TY - JOUR
T1 - 压力作用下 DNTF 的热分解动力学及机理研究
AU - Zhou, Jingjing
AU - Zhu, Yanlong
AU - Huang, Meng
AU - An, Jing
AU - Zhou, Jing
AU - Lu, Xu
AU - Ding, Li
AU - Chang, Hai
N1 - Publisher Copyright:
© 2023 Journal of Solid Rocket Technology. All rights reserved.
PY - 2023
Y1 - 2023
N2 - In order to study the effect of pressure on the thermal decomposition of 3,4-dinitrofurazan oxyfurazan(DNTF),the decomposition properties and mechanism of DNTF under different pressures were explored from both experimental analysis and kinetic simulation.The thermal decomposition properties of DNTF at 0.1,1.0,2.0,4.0,and 6.0 MPa were investigated by means of high pressure differential scanning calorimetry(PDSC),and its thermal decomposition kinetic parameters were obtained through Kissinger equation.Simultaneous thermal analysis-FTIR-Mass spectrometry(TG/ DSC-FTIR-MS)was used to study the composition and types of decomposition products of DNTF,and to speculate the thermal decomposition mechanism.Thermal decomposition kinetics parameters of DNTF under different pressures were obtained via NETZSCH Thermokinetics Software.The results show that with the pressure increasing,the decomposition peak temperature of DNTF would move slightly to the high temperature,and gaseous products would promote the decomposition of condensed phase products more significantly.In the thermal decomposition process of DNTF,N—O bond in rings is broken first to generate catalytic gaseous nitrogen oxides(NO,N2O).Through autocatalytic reaction,C—NO2 bond is broken,and segments of furoxan rings as well as oxidized furoxan rings are further decomposed to generate small gaseous molecules such as CO2,NO,NO2 and N2O.The thermal decomposition mechanism of DNTF is verified by kinetic simulation.
AB - In order to study the effect of pressure on the thermal decomposition of 3,4-dinitrofurazan oxyfurazan(DNTF),the decomposition properties and mechanism of DNTF under different pressures were explored from both experimental analysis and kinetic simulation.The thermal decomposition properties of DNTF at 0.1,1.0,2.0,4.0,and 6.0 MPa were investigated by means of high pressure differential scanning calorimetry(PDSC),and its thermal decomposition kinetic parameters were obtained through Kissinger equation.Simultaneous thermal analysis-FTIR-Mass spectrometry(TG/ DSC-FTIR-MS)was used to study the composition and types of decomposition products of DNTF,and to speculate the thermal decomposition mechanism.Thermal decomposition kinetics parameters of DNTF under different pressures were obtained via NETZSCH Thermokinetics Software.The results show that with the pressure increasing,the decomposition peak temperature of DNTF would move slightly to the high temperature,and gaseous products would promote the decomposition of condensed phase products more significantly.In the thermal decomposition process of DNTF,N—O bond in rings is broken first to generate catalytic gaseous nitrogen oxides(NO,N2O).Through autocatalytic reaction,C—NO2 bond is broken,and segments of furoxan rings as well as oxidized furoxan rings are further decomposed to generate small gaseous molecules such as CO2,NO,NO2 and N2O.The thermal decomposition mechanism of DNTF is verified by kinetic simulation.
KW - DNTF
KW - decomposition mechanism
KW - high energy density materials
KW - molecular kinetics simulation
KW - oxidizer
KW - pressure
KW - thermal decomposition
UR - http://www.scopus.com/inward/record.url?scp=85170703584&partnerID=8YFLogxK
U2 - 10.7673/j.issn.1006-2793.2023.04.012
DO - 10.7673/j.issn.1006-2793.2023.04.012
M3 - 文章
AN - SCOPUS:85170703584
SN - 1006-2793
VL - 46
SP - 581
EP - 587
JO - Guti Huojian Jishu/Journal of Solid Rocket Technology
JF - Guti Huojian Jishu/Journal of Solid Rocket Technology
IS - 4
ER -