高氮含能化合物TKX-50 侵彻安全性试验研究
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Experiment Research on Security of TKX-50 Energetic Compound with High Content Nitrogen During Penetration
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    摘要:

    针对炸药装药侵彻安全性问题,分别选用高氮含能化合物TKX-50 和HMX 为猛炸药,设计相同金属含 量和粘结剂体系的炸药配方,进行炸药装药侵彻钢筋混凝土试验。研究结果表明:在相同试验条件下,TKX-50 装 药响应剧烈程度低于HMX 装药,推断其XDT 成长过程较HMX 长。TKX-50 以五元杂环为平面骨架,引入C-N、 N-N、C=N 和N=N 键,脱离爆炸性基团(N-NO2,C-NO2,O-NO2)限制,形成大Π 键和氢键,是XDT 过程增长的 原因。

    Abstract:

    Aiming at the safety problem of explosive charge penetration, select high content Nitrogen energetic compound TKX-50 and HMX as the high explosive, design the explosive formulations with the same metal content and adhesive system, and carry out explosive penetrating reinforced concrete test. The research results show that the under environment conditions, TKX-50 charging response is lower than HMX. Its XDT process is longer than HMX. The high explosive containing TKX-50 has longer process of XDT (unknown mechanism to detonation transition) than HMX for the molecule structure of TKX-50. The reason for XDT process improvement is that TKX-50 takes five-member heterocycle as surface bone, introduces C-N, N-N, C=N and N=N key, breaks through the explosive (N-NO2, C-NO2, O-NO2) limitation and generate Π bond and hydrogen bond.

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彭泓铮.高氮含能化合物TKX-50 侵彻安全性试验研究[J].,2018,37(12).

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历史
  • 收稿日期:2018-09-14
  • 最后修改日期:2018-09-25
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  • 在线发布日期: 2019-03-22
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