Fast reactions of aluminum and explosive decomposition products in a post-detonation environment

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Abstract

In order to determine the reaction behavior of Al in RDX or HMX/cast-cured binder formulations shortly after the passage of the detonation, a series of cylinder tests was performed on formulations comprising of varying binder systems and either 3.5 μm spherical Al or LiF (an inert salt with a similar molecular weight and density to Al). In these studies, both detonation velocity and cylinder expansion velocity are measured in order to determine exactly how and when Al contributes to the explosive event, particularly in the presence of oxidizing/energetic binders. The U.S. Army Research, Development and Engineering Laboratory at Picatinny have recently coined the term "combined effects" explosives for materials such as these; as they demonstrate both high metal pushing capability and high blast ability. This study is aimed at developing a fundamental understanding of the reaction of Al with explosives decomposition products, where both the detonation and early post-detonation environment are analyzed. Reaction rates of Al metal are investigated via comparison of predicted performance based on thermoequilibrium calculations. The detonation velocities, wall velocities, and parameters at the CJ plane are some of the parameters that will be discussed. © 2012 American Institute of Physics.

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Tappan, B. C., Manner, V. W., Lloyd, J. M., & Pemberton, S. J. (2012). Fast reactions of aluminum and explosive decomposition products in a post-detonation environment. In AIP Conference Proceedings (Vol. 1426, pp. 271–274). https://doi.org/10.1063/1.3686271

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