参考文献/References:
[1]赵小锋.国外水下液体化学推进剂的研究现状[J].火炸药学报,2009,32(3):62-65.
ZHAO X F. Current situation of underwater chemical propellant[J].Chinese Journal of Explosives & Propellants, 2009,32(3):62-65.
[2]黄继庆,鲍世国,刘汉林,等. 一种新型双组元卫星推进剂的研究[J].火箭推进,2013,39(3):87-92.
HUANG J Q,BAO S G,LIU H L, et al. Research on a novel bipropellant for spacecrafts[J]. Journal of Rocket Propulsion, 2013,39(3):87-92.
[3]贺芳,方涛,李亚裕,等.新型绿色液体推进剂研究进展[J].火炸药学报,2006,29(4):54-57.
HE F, FANG T, LI Y Y, et al. Development of green liquid propellants[J]. Chinese Journal of Explosives & Propellants, 2006,29(4):54-57.
[4]毛金明.如何改进现行鱼雷验收方法[J].鱼雷技术,2003,11(4):6-8.
MAO J M. How to improve inspection of current torpedo[J]. Torpedo Technology, 2003,11(4):6-8.
[5]华钟祥.无人水下航行器与操雷[J].舰船科学技术,2004,26(6):64-66.
HUA Z X. UUV and torped[J]. Ship Science and Technology,2004,26(6):64-66.
[6]张海林,周林,邓铁柱.武器装备状态维修决策问题研究[J].现代防御技术,2010,38(2):9-12.
ZHANG H L, ZHOU L, DENG T Z. CBM decisions of military equipment[J]. Moden Defence Technology, 2010,38(2): 9-12.
[7]马亮,翟坚帅,叶心领.基于状态的维修在鱼雷技术保障中的应用[J]. 鱼雷技术,2015,23(3):232-236.
MA L,ZHAI J S,YE X L. Application of condition based maintenance to technical support of torpedo[J]. Torpedo Technology, 2015,23(3):232-236.
[8]骆传骊,吴文.鱼雷可靠性浅析[J]. 舰船科学与技术,1990(3):54-63.
[9]刘海光,李伟,王桂芹.适应远海训练的操雷技术需求及可行性方法[J].鱼雷技术,2016,24(4):294-298.
LIU H G, LI W, WANG G Q. Technical requirements and feasible implementation method for exercise torpedo training in the open sea[J].Torpedo Technology,2016,24(4):294-298.[10]张振山,程广涛,梁伟阁.潜艇自航发射鱼雷的若干问题[J].海军工程大学学报, 2012, 24(4): 58-62.
ZHANG Z S, CHENG G T, LIANG W G. Some problems about selfpropelled torpedo launching in submarine[J].Journal of Naval University of Engineering,2012, 24(4):58-62.
[11]陈兵,张鹏峰,郭昆.鱼雷热动力技术的发展综述[J].推进技术,2011,32(3):447-450.
CHEN B, ZHANG P F,GUO K. Review of the development in torpedo thermal power technologies[J]. Journal of Propulsion Technology, 2011,32(3):447-450.
[12]BOSIERS J T J,KLEIMANN A C M.Charge coupled device sued in an image sensor and amethod of making the charge coupled device:US7071502[P].2006-07-04.
[13]杜朝平.游向新世纪的鱼雷[J].舰载武器, 2003(4):63-67.
[14]李伟,郁俊江,邓鹏.基于近红外光谱技术的鱼雷燃料组分含量分析系统[J].鱼雷技术,2012,20(3):206-209,219.
LI W, YU J J, DENG P. Detection system of component content for torpedo fuel based on NIR[J].Torpedo Technology, 2012,20(3):206-209,219.
[15]CHAN S H,TAN C C,ZHAO Y G, et al. Li-SF6 combustion in stored chemical energy propulsion systems[J]. Symposium (Intemational) on Combustion, 1991,23(1):1139-1146.
[16]GOTTFREDSON R K. Stored chemical energy propulsion system for torpedoes:AIAA-92-3135[R].Nashville TN:The American Institute of Aeronautics and Astronautics,1992.
[17]KIELY D H. Review of underwater thermal propulsion:AIAA-94-2837[R]. New York:AIAA, 1994.
[18]WALL H G,DODD D E,VINEGAR A,et al.Toxic hazards research unit annual report:ADA 224846[R]. Springfield: NTIS, 1990.
[19]HUGHES T G, SMITH R B,KIELY D H. Stored chemical energy propulsion system for underwater applications[J]. Journal of Energy, 1983,7(2):128-133.
[20]毕晶,张小红,王中合,等.喷雾法降低PGDN和DBS混合溶液中的水含量[J].含能材料,2012,20(3):310-313.
BI J,ZHANG X H,WANG Z H,et al.Reducing water content in PGDN/DBS solution by spraying method[J].Chinese Journal of Energetic Materials,2012,20(3):310-313.