Analysis of the thermal properties of nanomodified epoxy composite

The paper presents the results of experimental research of epoxy composites modified by nanoparticles. The results were obtained by the method of thermogravimetric analysis. The dependences between the intensity of the processes of thermal degradation in the air and technological factors and content...

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Main Authors: FOMIN Nikolay Egorovich, NIZINA Tatyana Anatolevna, YUDIN Vyacheslav Aleksandrovich, KISLYAKOV Pavel Aleksandrovich, KIREEV Alexey Anatolevich
Format: Article
Language:English
Published: OOO "CNT «NanoStroitelstvo» 2014-02-01
Series:Нанотехнологии в строительстве
Online Access:http://nanobuild.ru/en_EN/journal/Nanobuild-1-2014/38-50.pdf
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spelling doaj-42ee48c2e55744ae970bd49963da00492021-04-02T20:44:12ZengOOO "CNT «NanoStroitelstvo»Нанотехнологии в строительстве2075-85452014-02-01613850Analysis of the thermal properties of nanomodified epoxy compositeFOMIN Nikolay Egorovich0NIZINA Tatyana Anatolevna1YUDIN Vyacheslav Aleksandrovich2KISLYAKOV Pavel Aleksandrovich3KIREEV Alexey Anatolevich4Ph.D. in Physics and Mathematics, Professor, Head of the Chair of Solid State Physics, N.P.Ogarev Mordovia State University, Institute of Physics and Chemistry; Bolshevitskays str., bld. 68, Saransk, Republic of Mordovia, 430005Doctor of Engineering, Associate Professor, Adviser of the Russian Academy of Architecture and Construction Sciences, Professor of the Chair of Building Structures, N.P.Ogarev Mordovia State University, the Faculty of Architecture and Construction; Sovetskaya str., bld.24, Saransk, Republic of Mordovia, 430005Ph.D. in Physics and Mathematics, Associate Professor of the Chair of Solid State Physics, N.P.Ogarev Mordovia State University, Institute of Physics and Chemistry; Bolshevitskays str., bld. 68, Saransk, Republic of Mordovia, 430005,Postgraduate of the Chair of Building Structures, N.P.Ogarev Mordovia State University, the Faculty of Architecture and Construction; Sovetskaya str., bld.24, Saransk, Republic of Mordovia, 430005Postgraduate of the Chair of Solid State Physics, N.P.Ogarev Mordovia State University, Institute of Physics and Chemistry; Bolshevitskays str., bld. 68, Saransk, Republic of Mordovia, 430005The paper presents the results of experimental research of epoxy composites modified by nanoparticles. The results were obtained by the method of thermogravimetric analysis. The dependences between the intensity of the processes of thermal degradation in the air and technological factors and content of nanoparticles have been determined. The optimal concentration of 5 types of nanomodifiers besed on carbon nanoclusters adducts, which are functionalized carbon compounds has been revealed. The obvious advantage of these modifiers is their high solubility in polar solvents, that makes the use of these modifiers easier and allows disusing the additional sonication. Investigation of thermooxidation processes of modified epoxy resins was performed in a dynamic mode using TGA/SDTA851e module of STARe System in the temperature range 25÷800⁰C in air atmosphere with simultaneous removal of the gaseous decomposition products. Aluminum oxide (Al₂O₃) was used as the etalon, the temperature speed set was 10 deg./min. It was found out that the process of thermal degradation consists of two stages. The first step is characterized by the main oxidative degradation of polymer and the loss of up to 80% of the original sample weight, the second step is accompanied by the further oxidative decomposition of epoxy composite related to the carbon skeleton destruction. It was proved experimentally that injection of modifiers changes thermal-oxidative decomposition processes and also changes specific energy of epoxy composite according to the type and concentration of nanomodifier. It was shown that the injection of optimal amounts of modifier allows increase of the thermal and energy characteristics, and as a result, the durability of epoxy coatings exposed to aggressive climatic factors.http://nanobuild.ru/en_EN/journal/Nanobuild-1-2014/38-50.pdf
collection DOAJ
language English
format Article
sources DOAJ
author FOMIN Nikolay Egorovich
NIZINA Tatyana Anatolevna
YUDIN Vyacheslav Aleksandrovich
KISLYAKOV Pavel Aleksandrovich
KIREEV Alexey Anatolevich
spellingShingle FOMIN Nikolay Egorovich
NIZINA Tatyana Anatolevna
YUDIN Vyacheslav Aleksandrovich
KISLYAKOV Pavel Aleksandrovich
KIREEV Alexey Anatolevich
Analysis of the thermal properties of nanomodified epoxy composite
Нанотехнологии в строительстве
author_facet FOMIN Nikolay Egorovich
NIZINA Tatyana Anatolevna
YUDIN Vyacheslav Aleksandrovich
KISLYAKOV Pavel Aleksandrovich
KIREEV Alexey Anatolevich
author_sort FOMIN Nikolay Egorovich
title Analysis of the thermal properties of nanomodified epoxy composite
title_short Analysis of the thermal properties of nanomodified epoxy composite
title_full Analysis of the thermal properties of nanomodified epoxy composite
title_fullStr Analysis of the thermal properties of nanomodified epoxy composite
title_full_unstemmed Analysis of the thermal properties of nanomodified epoxy composite
title_sort analysis of the thermal properties of nanomodified epoxy composite
publisher OOO "CNT «NanoStroitelstvo»
series Нанотехнологии в строительстве
issn 2075-8545
publishDate 2014-02-01
description The paper presents the results of experimental research of epoxy composites modified by nanoparticles. The results were obtained by the method of thermogravimetric analysis. The dependences between the intensity of the processes of thermal degradation in the air and technological factors and content of nanoparticles have been determined. The optimal concentration of 5 types of nanomodifiers besed on carbon nanoclusters adducts, which are functionalized carbon compounds has been revealed. The obvious advantage of these modifiers is their high solubility in polar solvents, that makes the use of these modifiers easier and allows disusing the additional sonication. Investigation of thermooxidation processes of modified epoxy resins was performed in a dynamic mode using TGA/SDTA851e module of STARe System in the temperature range 25÷800⁰C in air atmosphere with simultaneous removal of the gaseous decomposition products. Aluminum oxide (Al₂O₃) was used as the etalon, the temperature speed set was 10 deg./min. It was found out that the process of thermal degradation consists of two stages. The first step is characterized by the main oxidative degradation of polymer and the loss of up to 80% of the original sample weight, the second step is accompanied by the further oxidative decomposition of epoxy composite related to the carbon skeleton destruction. It was proved experimentally that injection of modifiers changes thermal-oxidative decomposition processes and also changes specific energy of epoxy composite according to the type and concentration of nanomodifier. It was shown that the injection of optimal amounts of modifier allows increase of the thermal and energy characteristics, and as a result, the durability of epoxy coatings exposed to aggressive climatic factors.
url http://nanobuild.ru/en_EN/journal/Nanobuild-1-2014/38-50.pdf
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