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作 者:周星[1] 张炜[1] 邓蕾[1] 姜本正[1] 周俊红[2] 杨军[2] ZHOU Xing;ZHANG Wei;DENG Lei;JIANG Ben zheng;ZHOU Jun hong;YANG Jun(College of Aerospace Science and Engineering,National University of Defense Technology,410073,Changsha,China;Shanghai Institute of Organic Chemistry,Chinese Academy of Science,200032,Shanghai,China)
机构地区:[1]国防科技大学空天科学学院,湖南长沙410073 [2]中国科学院上海有机化学研究所,上海200032
出 处:《含能材料》2019年第11期967-973,共7页Chinese Journal of Energetic Materials
基 金:NSAF联合基金资助(U1230102)
摘 要:为了研究双核二茂铁衍生物(DFD)分子结构与超细高氯酸铵(AP)/DFD体系机械感度的相关性,采用计算化学与实验相结合的方法,探索了DFD分子结构、AP与DFD相互作用、超细AP/DFD体系的热分解特征量与该体系机械感度的相关性。结果表明,超细AP/DFD体系的撞击感度和摩擦感度的触发机制不同。超细AP/DFD体系机械感度的相关性分析表明,该体系撞击感度的触发源于AP热分解,超细AP/DFD体系的三个放热反应过程越集中,撞击感度越低;该体系摩擦感度的触发源于AP晶面?DFD相互作用和该体系低温段的反应,AP低温热分解峰温与DFD低温氧化峰温之差越大,摩擦感度越低。To study the relationship between the molecular structure of double?core ferrocene derivatives(DFDs)and mechanical sensitivity of fine AP/DFD,molecular structure of DFD,interaction between AP and DFD,characteristics of thermal decom?position of super fine AP/DFD,and mechanical sensitivity of the mixture were studied by simulation and experiments.The trigger mechanisms of impact and friction sensitivity of the AP/DFD mixture were different.The correlation analysis showed that the thermal decomposition of AP was the dependent factor on the impact sensitivity of the mixture,the closer profiles for the three exothermic reaction processes caused lower impact sensitivity.The friction sensitivity of the mixture was dependent on the reaction between DFD molecule and crystal planes of AP,Higher difference beween the lower thermal decomposition temperature of AP and DFD led to lower friction sensitivity.
关 键 词:双核二茂铁衍生物(DFD) 超细AP/DFD体系 机械感度 分子结构 相互作用
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