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论VLW状态方程

DOI: 10.11858/gywlxb.2003.04.002, PP. 247-254

Keywords: 状态方程,爆轰,维里系数

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Abstract:

论述了VLW状态方程中爆轰产物分子势参数的确定;根据不同类型炸药爆轰性能参数计算结果对炸药爆轰产物碳在CJ态的相进行了分析讨论,认为不同的炸药,产物碳有石墨和金刚石两种相存在;将VLW状态方程和BKW状态方程进行了比较分析,指出了BKW状态方程与VLW状态方程的区别及其产生的原因,并给出了VLW状态方程计算含能材料(包括高能炸药、燃料空气炸药、民用炸药)的爆轰性能参数计算结果。结果表明,计算值与实验值符合较好。

References

[1]  薛再清. 爆轰产物状态方程及含铝炸药的爆炸过程 [D]. 北京: 北京理工大学, 1998.
[2]  Zhang G R. Problems about Synthesis Ultra Dispersed Diamond by Detonation [J]. Explosion and Shock Waves, 1998, 18(2): 118-122. (in Chinese)
[3]  章冠人. 炸药爆炸产生超细金刚石微粉问题 [J]. 爆炸与冲击, 1998, 18(2): 118-122.
[4]  Yamada K, Sawaoka A B. Very Small Spherical Crystals of Dispersed Diamond Found in a Detonation Products of Explosive and Their Formation Mechanism [J]. Carbon, 1994, 32(4): 665-673.
[5]  Wu X. Detonation Performance of Condensed Explosives Computed with the VLW EOS [A]. Proc 8th Symposium (Int) on Detonation [C]. Albuquerque, 1985. 796-804.
[6]  Wu X. Detonation Parameters of New Powerful Explosives Compounds Predicted with a Revised VLW EOS [A]. Proc 9th Symposium(Int) on Detonation [C]. Portland, 1989. 190-197.
[7]  Long X P, Wu X, Jiang X H. Detonation Parameters of Hihg Energy Density Explosives Predicted with a New Revised VLW EOS [A]. Europyrc 95, the 6th Congress (Int) on Pyrotechnics, France, 1995. 221-229.
[8]  Wu X. The Principle to Assess the Power of Energetic Materials [J]. Energetic Materials, 1993, 1(1): 21-26. (in Chinese)
[9]  吴雄. 含能材料能量评价准则的讨论 [J]. 含能材料, 1993, 1(1): 21-26.
[10]  Wu X. The Application of VLW EOS in Calculating the Detonation Performance of Domestic Explosives [A]. Proceedings of Symposium on Blasting [C]. 1991. 3-7. (in Chinese)
[11]  吴雄. VLW状态方程在民用炸药计算中的应用 [A]. 中国民爆学术会议论文集 [C]. 1991. 3-7.
[12]  Zhang S J. Calculation the Detonation Performance of Industrial Explosives [J]. Magazine of Blasting Equipment, 1997, 26(2): 6-8. (in Chinese)
[13]  张双计. 工业炸药爆轰性能的计算 [J]. 爆破器材杂志, 1997, 26(2): 6-8.
[14]  He B. Theory & Practice of Energetic Materials(Vol. Ⅱ) [M]. The Publishing House of Ordance Industry, 1997. 41-45.
[15]  Gui D Y, Liu J P, Feng S S. Research of Power Performance of Several Typical Fuel-Air Explosives [J]. Energetic Materials, 2002, 3(10): 121-124. (in Chinese)
[16]  贵大勇, 刘吉平, 冯顺山. 几种典型燃料空气炸药威力性能研究 [J]. 含能材料, 2002, 3(10): 121-124.
[17]  Long X P. The VLW Equation of States for Detonation Products and the Detonation Characteristics of Nanometer Aluminized Explosives [D]. Beijing: Beijing Institute of Technology, 1999. (in Chinese)
[18]  龙新平. VLW爆轰产物状态方程及纳米级铝粉含铝炸药爆轰特性研究 [D]. 北京: 北京理工大学, 1999.
[19]  Hirschfelder J O, Curtiss C F, Bird R B. Molecular Theory of Gases and Liquids [M]. New York: Wiley, 1964. 157.
[20]  Wu X. A New Equation of State for Detonation Products [J]. Chinese Journal of High Pressure Physics, 1991, 5(2): 98-103. (in Chinese)
[21]  吴雄. 新型爆轰产物物态方程 [J]. 高压物理学报, 1991, 5(2): 98-103.
[22]  Liu F S, Chen X M, Chen P S, et al. Equation of State of Liquid CO2 under High Temperature and High Densities [J]. Chinese Journal of High Pressure Physics, 1998, 12(1): 28-33. (in Chinese)
[23]  刘福生, 陈先猛, 陈攀森, 等. 液态CO2高温高密度状态方程研究 [J]. 高压物理学报, 1998, 12(1): 28-33.
[24]  Mader C L. Numerical Modeling of Detonation [M]. New York: Berkeley, 1979.
[25]  Mader C L. Numerical Modeling of Explosives and Propellants [M]. New York: CRC Press, 1998.
[26]  Berman R, Simon F. Diamond Graphite Equilibrium Line in Their Phase Diagram [J]. Z Electrochem, 1955, 59: 333.
[27]  Gokien N A, Chang E T, Poston T M. Determination of Graphite/Liquid/Vapor Triple Point by Laser Heating [J]. High Temperature Science, 1976, 8: 89-91.
[28]  Togaya M, Sugigama S, Mizubara E. Melting Line of Graphite [A]. Schmidt S C. High Pressure Science and Technology [C]. New York: AIP Press, 1993.
[29]  Nagaev E L. Temperature Effect on Ultrafine Diamond Growth in Detonation Wave Front [J]. Usp Fiz Nauk, 1992, 162(9): 124.
[30]  Xue Z Q. The Equation of State of Detonation Products and the Exploding Process of Aluminized Explosive [D]. Beijing: Beijing Institute of Technology, 1998. (in Chinese)
[31]  Titov V M, Anisichkin V F, Malkov I Y. Synthesis of Ultrafine Diamond in Detonation Waves [A]. Proceedings of 9th Symposium on Detonation [C]. Arlington: Office of The Chief of Naval Research, 1989. 407-416.
[32]  Simpson R L, Urtiew P A. CL-20 Performance Exceeds That of HMX and Its Sensitivity Is Moderate [J]. Propell Explos Pyrot, 1997, 22: 249-255.
[33]  Sedgwick R T. AD-A159 177/5HDM, 1979.
[34]  Lu C X. The Actuality and Prospect of the Industrial Explosives in China [J]. Magazine of Blasting Equipment, 1995, 24(6): 5-6. (in Chinese)
[35]  吕春绪. 我国工业炸药的现状与发展 [J]. 爆破器材杂志, 1995, 24(6): 5-6.

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