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作 者:梁安定[1] 黄静[2] 何勇[1] 孙兴昀[1] LIANG An-ding;HUANG Jing;HE Yong;SUN Xing-yun(Xi' an Modern Chemistry Research Institute,Shaanxi Xi'an 710065,China;Beijing Institute of Electronic System Engineering,Beijing 100854,China)
机构地区:[1]西安近代化学研究所,陕西西安710065 [2]北京电子工程总体研究所,北京100854
出 处:《现代防御技术》2018年第4期14-20,共7页Modern Defence Technology
摘 要:针对杀伤增强装置技术需求,提出了采用炸药作为杀伤增强装置破片驱动能源的方案。对以炸药为驱动能源的大质量破片低速抛撒结构进行了理论分析,并推导出了破片速度的理论计算公式。设计了杀伤增强装置的破片抛撒环方案,并进行了5组实验,实验测得的破片速度与理论计算结果相比,相对误差不大于9.1%。分析后认为炸药加载方式能够很好地实现杀伤增强装置的功能,相比火药方式反应更为迅速,加载结构更为简洁,可行性好,也易于实现。The scheme of lethality enhancement vehicle with explosive as driving energy is proposed to meet the technology demand of lethality enhancement vehicle. The dispersal structure of low velocity mass fragment with explosive as driving energy is analyzed,and the theoretical formula of fragment velocity is deduced. The scheme of the vehicle fragment dispersal ring is designed and five groups of experiments are conducted. The experimental measurement values are compared with the theoretical calculation results of the fragment velocity,and the relative error is not more than 9. 1%. It is concluded that the lethality enhancement vehicle can be realized by the driving structure with explosive,the function is more responsive compared to the gunpowder driving way,and the dispersal structure is more concise,feasible and easy to realize.
关 键 词:弹药工程 杀伤增强装置 炸药驱动 破片速度 反导 抛撒
分 类 号:TQ560[化学工程—炸药化工] TP391.9[自动化与计算机技术—计算机应用技术]
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