会议论文详细信息
30th International Conference on Interaction of Intense Energy Fluxes with Matter
Numerical investigations of shock wave propagation in polymethylmethacrylate
Popova, T.V.^1 ; Mayer, A.E.^1 ; Khishchenko, K.V.^2
Chelyabinsk State University, Bratiev Kashirinykh Street 129, Chelyabinsk
454001, Russia^1
Joint Institute for High Temperatures, Russian Academy of Sciences, Izhorskaya 13, Moscow
125412, Russia^2
关键词: Calculation results;    Equation of state;    Free surface velocity;    Hydrodynamic calculation;    Numerical investigations;    Shock wave velocity;    Visco-elastic mediums;    Viscoelastic properties;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/653/1/012045/pdf
DOI  :  10.1088/1742-6596/653/1/012045
来源: IOP
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【 摘 要 】

Using the Maxwell model of viscoelastic medium, we numerically investigate the influence of the viscoelastic properties of polymethylmethacrylate on the variation of the shock wave amplitude with depth. Parameters of the Maxwell model are chosen by comparison with experimental data on the high-speed impact of plates in order to fit the modeling results with the experimentally measured profiles of the free-surface velocity. A caloric equation of state is used to calculate the pressure from density and internal energy. It is shown that at the limit of weak shock waves, the accounting of the viscoelastic properties allows one to achieve a better agreement between calculated and experimental data for the magnitude of the shock wave velocity in comparison with the case of hydrodynamic calculations. Using the viscoelastic and hydrodynamic approaches, we investigated the dynamics of shock waves in polymethylmethacrylate initiated by micro-, nano- and picosecond pulses of pressure on the sample surface. The calculation results show that the changes in the shock wave amplitude with depth are approximately identical in the hydrodynamic and viscoelastic cases.

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