Abstract
HMX, RDX and NTO based cast-cured plastic bounded explosive (PBX) are widely used in insensitive ammunitions. Designing modern warheads needs robust and reliable models to compute shock ignition and detonation propagation inside PBX. Comparing to a pressed PBX, a cast-cured PBX is not porous and the hot-spots are mainly located at the grain-binder interface leading to a different burning behavior during shock-to-detonation transition. Here, we review the shock-to-detonation transition (SDT) and its modeling for cast-cured PBX containing HMX, RDX and NTO. Future direction is given in conclusion. © Published under licence by IOP Publishing Ltd.
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CITATION STYLE
Baudin, G., Roudot, M., Genetier, M., Mateille, P., & Lefrançois, A. (2014). Shock-to-detonation transition of RDX, HMX and NTO based composite high explosives: Experiments and modelling. In Journal of Physics: Conference Series (Vol. 500). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/500/5/052004
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