TY - JOUR
T1 - Theoretical approach of determining expansion law of cylinder under the detonation driving of multi-component explosive
AU - Liu, Yi Ru
AU - Duan, Zhuo Ping
AU - Ou, Zhuo Cheng
AU - Huang, Feng Lei
PY - 2014/8/15
Y1 - 2014/8/15
N2 - In order to provide basic data for quickly predicting JWL (Jones-Wilkins-Lee) parameters of multi-component explosive with any component ratio, this paper presents a theoretical approach for quickly determining the expansion characteristics of cylinder driven by detonation products of multi-component explosive in a cylinder test. Namely, based on the JWL parameters of each component in multi-component explosive, according to energy conservation principle and using Gurney model, the expansion displacement-time curve of cylinder under the detonation driving of multi-component explosive can be obtained. Meanwhile, utilizing energy conservation principle and the relationship between detonation velocity, detonation pressure and detonation heat from constant γ equation of state in classical detonation theory, this paper also presents a theoretical approach for determining the detonation velocity and detonation pressure of multi-component explosive with any component ratio. Using this method, the cylinder expansion characteristics, detonation velocity and detonation pressure of a PBXC03 and a PBXC10 multi-component explosive were calculated, respectively. It is found that the calculated results are in good agreement with previous experimental results, which verifies the feasibility of the theoretical approach.
AB - In order to provide basic data for quickly predicting JWL (Jones-Wilkins-Lee) parameters of multi-component explosive with any component ratio, this paper presents a theoretical approach for quickly determining the expansion characteristics of cylinder driven by detonation products of multi-component explosive in a cylinder test. Namely, based on the JWL parameters of each component in multi-component explosive, according to energy conservation principle and using Gurney model, the expansion displacement-time curve of cylinder under the detonation driving of multi-component explosive can be obtained. Meanwhile, utilizing energy conservation principle and the relationship between detonation velocity, detonation pressure and detonation heat from constant γ equation of state in classical detonation theory, this paper also presents a theoretical approach for determining the detonation velocity and detonation pressure of multi-component explosive with any component ratio. Using this method, the cylinder expansion characteristics, detonation velocity and detonation pressure of a PBXC03 and a PBXC10 multi-component explosive were calculated, respectively. It is found that the calculated results are in good agreement with previous experimental results, which verifies the feasibility of the theoretical approach.
KW - Cylinder test
KW - Energy conservation principle
KW - Gurney model
KW - JWL equation of state
KW - Multi-component explosive
UR - http://www.scopus.com/inward/record.url?scp=84907560633&partnerID=8YFLogxK
U2 - 10.11858/gywlxb.2014.04.008
DO - 10.11858/gywlxb.2014.04.008
M3 - Article
AN - SCOPUS:84907560633
SN - 1000-5773
VL - 28
SP - 435
EP - 442
JO - Gaoya Wuli Xuebao/Chinese Journal of High Pressure Physics
JF - Gaoya Wuli Xuebao/Chinese Journal of High Pressure Physics
IS - 4
ER -