Research Progress on Gun Propellant and Charge Combustion Residue

被引:0
|
作者
He C.-H. [1 ]
Wang Q.-L. [1 ]
Liu S.-W. [1 ]
Wei L. [1 ]
Wang F. [1 ]
Han B. [1 ]
机构
[1] Xi'an Modern Chemistry Research Institute, Xi'an
关键词
Barrel weapon; Charge; Combustion residue; Gun propellant; Military chemistry and pyrotechnic technology;
D O I
10.14077/j.issn.1007-7812.2017.02.002
中图分类号
学科分类号
摘要
Aiming at the request of eliminating or reducing the combustion residue in the barrel weapon firing, the research of gun propellant and charge combustion residue was summarized and reviewed. According to the existence position of combustion residue in the barrel weapon and shooting enviroment, the combustion residue can be divided into in-bore residue and out-bore residue. Characteristics, hazards, collection and analysis technology and suppression technique of the combustion residue were analyzed. Pointing out that the application of new materials in gun propellant and charge with low combustion residue, the evaluation method study of the combustion residue produced in the live firing process and the integrated optimization of suppression technique are the key direction of the further research in the combustion residue of gun propellant and charge, with 72 references. © 2017, Editorial Board of Journal of Explosives & Propellants. All right reserved.
引用
收藏
页码:10 / 18
页数:8
相关论文
共 65 条
  • [1] Wang Z.-S., He W.-D., Xu F.-M., Principle and Technique for Gun Propellant Charge Design, (2014)
  • [2] Wang Q.-L., Development of foreign gun propellants, Chinese Journal of Explosives & Propellants (Huozhayao Xuebao), 4, pp. 54-58, (1998)
  • [3] Ding X.-B., Construction light weapons research on several issues, Light Weapons, 8, pp. 17-18, (1998)
  • [4] Xiao Z.-L., The analysis about developed strategy of propellant and explosive in the circunstances of weapon informationization, Chinese Journal of Explosives & Propellants (Huozhayao Xuebao), 30, 1, pp. 1-3, (2007)
  • [5] Wu B., Chen G., Xia W., Heat transfer in a 155 mm compound gun barrel with full length integral midwall cooling channels, Applied Thermal Engineering, 28, 8-9, pp. 881-888, (2008)
  • [6] Sinditskii V.P., Egorshev V.Y., Serushkin V.V., Et al., Combustion of energetic materials governed by reactions in the condensed phase, International Journal of Energetic Materials and Chemical Propulsion, 9, 2, pp. 147-192, (2010)
  • [7] Marshakov V.N., Istratov A.G., Kolesnikov S.V.L., Et al., Extinction of a propellant upon contact with a wall or substrate, Russian Journal of Physical Chemistry B, 2, 3, pp. 470-475, (2008)
  • [8] Wang J., Wight C.A., Use of condensed-phase reaction models in combustion simulation of energetic materials, Journal of Propulsion and Power, 24, 2, pp. 175-183, (2008)
  • [9] Jenkins T.F., Ampleman G., Thiboutot S., Et al., Characterization and fate of gun and rocket propellant residues on testing and training ranges, ADA491994, (2005)
  • [10] Manning T.G., Thompson D., Ellis M., Et al., Environmentally friendly 'green 'propellant for the medium caliber training grounds, ADA481741, (2008)