Molecular dynamics simulations on the structures and properties of ε-CL-20-based PBXs: PPrimary theoretical studies on HEDM formulation design

Xiao Juan Xu, Ji Jun Xiao, Hui Huang, Jin Shan Li, He Ming Xiao

Research output: Contribution to journalArticlepeer-review

59 Scopus citations

Abstract

Five polymer bonded explosives (PBXs) with the base explosive ε-CL-20 (hexanitrohexaazaisowurtzitane), the most important high energy density compound (HEDC), and five polymer binders (Estane 5703, GAP, HTPB, PEG, and F 2314) were constructed. Molecular dynamics (MD) method was employed to investigate their binding energies (E bind), compatibility, safety, mechanical properties, and energetic properties. The information and rules were reported for choosing better binders and guiding formulation design of high energy density material (HEDM). According to the calculated binding energies, the ordering of compatibility and stability of the five PBXs was predicted as ε-CL-20/PEG > ε-CL-20/Estane5703 ≈ ε-CL-20/GAP > ε-CL-20/HTPB > ε-CL-20/F2314. By pair correlation function g(r) analyses, hydrogen bonds and vdw are found to be the main interactions between the two components. The elasticity and isotropy of PBXs based ε-CL-20 can be obviously improved more than pure ε-CL-20 crystal. It is not by changing the molecular structures of ε-CL-20 for each binder to affect the sensitivity. The safety and energetic properties of these PBXs are mainly influenced by the thermal capability (C°p) and density (ρ) of binders, respectively.

Original languageEnglish
Pages (from-to)737-745
Number of pages9
JournalScience in China, Series B: Chemistry
Volume50
Issue number6
DOIs
StatePublished - Dec 2007
Externally publishedYes

Keywords

  • Compatibility
  • Energetic properties
  • Hexanitrohexaazaisowurtzitane (CL-20)
  • High energy density material (HEDM)
  • Mechanical properties
  • Molecular dynamics (MD)
  • Polymer bonded explosives (PBXs)
  • Safety properties

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