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叠氮推进剂的感度和能量特性研究
引用本文:张昊越,付小龙,蔚红建,李吉祯.叠氮推进剂的感度和能量特性研究[J].化学推进剂与高分子材料,2014(1):45-48.
作者姓名:张昊越  付小龙  蔚红建  李吉祯
作者单位:西安近代化学研究所,陕西西安710065
基金项目:装备预先研究项目,编号40406010104
摘    要:对叠氮推进剂的感度和能量特性进行了理论计算,得到了采用硝化甘油/低感度硝酸酯混合体系来降低冲击感度和摩擦感度的有效方法,以及高能量叠氮缩水甘油醚(GAP)推进剂各主要组分含量。增塑剂为硝化甘油/丁三醇三硝酸酯(NG/BTTN),增塑比为2.0,Al粉、高氯酸铵(AP)和奥克托今(HMX)质量分数分别为18%、30%和22%。

关 键 词:叠氮推进剂  感度  能量  理论计算

Study on Sensitivity and Energy Performance of Azide Propellants
ZHANG Haoyue,FU Xiaolong,YU Hongjian,LI Jizhen.Study on Sensitivity and Energy Performance of Azide Propellants[J].Chemical Propellants & Polymeric Materials,2014(1):45-48.
Authors:ZHANG Haoyue  FU Xiaolong  YU Hongjian  LI Jizhen
Affiliation:(Xi 'an Modern Chemistry Research Institute, Xi 'an 710065, China)
Abstract:By theoretically calculating the sensitivity and energy performance of azide propellant, the valid method using the nitroglycerin/low sensitive nitrate mixed system to decrease the impact sensitivity and friction sensitivity, as well as the contents of main components in high energy glycidyl azide polymer (GAP)-based propellants were obtained. The plasticizer is nitroglycerin/butanetriol trinitrate (NG/BTTN), the plasticization ratio is 2.0, the mass fractions of AI powder, ammonium perchlorate (AP) and HMX are 18%, 30% and 22% respectively
Keywords:solid propellant  azide propellant  sensitivity  energy  theoretical calculation
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