Author:
Kopal Ivan,Vršková Juliána,Bakošová Alžbeta,Harničárová Marta,Labaj Ivan,Ondrušová Darina,Valíček Jan,Krmela Jan
Abstract
Modelling the influence of high-energy ionising radiation on the properties of materials with polymeric matrix using advanced artificial intelligence tools plays an important role in the research and development of new materials for various industrial applications. It also applies to effective modification of existing materials based on polymer matrices to achieve the desired properties. In the presented work, the effects of high-energy electron beam radiation with various doses on the dynamic mechanical properties of melamine resin, phenol-formaldehyde resin, and nitrile rubber blend have been studied over a wide temperature range. A new stiffness-temperature model based on Weibull statistics of the secondary bonds breaking during the relaxation transitions has been developed to quantitatively describe changes in the storage modulus with temperature and applied radiation dose until the onset of the temperature of the additional, thermally-induced polymerisation reactions. A global search real-coded genetic algorithm has been successfully applied to optimise the parameters of the developed model by minimising the sum-squared error. An excellent agreement between the modelled and experimental data has been found.
Funder
Vedecká Grantová Agentúra MŠVVaŠ SR a SAV
Kultúrna a Edukacná Grantová Agentúra MŠVVaŠ SR
Subject
Polymers and Plastics,General Chemistry
Cited by
3 articles.
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