Experimental and theoretical basis for the creation of frost-resistant polymeric composite materials

The structural-mechanical behavior of a three-dimensional cross-linked elastomer, filled with solid particles under uniaxial tension were considered. This paper presents a theoretical and experimental basis for the development frost-resistant (glass transition temperature of ~170K), elastic (deforma...

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Published inIOP conference series. Earth and environmental science Vol. 193; no. 1; pp. 12053 - 12057
Main Authors Nurullayev, E M, Yu Lyubimova, N
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 30.10.2018
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Abstract The structural-mechanical behavior of a three-dimensional cross-linked elastomer, filled with solid particles under uniaxial tension were considered. This paper presents a theoretical and experimental basis for the development frost-resistant (glass transition temperature of ~170K), elastic (deformation of at least 70% at T~223K) polymer composite material. The equations of mechanical stresses dependence on deformation were used. Based on the results of numerical experiments, a frost-resistant elastic polymer composite material is simulated. The material was tested with a bursting machine and the experimental results were compared with the calculated data.
AbstractList The structural-mechanical behavior of a three-dimensional cross-linked elastomer, filled with solid particles under uniaxial tension were considered. This paper presents a theoretical and experimental basis for the development frost-resistant (glass transition temperature of ~170K), elastic (deformation of at least 70% at T~223K) polymer composite material. The equations of mechanical stresses dependence on deformation were used. Based on the results of numerical experiments, a frost-resistant elastic polymer composite material is simulated. The material was tested with a bursting machine and the experimental results were compared with the calculated data.
Author Yu Lyubimova, N
Nurullayev, E M
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Cites_doi 10.1007/s11029-016-9585-0
10.1134/S1070427214040181
10.1002/pol.1972.110100211
10.1063/1.1713094
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Copyright Published under licence by IOP Publishing Ltd
2018. This work is published under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
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References Ermilov A S (1) 2011; 84
Treloar I R G (3) 1974; 47
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  publication-title: Rubber Rev.
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    fullname: Treloar I R G
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  issn: 0021-8871
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    fullname: Ermilov A S
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StartPage 12053
SubjectTerms Composite materials
Deformation
Elastic deformation
Elastomers
Frost
Frost resistance
Glass transition temperature
Mechanical properties
Polymer matrix composites
Polymers
Transition temperatures
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Title Experimental and theoretical basis for the creation of frost-resistant polymeric composite materials
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