Abstract
The secondary reaction of the aluminum powder contained in an aluminized explosive is investigated, from which the energy loss resulted from the quantity reduce of the gaseous products is demonstrated. Moreover, taking the energy loss into account, the existing improved Jones-Wilkins-Lee (JWL) equation of state for detonation products of aluminized explosive is modified. Furthermore, the new modified JWL equation of state is implemented into the dynamic analysis software (DYNA)-2D hydro-code to simulate numerically the metal plate acceleration tests of the Hexogen (RDX)-based aluminized explosives. It is found that the numerical results are in good agreement with previous experimental data. In addition, it is also demonstrated that the reaction rate of explosive before the Chapman-Jouget (CJ) state has little influence on the motion of the metal plate, based on which a simple approach is proposed to simulate numerically the products expansion process after the CJ state.
Original language | English |
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Pages (from-to) | 481-489 |
Number of pages | 9 |
Journal | Journal of Energetic Materials |
Volume | 35 |
Issue number | 4 |
DOIs | |
Publication status | Published - 2 Oct 2017 |
Keywords
- Aluminized explosive
- DYNA-2D hydro-code
- detonation products
- equation of state
- simulation