Article |
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Article name |
Modeling Shock-wave Deformation of Epoxy Resin |
Authors |
Voronin M.S. Postgraduate student of the Laboratory of High Velocity Processes, mihause@academ.orgMerzhievsky , () L.A. Doctor of Physics and Mathematics, Professor of the Laboratory of High Velocity Processes, merzh@hydro.nsc.ru |
Bibliographic description |
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Section |
Scientific Research |
UDK |
539.3 |
DOI |
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Article type |
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Annotation |
The article presents the constructed equations of the model of viscoelastic body of
Maxwell’s type to describe the behavior of epoxy resin under intense dynamic loads, including
the equation of state at nonorbicular deformation tensor and the dependence of the relaxation
time of shear stress on the parameters that characterize the state of the environment. To
identify the model parameters the study uses experimental deformation diagrams and data
on the compressibility of specific resins. The article presents solutions to a number of shock-
wave deformation problems.
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Key words |
epoxy resins, equation of state, relaxation time, shock-wave processes |
Article information |
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References |
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Full article | Modeling Shock-wave Deformation of Epoxy Resin |