TY - JOUR
T1 - The efficient activation by adding Energetic metallic particles outside high explosives
T2 - a New direction for composite explosives
AU - Xiao, Chuan
AU - Wang, Zhan Dong
AU - Chen, Fang
AU - Xu, Yu Xin
AU - Jiao, Xiao Long
N1 - Publisher Copyright:
© 2023 Taylor & Francis Group, LLC.
PY - 2023
Y1 - 2023
N2 - Adding energetic metallic particles (EMPs) into high explosive (HE) will increase total energy output, while the energy enhancement differs with the structure of composite explosives (CE). To investigate the total energy of normal metallic explosives (n-CE) and the extreme special case of CE (s-CE, in which EMPs were loaded outside formula system of HE), four turns of inner explosion experiments were conducted in a cubic tank. Experimental results reveal that EMPs in the s-CE release 1.28 times more energy than n-CE, proving the s-CE also has a considerable energy-enhancement effect under certain conditions. Besides, the speed of total energy release of EMPs in n-CE is about 3 times faster than that of EMPs in s-CE. Meanwhile, the overpressure of shock wave in n-CE is higher, though the EMPs in s-CE are nano-particles. The abnormal energy release speed and the different blast wave enhancement mean that the activation mechanism of EMPs differs in different CEs. The dual-effect activation of EMPs is proposed in the paper. The excellent performance on extreme special case(s-CE) will decrease constraints against formula designing of composite explosives, and thus provide a new direction for composite explosives.
AB - Adding energetic metallic particles (EMPs) into high explosive (HE) will increase total energy output, while the energy enhancement differs with the structure of composite explosives (CE). To investigate the total energy of normal metallic explosives (n-CE) and the extreme special case of CE (s-CE, in which EMPs were loaded outside formula system of HE), four turns of inner explosion experiments were conducted in a cubic tank. Experimental results reveal that EMPs in the s-CE release 1.28 times more energy than n-CE, proving the s-CE also has a considerable energy-enhancement effect under certain conditions. Besides, the speed of total energy release of EMPs in n-CE is about 3 times faster than that of EMPs in s-CE. Meanwhile, the overpressure of shock wave in n-CE is higher, though the EMPs in s-CE are nano-particles. The abnormal energy release speed and the different blast wave enhancement mean that the activation mechanism of EMPs differs in different CEs. The dual-effect activation of EMPs is proposed in the paper. The excellent performance on extreme special case(s-CE) will decrease constraints against formula designing of composite explosives, and thus provide a new direction for composite explosives.
KW - Composite explosives
KW - energetic materials
KW - inner explosion experiment
KW - quasi-static pressure
UR - http://www.scopus.com/inward/record.url?scp=85180422372&partnerID=8YFLogxK
U2 - 10.1080/07370652.2023.2275196
DO - 10.1080/07370652.2023.2275196
M3 - Article
AN - SCOPUS:85180422372
SN - 0737-0652
JO - Journal of Energetic Materials
JF - Journal of Energetic Materials
ER -