β → δ phase transition and initial decomposition of HMX nanoparticle from reactive molecular dynamics simulations

Author:

Zhu Simin,Zhu WeihuaORCID

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics,General Materials Science,Modeling and Simulation,General Chemistry,Atomic and Molecular Physics, and Optics,Bioengineering

Reference47 articles.

1. Asay B, Henson B, Smilowitz L, Dickson PM (2003) On the difference in impact sensitivity of beta and delta HMX. J Energ Mater 21:223–235

2. Behrens R, Bulusu S (1995) Thermal decomposition of hmx: low temperature reaction kinetics and their use for assessing response in abnormal thermal environments and implications for long-term aging. MRS Proc 418:119

3. Brill TB, Brush PJ, Kinloch PGA (1992) Energetic materials: condensed phase chemistry of explosives and propellants at high temperature: hmx, rdx and bamo [and discussion]. Philos Trans Phys Sci Eng 339:377–385

4. Burnham AK, Weese RK, Weeks BL (2004) A distributed activation energy model of thermodynamically inhibited nucleation and growth reactions and its application to the β−δ phase transition of HMX. J Phys Chem B 108:19432–19441

5. Cady HH, Smith LC, Laboratory LAS, Commission USAE (1962) Studies on the Polymorphs of HMX. Los Alamos Scientific Laboratory of the University of California, California

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