Wang Shuang, Yang Li, Ren Xiaoting, Tong Wenchao, Li Wei, Li Haojie, Huo Junda
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing, 100081, People's Republic of China.
Beijing Institute of Technology Chongqing Innovation Center Chongqing, 401120, People's Republic of China.
Nanotechnology. 2023 Aug 21;34(45). doi: 10.1088/1361-6528/aced55.
Copper azide (CA) has gradually become the chosen priming agent for microexplosive devices as a lead-free green priming agent. However, charge loading is challenging due to its high electrostatic sensitivity, severely limiting its practical application. In this study, copper hydroxide particles were evenly coated on the surface of carbon fiber using electrospinning and quick hot-pressing, and CA-based composites with uniform load were created using theazide technique while keeping good film characteristics. The produced CA-HP film has an electroostatic sensitivity of 3.8 mJ, which is much higher than the raw material of 0.05 mJ. The flame sensitivity has also been increased from 45 to 51 cm, and the use safety has been considerably enhanced. Furthermore, hot-pressed CA-HP films can improve the film's qualities, such as easy cutting and processing into the required shape, compatibility with MEMS processes, and the ability to successfully detonate secondary explosives with only 1 mg. This novel coupling technology expands the possibilities for developing high-safety primers for micro-initiator.
叠氮化铜(CA)作为一种无铅绿色起爆药,已逐渐成为微爆炸装置的首选起爆药。然而,由于其高静电敏感性,装药过程具有挑战性,严重限制了其实际应用。在本研究中,采用静电纺丝和快速热压法将氢氧化铜颗粒均匀包覆在碳纤维表面,并利用叠氮技术制备了负载均匀的CA基复合材料,同时保持了良好的成膜特性。制备的CA-HP薄膜的静电感度为3.8 mJ,远高于原料的0.05 mJ。火焰感度也从45 cm提高到了51 cm,使用安全性得到了显著提高。此外,热压CA-HP薄膜可以改善薄膜的性能,如易于切割和加工成所需形状、与MEMS工艺的兼容性以及仅用1 mg就能成功起爆二次炸药的能力。这种新型耦合技术为开发用于微起爆器的高安全性起爆药开辟了新的可能性。