参考文献/References:
[1]王昕. 美国不敏感混合炸药的发展现状[J]. 火炸药学报, 2007, 30(2): 78-80.
WANG X. Current situation of study on insensitive composite explosives in USA[J].Chinese Journal of Explosives & Propellants,2007,30(2):78-80.
[2]TEAGUE C A, WILSON A, ALEXANDER B, et al. Next generation IM mortar fill-optimized PAX-33 development and characterization[C]// Insensitive Munitions and Energetic Materials Technology Symposium. Miami, 2007:15-18.
[3]PELLETIER P, LAROCHE I, LAVIGNE D, et al. Processing studies of DNAN-based melt-pour explosives formulations[C]// Insensitive Munitions and Energetic Materials Technology Symposium.Tucson,2009:11-14.
[4]张光全,董海山. 2,4-二硝基苯甲醚为基熔铸炸药的研究进展[J]. 含能材料,2010,18(5):604-609.
ZHANG G Q,DONG H S. Review on melt-castable explosives based on 2,4-dinitroanisole[J].Chinese Journal of Energetic Materials ,2010,18(5):604-609.
[5]王亲会.熔铸混合炸药用载体炸药评述[J]. 火炸药学报,2011,34(5):25-28,42.
WANG Q H. Overview of carrier explosive formelt-cast composite explosive[J]. Chinese Journal of Explosives & Propellants,2011,34(5):25-28,42.
[6]王红星, 王晓峰, 罗一鸣, 等. DNAN炸药的烤燃实验[J]. 含能材料, 2009, 17(2): 183-186.
WANG H X,WANG X F,LUO Y M,et a1.Cook-off test of DNAN explosive[J].Chinese Journal of Energetic Materials,2009,17(2):183-186.
[7]陈朗, 李贝贝, 马欣. DNAN炸药烤特性[J]. 含能材料, 2016, 24(1):27-32.
CHEN L,LI B B,MA X. Research on the cook-off characteristics of DNAN explosive[J].Chinese Journal of Energetic Materials,2016, 24(1):27-32.
[8]刘子德, 智小琦. DNAN熔铸混合炸药的慢烤试验与模拟[J].兵器装备工程学报, 2018, 39(12):178-181.
LIU Z D, ZHI X Q .Slow cook-off test and simulation of DNAN based casting mixed explosive[J].Journal of Ordnance Equipment Engineering, 2018, 39(12):178-181.
[9]刘子德, 智小琦,周捷,等. 药量和升温速率对DNAN基熔铸炸药烤燃特性的影响 [J].爆炸与冲击, 2019, 39(1):1-5.
LIU Z D, ZHI X Q, ZHOU J, et al. Influence of explosive mass and heating rate on cook-off response characteristics of DNAN based casting explosive[J].Explosion and Shock Waves, 2019, 39(1):1-5.
[10]曾稼, 智小琦, 于永利, 等. 热刺激强度对DNAN基熔铸炸药烤燃响应特性的影响[J]. 火炸药学报, 2018, 41(2):131-136.
ZENG J, ZHI X Q, YU Y L,et al. Effect of thermal stimulation intensity on cook-off response characteristics of DNAN based castable explosive[J]. Chinese Journal of Explosives & Propellants, 2018, 41(2):131-136.
[11]赵亮, 智小琦, 高峰, 等. DNAN基熔铸混合炸药慢烤燃的尺寸效应[J]. 火炸药学报, 2018, 41(2):159-164.
ZHAO L, ZHI X Q, GAO F, et al. Study on the size effect of cook-off of DNAN based melting and casting mixed explosive[J]. Chinese Journal of Explosives & Propellants, 2018, 41(2):159-164.
[12]牛国涛,金大勇,罗一鸣,等.DNAN基熔铸炸药工艺特性[J].兵工自动化,2014,33(7):86-88.
NIU G T, JIN D Y, LUO Y M, et al.Technical characteristics of DNAN-based melt-casting explosive[J]. Ordnance Industry Automation,2014,33(7):86-88.
[13]POLITZER P, MURRAY J S.Relationships between dissociation energies and electrostatic potentials of C—NO2 bonds: applications to impact sensitivities[J]. Journal of Molecular Structure, 1996,376(1): 419-424.
[14]MULLAY J A. A relationship between impact sensitivity and molecular electronegativity[J]. Propellants, Explosives, Pyrotechnics,1987,12(2):60-63.
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