Thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluation

This investigation was devoted to exploring the thermal decomposition and sensitivity characteristics of solid propellants using nano-AN and nano-AP as oxidizers. The morphology, surface elements, and crystal structure of nano-AP and nano-AN were investigated by SEM, BET, EDS, and XRD. DSC and TG-MS...

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Main Authors: Xiaolan Song, Xiaohui Gao, Yong Kou, Zhihong Yu, Yi Wang, Chongwei An, Fengsheng Li
Format: Article
Language:English
Published: KeAi Communications Co. Ltd. 2022-12-01
Series:FirePhysChem
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2667134422000505
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author Xiaolan Song
Xiaohui Gao
Yong Kou
Zhihong Yu
Yi Wang
Chongwei An
Fengsheng Li
author_facet Xiaolan Song
Xiaohui Gao
Yong Kou
Zhihong Yu
Yi Wang
Chongwei An
Fengsheng Li
author_sort Xiaolan Song
collection DOAJ
description This investigation was devoted to exploring the thermal decomposition and sensitivity characteristics of solid propellants using nano-AN and nano-AP as oxidizers. The morphology, surface elements, and crystal structure of nano-AP and nano-AN were investigated by SEM, BET, EDS, and XRD. DSC and TG-MS were used to investigate the thermal decomposition mechanism of nano-AP and nano-AN solid propellants. The mechanical sensitivity of the different solid propellants containing nano-AN and nano-AP was tested and their energy performance was also evaluated. The results show that the microscopic morphology of nano-AN and nano-AP is network-like with the one-dimensional scale less than 100 nm, and the crystal phases of the two are consistent with the raw AN and raw AP, respectively. The thermal decomposition activation energy of AN/CMDB-4 propellant containing nano-AN is 717.46 kJ/mol, while that of AP/HTPB-6 propellant containing nano-AP is 422.33 kJ/mol. The main decomposition products of AN/CMDB-4 propellant are CO2, N2O, NO, CH2O, CO, N2, H2O, CH4 and H2. The products of CO2, N2O, NO, CH2O, CO, N2, H2O, CH4 and H2 are also generated during the decomposition of AP/HTPB-6 propellant. With the increase of nano-AN and nano-AP in propellants, the mechanical sensitivity of AN/CMDB solid propellant decreases, while that of AP/HTPB solid propellant increases. The theoretical standard specific impulse Isp of AN/CMDB and AP/HTPB propellants are 2439.5 N·s/kg and 2449.3 N·s/kg, respectively. The above conclusions show that nano-AP and nano-AN can improve the thermal decomposition performance and the safety of solid propellants, which are expected to be widely used in solid propellants.
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spelling doaj.art-1eadfc77a8d24b308e7c7ce9caba6c242023-01-05T06:24:55ZengKeAi Communications Co. Ltd.FirePhysChem2667-13442022-12-0124323333Thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluationXiaolan Song0Xiaohui Gao1Yong Kou2Zhihong Yu3Yi Wang4Chongwei An5Fengsheng Li6School of Environment and Safety Engineering, North University of China, Taiyuan 030051, China; Corresponding author.School of Environment and Safety Engineering, North University of China, Taiyuan 030051, ChinaSchool of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaSchool of Environment and Safety Engineering, North University of China, Taiyuan 030051, ChinaSchool of Materials Science and Engineering, North University of China, Taiyuan 030051, ChinaSchool of Environment and Safety Engineering, North University of China, Taiyuan 030051, ChinaSchool of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaThis investigation was devoted to exploring the thermal decomposition and sensitivity characteristics of solid propellants using nano-AN and nano-AP as oxidizers. The morphology, surface elements, and crystal structure of nano-AP and nano-AN were investigated by SEM, BET, EDS, and XRD. DSC and TG-MS were used to investigate the thermal decomposition mechanism of nano-AP and nano-AN solid propellants. The mechanical sensitivity of the different solid propellants containing nano-AN and nano-AP was tested and their energy performance was also evaluated. The results show that the microscopic morphology of nano-AN and nano-AP is network-like with the one-dimensional scale less than 100 nm, and the crystal phases of the two are consistent with the raw AN and raw AP, respectively. The thermal decomposition activation energy of AN/CMDB-4 propellant containing nano-AN is 717.46 kJ/mol, while that of AP/HTPB-6 propellant containing nano-AP is 422.33 kJ/mol. The main decomposition products of AN/CMDB-4 propellant are CO2, N2O, NO, CH2O, CO, N2, H2O, CH4 and H2. The products of CO2, N2O, NO, CH2O, CO, N2, H2O, CH4 and H2 are also generated during the decomposition of AP/HTPB-6 propellant. With the increase of nano-AN and nano-AP in propellants, the mechanical sensitivity of AN/CMDB solid propellant decreases, while that of AP/HTPB solid propellant increases. The theoretical standard specific impulse Isp of AN/CMDB and AP/HTPB propellants are 2439.5 N·s/kg and 2449.3 N·s/kg, respectively. The above conclusions show that nano-AP and nano-AN can improve the thermal decomposition performance and the safety of solid propellants, which are expected to be widely used in solid propellants.http://www.sciencedirect.com/science/article/pii/S2667134422000505Nano-APNano-ANSolid propellantsThermal decompositionSensitivities
spellingShingle Xiaolan Song
Xiaohui Gao
Yong Kou
Zhihong Yu
Yi Wang
Chongwei An
Fengsheng Li
Thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluation
FirePhysChem
Nano-AP
Nano-AN
Solid propellants
Thermal decomposition
Sensitivities
title Thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluation
title_full Thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluation
title_fullStr Thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluation
title_full_unstemmed Thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluation
title_short Thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluation
title_sort thermolysis and sensitivities of solid propellants using characterized nano oxidizers involving energy performance evaluation
topic Nano-AP
Nano-AN
Solid propellants
Thermal decomposition
Sensitivities
url http://www.sciencedirect.com/science/article/pii/S2667134422000505
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AT yongkou thermolysisandsensitivitiesofsolidpropellantsusingcharacterizednanooxidizersinvolvingenergyperformanceevaluation
AT zhihongyu thermolysisandsensitivitiesofsolidpropellantsusingcharacterizednanooxidizersinvolvingenergyperformanceevaluation
AT yiwang thermolysisandsensitivitiesofsolidpropellantsusingcharacterizednanooxidizersinvolvingenergyperformanceevaluation
AT chongweian thermolysisandsensitivitiesofsolidpropellantsusingcharacterizednanooxidizersinvolvingenergyperformanceevaluation
AT fengshengli thermolysisandsensitivitiesofsolidpropellantsusingcharacterizednanooxidizersinvolvingenergyperformanceevaluation