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- W2132617077 abstract "Simulations of experiments on shock-induced melting, fragmentation and vapori- zation in aluminum and zinc targets are presented. A titanium impactor moves at a velocity of 10.4 km/s and causes melting of these materials in a shock wave. Under rarefaction thermodynamic path crosses the liquid-vapor coexistence boundary and enters into metastable liquid region. Liquid in a metastable state may undergo either liquid-vapor phase separation or mechanical fragmentation. Homogeneous nucleation theory and mechanical fragmentation criterion of Grady are taken into account to control the kinetics of these processes in our model. The first effect dominates in the vicinity of the critical point, the second one — at lower temperatures. Analysis of phase transitions and kinetics of phase separation is performed using thermodynamically complete equation of state with allowance for stable and metastable regions for all materials under consideration." @default.
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- W2132617077 date "2008-02-01" @default.
- W2132617077 modified "2023-10-18" @default.
- W2132617077 title "Simulation of melting and vaporization of metals at hypervelocity impact" @default.
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- W2132617077 doi "https://doi.org/10.1088/1742-6596/98/4/042025" @default.
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