Abstract:
A technique is developed for coupled modelling the destruction of polymers under high
energy impact. The simulation of the polymeric materials destruction is used for study of
their behavior during energy impact, for verification of volume fracture models for brittle
materials, and for validation of wide-range equations of state. The destruction may be a
result of an impact of intensive energy flows or mechanical strike. Appropriate modeling
is a complex multiphysics problem, requiring high resolution numerical methods and
high performance computing.
Citation:
V. A. Gasilov, A. S. Grushin, A. S. Ermakov, O. G. Olkhovskaya, I. B. Petrov, “Modelling of the destruction of polymers under high energy impact”, Mat. Model., 30:7 (2018), 61–78; Math. Models Comput. Simul., 11:2 (2019), 198–208
\Bibitem{GasGruErm18}
\by V.~A.~Gasilov, A.~S.~Grushin, A.~S.~Ermakov, O.~G.~Olkhovskaya, I.~B.~Petrov
\paper Modelling of the destruction of polymers under high energy impact
\jour Mat. Model.
\yr 2018
\vol 30
\issue 7
\pages 61--78
\mathnet{http://mi.mathnet.ru/mm3985}
\transl
\jour Math. Models Comput. Simul.
\yr 2019
\vol 11
\issue 2
\pages 198--208
\crossref{https://doi.org/10.1134/S2070048219020066}
Linking options:
https://www.mathnet.ru/eng/mm3985
https://www.mathnet.ru/eng/mm/v30/i7/p61
This publication is cited in the following 7 articles:
K. A. Beklemysheva, “Numerical Modeling of Fracturing in Fiber Reinforced Polymers with Grid-characteristic Method”, Lobachevskii J Math, 45:1 (2024), 155
Dreus A., Yemets V., Dron M., Yemets M., Golubek A., “A Simulation of the Thermal Environment of a Plastic Body of a New Type of Launch Vehicle At the Atmospheric Phase of the Trajectory”, Aircr. Eng. Aerosp. Technol., 94:4 (2022), 505–514
M. I. Gurevich, E. D. Kazakov, Yu. G. Kalinin, A. A. Kurilo, O. V. Tel'kovskaya, K. V. Chukbar, “On the Destruction of Elastic Polymers under Electron Beam Irradiation”, Tech. Phys., 67:7 (2022), 581
D. S. Boykov, O. G. Olkhovskaya, V. A. Gasilov, “Coupled simulation of gasdynamic and elastoplastic phenomena in a material under the action of an intensive energy flux”, Math. Models Comput. Simul., 14:4 (2022), 599–612
O. G. Olkhovskaya, G. A. Bagdasarov, N. A. Bobrova, V. A. Gasilov, L. V. N. Goncalves, C. M. Lazzarini, M. Nevrkla, G. Grittani, S. S. Bulanov, A. J. Gonsalves, C. B. Schroeder, E. Esarey, W. P. Leemans, P. V. Sasorov, S. V. Bulanov, G. Korn, “Plasma channel formation in the knife-like focus of laser beam”, J. Plasma Phys., 86:3 (2020), 905860307
K. Beklemysheva, A. Ermakov, A. Favorskaya, “Numerical simulation of cone object destruction under a short high-energy pulse”, Knowledge-Based and Intelligent Information & Engineering Systems (Kes 2019), Procedia Computer Science, 159, ed. I. Rudas, C. Janos, C. Toro, J. Botzheim, R. Howlett, L. Jain, Elsevier, 2019, 1095–1102
Y. S. Sharova, D. S. Boykov, K. A. Beklemysheva, A. V. Vasyukov, I. B. Petrov, “The fracture of materials under intensive short-time loads”, Proceedings of the 45Th International Conference on Application of Mathematics in Engineering and Economics (Amee'19), AIP Conf. Proc., 2172, eds. V. Pasheva, N. Popivanov, G. Venkov, Amer. Inst. Phys., 2019, 070019