Citation: FENG Jin-Ling, ZHANG Jian-Guo, ZHANG Tong-Lai, LI Zhi-Min, YANG Li, WANG Shao-Zong. Morphology Control and Its Influence on the DecompositionBehavior and Sensitivity of KDNBF[J]. Acta Physico-Chimica Sinica, ;2010, 26(10): 2613-2618. doi: 10.3866/PKU.WHXB20100950 shu

Morphology Control and Its Influence on the DecompositionBehavior and Sensitivity of KDNBF

  • Received Date: 12 March 2010
    Available Online: 27 September 2010

    Fund Project: 国家自然科学基金(20471008) (20471008)教育部新世纪优秀人才支持计划(NCET-09-0051)资助项目 (NCET-09-0051)

  • The potassium salt of 7-hydroxy-4,6-dinitro-5,7-dihydrobenzofuroxanide (KDNBF) was prepared by a reaction of the sodium salt of DNBF with potassium sulfate in aqueous solution. Samples of KDNBF with different morphologies were obtained by adding various surfactants. The effect of a single surfactant on the sample morphology was determined withpowder X-ray diffraction (XRD) data. The thermal decomposition behaviors of KDNBF with different shapes were studied using differential scanning calorimetry(DSC) and thermogravimetry(TG) analyses. The kinetic parameters of the exothermic processes were studied by applying the Kissinger 's and Ozawa-Doyle 's methods. The results show that the spherical sample has a lower decomposition temperature and higher reaction activation energy than the other forms of the sample. Furthermore, impact sensitivity, flame sensitivity, and friction sensitivity tests indicated that the spherical KDNBF sample has stronger friction and impact sensitivities and weaker flame sensitivity.

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    1. [1]

      1. Michael, S.; Magdy, B.; John, F.; Michael, W.; William, S.; Richard, G. Proceedings of the international pyrotechnics seminar. Salisbury, Australia: Defence Science & Technology Organisation, Pyrotechnics Group, 2004: 729-734

    2. [2]

      2. Gil'manov, R. Z.; Falyakhov, I. F.; Sudakova, A. I.; Malikov, A. A.; Kislin, M. A.; Kilina, A. M.; Khusainov, R. M. Impact detonation compositions as primers for use in detonating caps for small arms ammunition cartridges: Russian, 2317966[P]. 2008-02- 07

    3. [3]

      3. Jones, D. E. G.; Lightfoot, P. D.; Fouchard, R. C.; Kwok, Q.; Turcotte, A. M.; Ridley, W. Thermochim. Acta, 2002, 384: 57

    4. [4]

      4. Jones, D. E. G.; Feng, H. T.; Fouchard, R. C. Proceedings of the international pyrotechnics seminar. Chica : IIT Research Institute, 1999: 195-202

    5. [5]

      5. Shinde, P. D.; Mehilal; Salunke, R. B.; Agrawal, J. Propellants Explos. Pyrotech., 2003, 28: 77

    6. [6]

      6. Löbbecke, S.; Keicher, K.; Krause, H.; Pfeil, A. Solid State Ion., 1997, 101: 945

    7. [7]

      7. Jones, D. E. G.; Feng, H. T.; Fouchard, R. C. J. Therm. Anal. Calorim., 2000, 60: 917

    8. [8]

      8. Gaughran, R. J.; Picard, J. P.; Kaufman, J. V. R. J. Am. Chem. Soc., 1954, 76: 2233

    9. [9]

      9. Norris, W. P.; Osmundsen, L. J. Org. Chem., 1965, 30: 2407

    10. [10]

      10. Piechowics, T. Potassiumof 4,6-dinitrobenzofuroxan-a useful initiating explosive: France, 1579799[P], 1968-04-05

    11. [11]

      11. Bjerke, R. K.; Ward, J. P.; Ells, D. O.; Kees, K. P. Improved primer composition: US, 4963201[P], 1990-10-16

    12. [12]

      12. Duguet, J. R. Priming charges with annular percussion and process for its manufacture: US, 5353707[P], 1994-10-11

    13. [13]

      13. Carter, G. B. Primer compositions containing dinitrobenzofuroxan compounds: US, 5538569[P], 1996-07-23

    14. [14]

      14. Rinaldi, S.; Talini, F. Printing mixture containing no toxic materials, and cartridge percussion primer employing such a mixture: US, 5672219[P], 1997-09-30

    15. [15]

      15. Fogelzang, A. E.; Korolev, V. P.; E rshev, V. Y.; Kolesov, V. I.; Pochukaev, V. D.; Baskakov, Y. M.; Tokarev, A. S.; Bibnev, N. M.; Hovanskov, V. N.; Evdokimova, I. F.; Voronin, Y. P. Pyrotechnical percussion combustion composition for small arms ammunition primers: US, 6165294[P], 2000-12-26

    16. [16]

      16. Brede, U.; Bley, U. Use of a microjet reactor for the production of initiating explosive: US, 0188874[P], 2005-02-09

    17. [17]

      17. Lur'e, B. A.; Sinditskii, V. P.; Smirnov, S. P. Fiz. reniya Vzryva, 2003, 39: 55

    18. [18]

      18. Li, Y. F.; Zhang, T. L.; Zhang, J. G. Chin. J. Energ. Mater., 2004, 12: 203 [李玉峰, 张同来, 张建国.含能材料, 2004, 12: 203]

    19. [19]

      19. Mehilal, A. K.; Sikder, P. S.; Sikder, N. J. Hazard. Mater., 2002, 90: 221

    20. [20]

      20. McGuchan, R. Improvement in primary explosive compositions and their manufacture[C]//Franklin Research Center, a division of the Franklin Institute, Proceedings of the 10th Symposiumon Explosives and Pyrotechnics, Symposiumon Explosives and Pyrotechnics, San Francisco, California, February 14-16, 1979, Philadelphia, Pa: Franklin Research Center, 1979: 1-12

    21. [21]

      21. Ren, Z. Q.; Yu, T. Y.; Xu, B. Y. Chin. J. Energ. Mater., 1995, 4: 7 [任志奇,于天义, 许碧英. 含能材料, 1995, 4: 7]

    22. [22]

      22. Coulouarn, C. Synthesis of potassiumdinitrobenzofuroxan: EP, 1627872[P], 2006

    23. [23]

      23. Li, Y. F.; Zhang, T. L.; Zhang, J. G.; Miao, Y. L. Chin. J. Explos. Propellants, 2003, 26: 53 [李玉峰,张同来,张建国, 苗艳玲.火 炸药学报, 2003, 26: 53]

    24. [24]

      24. Kissinger, H. E. Anal. Chem., 1957, 29: 1702

    25. [25]

      25. Ozawa, T. Bull. Chem. Soc. Jpn., 1965, 38: 188

    26. [26]

      26. Wang, S. Z.; Zhang, T. L.; Sun, Y. H.; Zhang, J. G. Chin. J. Energ. Mater., 2005, 13: 53 [王绍宗,张同来,孙远华, 张建国.含能材 料, 2005, 13: 53]

    27. [27]

      27. Liu, Z. T.; Lao, Y. L. Experiment of primary explosive. Beijing: Beijing Institute of Technology Publishing Company, 1995: 238-250

    28. [28]

      28. Wang, S. Z.; Zhang, T. L.; Yang, L.; Zhang, J. G.; Sun, Y. H. Propellants Explos. Pyrotech., 2007, 32: 16


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