Xi Peng, Sun Shiyan, Shang Yu, Wang Xiaofeng, Dong Jun, Feng Xuesong
College of Weaponry Engineering, Naval University of Engineering, Wuhan 430033, China.
Xi'an Modern Chemistry Research Institute, Xi'an 710065, China.
Nanomaterials (Basel). 2023 Jan 19;13(3):412. doi: 10.3390/nano13030412.
Boron powder is an additive for metalized explosives with great application potential. To improve the energy release ability of boron powder, the composites of RDX and nano-boron (RDX@Nano-B) were prepared by the spray-drying process, and the metalized explosives based on it were designed (named PBX-B1). The detonation heat and explosion pressure of boron-containing explosives PBX-B1 under vacuum and air conditions were measured and analyzed by an internal explosion test. On the other hand, the equilibrium pressure and energy release of the PBX-B1 explosive system after detonation were analyzed and compared with that of an explosive formulation of the same composition (named PBX-B2). Results showed that the detonation heat of PBX-B1 was 7456 J/g in a vacuum environment, which was 34.8% higher than that of RDX (5530 J/g). However, in the air environment, the detonation heat of PBX-B1 increased by 19.2% compared with that in the vacuum environment, and the explosive gas products mainly included N, NO, CO, HO, CH, HCN, and CO. The peak pressure and equilibrium pressures of PBX-B1 were 11.2 and 0.42 MPa, which were increased by 155% and 75% compared with the vacuum environment, respectively. It is worth noting that, compared with that of PBX-B2, the released energy in the aerobic combustion stage and equilibrium pressure of PBX-B1 were increased by 49.8% and 10.5%. This study demonstrated the strategy of improving the energy release of boron-containing metalized explosives through the design of an explosive microstructure, which provides important clues for the design of higher-energy metalized explosives.
硼粉是一种具有巨大应用潜力的金属化炸药添加剂。为提高硼粉的能量释放能力,采用喷雾干燥法制备了黑索今(RDX)与纳米硼的复合材料(RDX@纳米 - B),并设计了基于该复合材料的金属化炸药(命名为PBX - B1)。通过内爆试验对含硼炸药PBX - B1在真空和空气条件下的爆热和爆炸压力进行了测量与分析。另一方面,对PBX - B1炸药体系爆轰后的平衡压力和能量释放进行了分析,并与相同组成的炸药配方(命名为PBX - B2)进行了比较。结果表明,在真空环境下,PBX - B1的爆热为7456 J/g,比RDX(5530 J/g)高34.8%。然而,在空气环境中,PBX - B1的爆热相比真空环境增加了19.2%,爆炸气体产物主要包括N、NO、CO、HO、CH、HCN和CO。PBX - B1的峰值压力和平衡压力分别为11.2和0.42 MPa,相比真空环境分别增加了155%和75%。值得注意的是,与PBX - B2相比,PBX - B1在有氧燃烧阶段释放的能量和平衡压力分别增加了49.8%和10.5%。本研究展示了通过炸药微观结构设计提高含硼金属化炸药能量释放的策略,为高能金属化炸药的设计提供了重要线索。