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Thermal Decomposition and Kinetics of Cast Plastic Bonded Explosives Based on NTO and HMX
Thermal Decomposition and Kinetics of Cast Plastic Bonded Explosives Based on NTO and HMX
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Thermal Decomposition and Kinetics of Cast Plastic Bonded Explosives Based on NTO and HMX
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Thermal Decomposition and Kinetics of Cast Plastic Bonded Explosives Based on NTO and HMX
Thermal Decomposition and Kinetics of Cast Plastic Bonded Explosives Based on NTO and HMX

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Thermal Decomposition and Kinetics of Cast Plastic Bonded Explosives Based on NTO and HMX
Thermal Decomposition and Kinetics of Cast Plastic Bonded Explosives Based on NTO and HMX
Journal Article

Thermal Decomposition and Kinetics of Cast Plastic Bonded Explosives Based on NTO and HMX

2021
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Overview
In this work, we studied the influence of the ratio of NTO and HMX on the thermal decomposition performance of the series of cast PBXs. DSC was used to study the nonisothermal thermal decomposition performance of different PBXs, and ARC was used to study the adiabatic thermal decomposition. Both DSC and ARC results show that among the five different PBXs, N30 is the cast PBX with the best thermal stability.
Publisher
IOP Publishing

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