Optimization of the composition of polymer composite materials with hybrid matrices for the production of machine parts operating in Arctic conditions

The results of mechanical tests of polymer composite materials with various types of hybrid matrices at negative temperatures are presented. The hybrid matrix is formed during the product forming by adding viscoelastic components to the binder of the main matrix, which retain a liquid state. Technic...

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Published inJournal of physics. Conference series Vol. 1990; no. 1; pp. 12070 - 12075
Main Authors Kosenko, E A, Zorin, V A
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.08.2021
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ISSN1742-6588
1742-6596
DOI10.1088/1742-6596/1990/1/012070

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Abstract The results of mechanical tests of polymer composite materials with various types of hybrid matrices at negative temperatures are presented. The hybrid matrix is formed during the product forming by adding viscoelastic components to the binder of the main matrix, which retain a liquid state. Technical wax, anaerobic and organosilicon polymer materials were used as viscoelastic components of various types of hybrid matrices. Based on the test results using optimization methods, the optimal compositions of PCMs with hybrid matrices were determined for the production of parts of transport and technological machines operating in Arctic operating conditions at temperatures of -30°C and -50°C.
AbstractList The results of mechanical tests of polymer composite materials with various types of hybrid matrices at negative temperatures are presented. The hybrid matrix is formed during the product forming by adding viscoelastic components to the binder of the main matrix, which retain a liquid state. Technical wax, anaerobic and organosilicon polymer materials were used as viscoelastic components of various types of hybrid matrices. Based on the test results using optimization methods, the optimal compositions of PCMs with hybrid matrices were determined for the production of parts of transport and technological machines operating in Arctic operating conditions at temperatures of -30°C and -50°C.
Author Kosenko, E A
Zorin, V A
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SubjectTerms Composite materials
Composition
Mechanical tests
Optimization
Physics
Polymer matrix composites
Polymers
Viscoelasticity
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Title Optimization of the composition of polymer composite materials with hybrid matrices for the production of machine parts operating in Arctic conditions
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