Pang Weiqiang, Deng Chongqing, Li Huan, DeLuca Luigi T, Ouyang Dihua, Xu Huixiang, Fan Xuezhong
Xi'an Modern Chemistry Research Institute, Xi'an 710065, China.
Science and Technology on Combustion and Explosion Laboratory, Xi'an Modern Chemistry Research Institute, Xi'an 710065, China.
Nanomaterials (Basel). 2021 Dec 31;12(1):133. doi: 10.3390/nano12010133.
As a hot research topic, nano-scale energetic materials have recently attracted much attention in the fields of propellants and explosives. The preparation of different types of nano-sized energetic materials were carried out, and the effects of nano-sized energetic materials (nEMs) on the properties of solid propellants and explosives were investigated and compared with those of micro-sized ones, placing emphasis on the investigation of the hazardous properties, which could be useable for solid rocket nozzle motor applications. It was found that the nano-sized energetic materials can decrease the impact sensitivity and friction sensitivity of solid propellants and explosives compared with the corresponding micro-sized ones, and the mechanical sensitivities are lower than that of micro-sized particles formulation. Seventy-nine references were enclosed.
作为一个热门研究课题,纳米级含能材料近年来在推进剂和炸药领域备受关注。开展了不同类型纳米级含能材料的制备工作,并研究了纳米级含能材料对固体推进剂和炸药性能的影响,并与微米级含能材料进行了比较,重点研究了其危险特性,这些特性可用于固体火箭喷管发动机应用。结果发现,与相应的微米级含能材料相比,纳米级含能材料可降低固体推进剂和炸药的撞击感度和摩擦感度,且机械感度低于微米级颗粒配方。文中附有79篇参考文献。