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高能钝感炸药
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  insensitive high explosives
     The Theoretical Studies on the Structures and Properties of Molecules and Crystalline of Insensitive High Explosives
     高能钝感炸药分子和晶体的结构和性能的理论研究
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  “高能钝感炸药”译为未确定词的双语例句
     The explosive performance of DAAT calculated theoretically by VLW EOS showed that several explosive formulations based on DAAT have high-energy and insensitive performance.
     其热分解速率对压强比较敏感,且与环境压强成正比。 采用VLWEOS对DAAT的爆轰性能进行了理论计算,结果表明将DAAT与传统含能材料混合,有望制备出高能钝感炸药
短句来源
  相似匹配句对
     High Energy Deterred Propellant Using for Propulsion of Guided Missile
     高能发射药在炮射导弹中的应用
短句来源
     STUDY ON TEST METHOD FOR IMPACT SENSITIVITY OFINSENSITIVE HIOH EXPLOSIVES
     高能炸药撞击度测试方法的探讨
短句来源
     The Theoretical Studies on the Structures and Properties of Molecules and Crystalline of Insensitive High Explosives
     高能炸药分子和晶体的结构和性能的理论研究
短句来源
     DETERMINATION OF SHOCK HUGONIOT OF INSENSITIVE HIGH EXPLOSIOVE JB-9001
     高能炸药JB-9001冲击Hugoniot关系测试
短句来源
     QUANTITATIVE DETERMINATION OF POLYNITROPOLYPHENYLENE IN AN INSENSITIVE AND HIGHLY ENERGETIC BOOSTER EXPLOSIVE
     高能传爆药中多硝基聚苯撑测定方法研究
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  insensitive high explosives
However, the method fails for a number of insensitive high explosives and detonable propellants that have relatively high values of P1 and slope, S.
      
His weapon designs introduced insensitive high explosives, fire resistant plutonium pits, and other important nuclear safety elements.
      


The synthesis of high-nitrogen energetic material 3,3′-Azobis(6-amino-1,2,4,5-tetrazine) (DAAT) from 3,6-bis(3,5-dimethylpyrazol-1-yl)-1,2,4,5-tetrazine by a four-step reaction is described. The thermal property of DAAT was investigated by using DSC, PDSC and TG technique, kinetic parametes of decomposition and mechanism functions of DAAT were obtained. The results showed that DAAT is thermally stable up to 283℃ and appears an exotherm maxima at 320℃ with △H of 1974.33J/g, which is higher than that of HMX. The...

The synthesis of high-nitrogen energetic material 3,3′-Azobis(6-amino-1,2,4,5-tetrazine) (DAAT) from 3,6-bis(3,5-dimethylpyrazol-1-yl)-1,2,4,5-tetrazine by a four-step reaction is described. The thermal property of DAAT was investigated by using DSC, PDSC and TG technique, kinetic parametes of decomposition and mechanism functions of DAAT were obtained. The results showed that DAAT is thermally stable up to 283℃ and appears an exotherm maxima at 320℃ with △H of 1974.33J/g, which is higher than that of HMX. The E_a is 209.69kJ/mol and 208.77kJ/mol by the method of Kissinger and Ozawa,respectively. The explosive performance of DAAT calculated theoretically by VLW EOS showed that several explosive formulations based on DAAT have high-energy and insensitive performance.

以3,6-对(3,5-二甲基吡唑)-1,2,4,5-四嗪(BT)为起始物,经亲核取代、氧化脱氢、氨解和水解等四步反应,合成了高氮含能化合物3,3′-偶氮-(6-氨基-1,2,4,5-四嗪)(DAAT)。对DAAT的热分解性能进行了研究,由DSC、PDSC和TG-DTG技术获得了DAAT的热分解动力学参数和机理函数。结果表明,DAAT的热稳定性好,能量高。在5℃/min升温速率下,DAAT在283℃左右开始分解,放热峰值320℃,分解放热峰的分解焓为1974·33J/g,高于相同条件下硝胺系炸药HMX的分解焓;采用Kissinger法和Ozawa法求得其活化能分别为209·69和208·77kJ/mol;其热分解速率对压强比较敏感,且与环境压强成正比。采用VLWEOS对DAAT的爆轰性能进行了理论计算,结果表明将DAAT与传统含能材料混合,有望制备出高能钝感炸药

 
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