylene terephthalate) waste. A multifunctional thermal insulation material with a large hea...

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Main Authors: Dębska Bernardeta, Lichołai Lech, Szyszka Jerzy
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20184400031
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spelling doaj-678515435ec64579bca873a16ceceae02021-02-02T03:17:38ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01440003110.1051/e3sconf/20184400031e3sconf_eko-dok2018_00031Innovative composite on the basis of an aerogel mat with an epoxy resin modified with PET waste and PCMDębska BernardetaLichołai LechSzyszka JerzyThe article presents a patent proposition of a composite – sandwich panel made of aerogel mat and a composition of encapsulated phase-change material PCM and epoxy resin modified by glycolysis based on poly(ethylene terephthalate) waste. A multifunctional thermal insulation material with a large heat capacity was obtained. This ability makes it possible to limit the temperature fluctuation in the space encased with the composite. In addition, thanks to the use of aerogel mat, which is characterized by much higher thermal insulation than commonly available materials, it is possible to achieve the assumed thermal resistance using more than two times lower thickness of insulation. The combination of aerogel and resin-PCM makes it possible to give the material virtually any shape. After the hardening process is completed, it has incomparably greater tensile, bending and compression strengths than Styrofoam and mineral wool. These features predispose it for use in situations where high thermal insulation is required while maintaining a low thickness of insulation material and a large thermal capacity of the housing material is indicated, e.g. thin divisions used in passive buildings, window joinery elements, engine compartments and cabin components in vehicles, household appliances etc.https://doi.org/10.1051/e3sconf/20184400031
collection DOAJ
language English
format Article
sources DOAJ
author Dębska Bernardeta
Lichołai Lech
Szyszka Jerzy
spellingShingle Dębska Bernardeta
Lichołai Lech
Szyszka Jerzy
Innovative composite on the basis of an aerogel mat with an epoxy resin modified with PET waste and PCM
E3S Web of Conferences
author_facet Dębska Bernardeta
Lichołai Lech
Szyszka Jerzy
author_sort Dębska Bernardeta
title Innovative composite on the basis of an aerogel mat with an epoxy resin modified with PET waste and PCM
title_short Innovative composite on the basis of an aerogel mat with an epoxy resin modified with PET waste and PCM
title_full Innovative composite on the basis of an aerogel mat with an epoxy resin modified with PET waste and PCM
title_fullStr Innovative composite on the basis of an aerogel mat with an epoxy resin modified with PET waste and PCM
title_full_unstemmed Innovative composite on the basis of an aerogel mat with an epoxy resin modified with PET waste and PCM
title_sort innovative composite on the basis of an aerogel mat with an epoxy resin modified with pet waste and pcm
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2018-01-01
description The article presents a patent proposition of a composite – sandwich panel made of aerogel mat and a composition of encapsulated phase-change material PCM and epoxy resin modified by glycolysis based on poly(ethylene terephthalate) waste. A multifunctional thermal insulation material with a large heat capacity was obtained. This ability makes it possible to limit the temperature fluctuation in the space encased with the composite. In addition, thanks to the use of aerogel mat, which is characterized by much higher thermal insulation than commonly available materials, it is possible to achieve the assumed thermal resistance using more than two times lower thickness of insulation. The combination of aerogel and resin-PCM makes it possible to give the material virtually any shape. After the hardening process is completed, it has incomparably greater tensile, bending and compression strengths than Styrofoam and mineral wool. These features predispose it for use in situations where high thermal insulation is required while maintaining a low thickness of insulation material and a large thermal capacity of the housing material is indicated, e.g. thin divisions used in passive buildings, window joinery elements, engine compartments and cabin components in vehicles, household appliances etc.
url https://doi.org/10.1051/e3sconf/20184400031
work_keys_str_mv AT debskabernardeta innovativecompositeonthebasisofanaerogelmatwithanepoxyresinmodifiedwithpetwasteandpcm
AT lichołailech innovativecompositeonthebasisofanaerogelmatwithanepoxyresinmodifiedwithpetwasteandpcm
AT szyszkajerzy innovativecompositeonthebasisofanaerogelmatwithanepoxyresinmodifiedwithpetwasteandpcm
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