参考文献/References:
[1] 李海涛,钱勖,庞爱民,等. 低易损性推进剂研究进展及发展趋势[J]. 兵器装备工程学报,2022,43(6):137-144.
LI Haitai,QIAN Xu,PANG Aimin,et al. Research progresses and development trend of low vulnerability propellants[J]. Journal of Ordnance Equipment Engineering,2022,43(6):19-23.(in Chinese)
[2]金贺龙,王浩. 斜切喷管火箭发动机燃气射流流场特性研究[J]. 弹道学报,2021,33(3):63-69.
JIN Helong,WANG Hao. Study on the flow characteristics of gas jet for a solid rocket motor with scarfed nozzle[J]. Journal of Ballistics,2021,33(3):63-69.(in Chinese)
[3]邓海,李刚,郭洪卫,等. 不敏感弹药技术的发展现状与趋势[J]. 兵器装备工程学报,2022,43(2):137-144.
DENG Hai,LI Gang,GUO Hongwei,et al. Development status and trend of insensitive ammunition technology[J]. Journal of Ordnance Equipment Engineering,2022,43(2):137-144.(in Chinese)
[4]SUMRALL T S. Large scale fast cook-off sensitivity results of a melt castable general purpose insensitive high explosive[J]. Propellants,Explosives,Pyrotechnics. 1999,24(2):61-64.
[5]王洪伟,智小琦,刘学柱,等. 限定条件下聚黑炸药烤燃试验及热起爆临界温度的数值计算[J]. 火炸药学报,2016,39(1):70-74.
WANG Hongwei,ZHI Xiaoqi,LIU Xuezhu,et al. Cook-off experiments and numerical calculation on thermal initiation critical temperature of JH explosive under defined condition[J]. Chinese Journal of Explosives & Propellants,2016,39(1):70-74.(in Chinese)
[6]陈朗,马欣,黄毅民,等. 炸药多点测温烤燃实验和数值模拟[J]. 兵工学报,2011,32(10):1230-1236.
CHEN Lang,MA Xin,HUANG Yimin,et al. Multi-point temperature measuring cook-off test and numerical simulation of explosive[J]. Acta Armamentarii,2011,32(10):1230-1236.(in Chinese)
[7]张蕊,冯长根,姚朴,等. 钝感起爆药BNCP的热安全性[J]. 火炸药学报,2003,26(2):66-69.
ZHANG Rui,FENG Changgen,YAO Pu,et al. The thermal safety of a new kind of initiationg explosives BNCP[J]. Chinese Journal of Explosives & Propellants,2003,26(2):66-69.(in Chinese)
[8]赵孝彬,李军,程立国,等. 固体推进剂慢速烤燃特性的影响因素研究[J]. 含能材料,2011,19(6):669-672.
ZHAO Xiaobin,LI Jun,CHENG Liguo,et al. Influence factors of slow cook-off characteristic for solid propellant[J]. Chinese Journal of Energetic Materials,2011,19(6):669-672.(in Chinese)
[9]KIM K,KIM C,YOH J. Test-based thermal decomposition simulation of AP/HTPB and AP/HTPE propellants[J]. Journal of Propulsion and Power,2011,27(4):822-827.
[10]HO S Y,Thermomechanical properties of rocket propellants and correlation with cookoff behavior[J]. Propellants,Explosives,Pyrotechnics,1995,20(4):206-214.
[11]金钰晨,魏志军,王小宁. AP/HTPB 复合推进剂低压燃烧特性数值研究[J]. 推进技术,2022,43(8):210319.
JIN Yuchen,WEI Zhijun,WANG Xiaoning. Numerical study on combustion characteristics of AP/HTPB composite propellant at low pressure[J]. Journal of Propulsion Technology,2022,43(8):210319.(in Chinese)
[12]夏敏,罗运军,毛科铸. HTPE粘合剂的热分解机理及其对AP热分解特性的影响研究[C]//2014年(第六届)含能材料与钝感弹药技术学术研讨会论文集. 成都:中国兵工学会,2014:325-328.
XIA Min,LUO Yunjun,MAO Kezhu. The mechanism of thermal decomposition of HTPE binder and its effect on the thermal decomposition characteristics of AP[C]//6th Symposium on Energetic Materials and Insensitive Munitions. Chengdu:COS,2014:325-328.(in Chinese)
[13]叶青,余永刚. 星型装药固体火箭发动机烤燃特性[J]. 兵工学报,2020,41(10):1970-1978.
YE Qing,YU Yonggang. Cook-off characteristics of solid rocket motor with star-configuration propellant charge[J]. Acta Armamentarii,2020,41(10):1970-1978.(in Chinese)
[14]杨后文. 复合固体推进剂烤燃特性的实验研究与数值模拟[D]. 南京:南京理工大学,2016.
YANG Houwen. Experimental study and numerical simulation of cook-off characteristic for composite solid propellant[D]. Nanjing:Nanjing University of Science and Technology,2016.(in Chinese)
[15]叶青,余永刚. 考虑自然对流的某固体火箭发动机慢速烤燃特性数值分析[J]. 爆炸与冲击,2019,39(6):3-12.
YE Qing,YU Yonggang. Numerical analysis of slow cook-off characteristics for solid rocket motor with natural convecton[J]. Explosion and Shock Waves,2019,39(6):3-12.(in Chinese)