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坦克炮弹药共用底火装定能量双向隔离系统设计方法 被引量:4

Design Method of Energy Isolation System for Fuze Setting via Primer
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摘要 针对坦克炮、自行火炮信息化弹药膛内实时装定问题,采用共用底火的装定系统对入膛后的弹药进行实时装定。为了解决共用底火装定系统中存在击发能量流与装定能量流对装定回路和击发回路产生影响的问题,建立了能量流双向隔离系统边界条件和隔离系统函数,并通过对函数的参数取值设计了针对特定击发能量类型的隔离系统。试验结果表明,采用该方法得到的隔离系统能够有效地隔离装定能量流和击发能量流,且其对击发能量流的损耗很小。 In-bore real-time fuze setting via primer is needed to increase the ammunition first round hitting probability of current large or middle caliber gun. The energy isolation system is designed for isola- ting the setting energy from the primer firing circuit and the firing energy from the setting circuit by estab- lishing the boundary conditions of the isolation system and giving a set of functions that meets the bounda- ry conditions. An energy isolation system for a specific kind of firing energy is designed by setting the pa- rameter values of the functions. The isolation system has been experimentally proved to successfully iso- late the firing energy and the setting energy. The firing energy loss on isolation system is very small.
作者 廖翔 李豪杰 张合 LIAO Xiang LI Hao-jie ZHANG He(School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China)
出处 《兵工学报》 EI CAS CSCD 北大核心 2017年第4期673-678,共6页 Acta Armamentarii
基金 国家自然科学基金项目(61403201) 中央高校基本科研业务费专项基金项目(30915118824)
关键词 兵器科学与技术 坦克炮弹药 引信装定 底火回路 隔离系统 ordnance science and technology tank gun ammunition fuze setting primer circuit isola-tion system
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  • 1冯琳,江雷.超疏水性纳米界面材料的制备与研究(英文)[J].中国科学院研究生院学报,2005,22(1):106-109. 被引量:21
  • 2赵俊利,何行.自行火炮多功能机电击发机构研究[J].中北大学学报(自然科学版),2005,26(5):322-324. 被引量:3
  • 3丁立波.小口径空炸引信炸点控制技术研究[D].南京:南京理工大学,2004.
  • 4Andre Kurs, Aristeidis Karalis, Robert Moffatt, et al. Wireless power transfer via strongly coupled magnetic resonances[ J]. Sci- ence, 2007, 317:83-86.
  • 5Chunlai Yu, Rengui Lu, Yinhua Mao, et al. Research on the mod- el of magnetic-resonance based wireless energy transfer system[ C ] //Vehicle Power and Propulsion Conference. US: Dearborn, MI, 2009:414-418.
  • 6Hisayoshi Suglyama. Optimal designs for wireless resonant energy link based on nonradiative magnetic field[ C ]//The 13th IEEE In- ternational Symposium on Consumer Electronics. Japan: Miel- parque-Kyoto, Kyoto, 2009 : 428 - 429.
  • 7Aristeidis Karalis, Joannopoulos J D, Marin Soljacic. Efficient wireless non-radiative mid-range energy transfer[J ]. Annals of Physics, 2008, 323:34-48.
  • 8Rafif E Hamam, Aristeidis Karalis, Joannopoulos J D, et al. Effi- cient weakly-radiative wireless energy transfer: an EIT-like ap-proaeh [J]. Annals of Physics, 2009, 324:1783-1795.
  • 9Zhang Fei, Liu Xiaoyu, Steven A Hackworth, et al. In Vitro and In Vivo studies on wireless powering of medical sensors and im- plantable devices [ C]//IEEE/NIH Life Science Systems and Ap- plications Workshop (Formerly known as LSSA and LISA). US: Bethesda, MD ,2009:84 - 87.
  • 10Takehiro Imura, Hiroyuki Okabe, Yoichi Hori. Basic experimen- tal study on helical antennas of wireless power transfer for electric vehicles by using magnetic resonant couplings [ C ] // Vehicle Power and Propulsion Conference. US: Dearborn, MI, 2009: 936 - 940.

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