TY - JOUR
T1 - PBX-C10炸药磁驱动准等熵压缩动态响应特性
AU - Gao, Tianyu
AU - Duan, Zhuoping
AU - Chong, Tao
AU - Wang, Guiji
AU - Huang, Fenglei
N1 - Publisher Copyright:
© 2020, Editorial Board of Acta Armamentarii. All right reserved.
PY - 2020/6
Y1 - 2020/6
N2 - The detonation test of PBX-C10 was made to explore its dynamic response characteristics under quasi-isentropic loading. An one-dimensional initiation response test system was established by the magnetic compression device CQ-4 and the multiplexed photonic Doppler velocimetry. The detonation growth rule of explosive at 12.7-17.2 GPa was studied. Results show that the waveforms of particle velocities obtained are clean, and their details are clear. After the quasi-isentropic loading enters into the explosive, a precursor shock wave is formed by the chasing and convergence of quasi-isentropic waves. And the initiation mechanism of explosive under quasi-isentropic loading has obvious difference from that under shock loading. Before the formation of the strong precursor shockwave, few hot-spots are formed and no reaction occurs in the explosive. Otherwise, the response of the explosive performs as the characters of initiation and detonation dominated by the hotspot initiation mechanism after the strong shock wave is formed. The explosives which have lower densities will be more aggressive than those which have higher densities.
AB - The detonation test of PBX-C10 was made to explore its dynamic response characteristics under quasi-isentropic loading. An one-dimensional initiation response test system was established by the magnetic compression device CQ-4 and the multiplexed photonic Doppler velocimetry. The detonation growth rule of explosive at 12.7-17.2 GPa was studied. Results show that the waveforms of particle velocities obtained are clean, and their details are clear. After the quasi-isentropic loading enters into the explosive, a precursor shock wave is formed by the chasing and convergence of quasi-isentropic waves. And the initiation mechanism of explosive under quasi-isentropic loading has obvious difference from that under shock loading. Before the formation of the strong precursor shockwave, few hot-spots are formed and no reaction occurs in the explosive. Otherwise, the response of the explosive performs as the characters of initiation and detonation dominated by the hotspot initiation mechanism after the strong shock wave is formed. The explosives which have lower densities will be more aggressive than those which have higher densities.
KW - Dynamic response
KW - Plastic-bonded explosive
KW - Quasi-isentropic compression
KW - Ramp loading Lagrange sound speed
UR - http://www.scopus.com/inward/record.url?scp=85102416006&partnerID=8YFLogxK
U2 - 10.3969/j.issn.1000-1093.2020.S2.020
DO - 10.3969/j.issn.1000-1093.2020.S2.020
M3 - 文章
AN - SCOPUS:85102416006
SN - 1000-1093
VL - 41
SP - 149
EP - 155
JO - Binggong Xuebao/Acta Armamentarii
JF - Binggong Xuebao/Acta Armamentarii
ER -