250
Views
1
CrossRef citations to date
0
Altmetric
Articles

Numerical study of countermeasure against thermal stimuli for HMX-based polymer-bonded explosives

, , &

References

  • Asay, B. 2009. Shock wave science and technology reference library. Vol. 5: Non-shock initiation of explosives. Berlin: Springer Science & Business Media.
  • Behrens, R., Jr, S. B. Margolis, and M. L. Hobbs. 1998. A zero-dimensional model of experimental thermal decomposition of HMX. Proceedings of 11th International Detonation Symposium, Aug 31-Sep 4, Snowmass, CO.
  • Berghout, H. L., S. F. Son, C. B. Skidmore, D. J. Idar, and B. W. Asay. 2002. Combustion of damaged PBX 9501 explosive. Thermochimica Acta 384:261–77. doi:10.1016/S0040-6031(01)00802-4.
  • Catalano, E., R. R. McGuire, E. L. Lee, E. W. Wrenn, D. Ornellas, and J. Walton. 1976. Thermal decomposition and reaction of confined explosives. Proceedings of 6th International Symposium on Detonation, Aug 24-27, Coronado, CA.
  • Cheese, P. J., R. I. Briggs, and J. Fellows.1998. Cook-off tests on secondary explosives. Proceedings of 11th International Symposium on Detonation, Aug 31-Sep 4, Snowmass, CO.
  • Chen, L., X. Ma, F. Lu, and J. Wu. 2014. Investigation of the cook-off processes of HMX-based mixed explosives. Central European Journal of Energetic Materials 11 (2):199–218.
  • Cooper, P. W. 1996. Explosives engineering. New York: VCH Publications.
  • Cooper, P. W., and S. R. Kurowski. 1996. Introduction to the technology of explosives. New York: John Wiley & Sons, Inc.
  • Dickson, P. M., B. W. Asay, B. F. Henson, C. S. Fugard, and J. Wong. 2000. Measurement of phase change and thermal decomposition kinetics using the Los Alamos radial cookoff test. AIP Conference Proceedings 505:837–40. doi:10.1063/1.1303599.
  • Hension, B. F., L. Smilowitz, B. W. Asay, and P. M. Dickson. 2002. The β–δ phase transition in the energetic nitramine octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine: Thermodynamics. The Journal of Chemistry Physics 117 (8):3780–88. doi:10.1063/1.1495399.
  • Hension, B. F., L. Smilowitz, J. J. Romero, and B. W. Asay. 2010. Modeling thermal ignition and the initial conditions for internal burning in PBX 9501. AIP Conference Proceedings 1195 (1):257–62. doi:10.1063/1.3295118.
  • Hobbs, M. L., and M. J. Kaneshige. 2014. Ignition experiments and models of a plastic bonded explosive (PBX 9502). The Journal of Chemical Physics 140 (12):124203. doi:10.1063/1.4869351.
  • Maienschein, J. L., and J. B. Chandler. 1998. Burn rates of pristine and degraded explosives at elevated temperatures and pressures. Proceedings of 11th International Detonation Symposium, Aug 31-Sep 4, Snowmass, CO.
  • Maienschein, J. L., J. F. Wardell, R. K. Weese, B. J. Cunningham, and T. D. Tran. 2002. Understanding and predicting the thermal explosion violence of HMX-based and RDX-based explosives-experimental measurements of material properties and reaction violence. Proceedings of 12th International Conference Symposium, Aug 11-16, San Diego, CA.
  • McGuire, R. R., and C. M. Tarver. 1981. Chemical decomposition models for the thermal explosion of confined HMX, TATB, RDX, and TNT explosives. Proceedings of 7th International Symposium on Detonation, Jun 16-19, Annapolis, MD.
  • Nichols, A. L., III, and K. W. Westerberg. 1993. Modification of a thermal transport code to include chemistry with thermally controlled kinetics. Numerical Heat Transfer, Part B Fundamentals 24 (4):489–509. doi:10.1080/10407799308955905.
  • Tarver, C. M. 2010. Effects of exothermic binders on times to explosion of HMX-based plastic bonded explosives. Proceedings of 14th International Detonation Symposium, Apr 11-16, Coeur d’Alene, Idaho.
  • Tarver, C. M., and J. G. Koerner. 2007. Effects of endothermic binders on times to explosion of HMX- and TATB-based plastic bonded explosives. Journal of Energetic Materials 26 (1):1–28. doi:10.1080/07370650701719170.
  • Tarver, C. M., R. R. McGuire, E. L. Lee, E. W. Wrenn, and K. R. Brein. 1979. The thermal decomposition of explosives with full containment in one-dimensional geometries. 17th Symposium (International) on Combustion, Aug 20-25, Pittsburgh, PA. doi:10.1016/S0082-0784(79)80132-0
  • Tarver, C. M., and T. D. Tran. 2004. Thermal decomposition models for HMX-based plastic bonded explosives. Combustion and Flame 137:50–62. doi:10.1016/j.combustflame.2004.01.002.
  • Tran, T. D., L. R. Simpson, J. Maienschein, and C. Tarver. 2001. Thermal decomposition of trinitrotoluene (TNT) with a new one-dimensional time to explosion (ODTX) apparatus. 32nd International Annual Conference of Institute of Chemistry Technology and Detonation, July 3-6, Karlsruhe, Germany.
  • Wardell, J. F., and J. L. Maienschein. 2002. The scaled thermal explosion experiment. Proceedings of 12th International Detonation Symposium, Aug 11-16, San Diego, CA.
  • Wemhoff, A. P., A. K. Burnham, and A. L. Nichols III. 2007. Application of global kinetic models to HMX β-δ transition and Cookoff processes. Journal of Physical Chemistry A 111:1575–84. doi:10.1021/jp066168+.
  • Williams, M. R., and M. Matei. 2006. The decomposition of some RDX and HMX based materials in the one dimensional time to explosion apparatus. Part. 1. Time to explosion and apparent activation energy. Propellants, Explosives, Pyrotechnics 31 (6):435–41. doi:10.1002/prep.200600058.
  • Williams, M. R., and M. Matei. 2007. The decomposition of some rdx and hmx based materials in the one dimensional time to explosion apparatus. Part. 2. Estimating the violence of the cook-off event. Propellants, Explosives, Pyrotechnics 32 (1):7–15. doi:10.1002/prep.200700001.
  • Xiang, M., Y. Huang, G. Rao, and J. H. Peng. 2013. Cook-off test and numerical simulation for composite charge at different heating rates. Explosion and Shock Waves 33 (4):394–400.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.