Thermal Decomposition Kinetics of RDX with Distributed Activation Energy Model
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- Type
- article
- Published
- 2013-01-11
- Cited by
- 5
- References
- 12
- Access
- Open access
- OpenAlex
- https://openalex.org/W2039765901
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94882744
Keywords
Activation energy, Thermal decomposition, Thermogravimetric analysis, Decomposition, Kinetics
References
- A Simple Method for Estimating f(E) and k0(E) in the Distributed Activation Energy Model
- A New and Simple Method to Estimate f(E) and k0(E) in the Distributed Activation Energy Model from Three Sets of Experimental Data
- Pyrolysis characteristics and kinetics of municipal solid wastes
- Modelling non-isothermal kinetics of biomass prepyrolysis at low pressure.
- Application of Distributed Activation Models in Research on Dynamics of Pyrolysis and Gasification of Garbage
- Thermal Decomposition of RDX and HMX Explosives Part III: Mechanism of Thermal Decomposition
- Thermal Decomposition of RDX and HMX Part I: Characteristic Values of Thermal Analysis
- THEORETICAL ELUCIDATION OF DISTRIBUTED ACTIVATION ENERGY MODEL AND ITS APPLICATIONS IN CHAR GASIFICATION AND SIMULATION DISTILLATION SYSTEMS
- BIOMASS PYROLYSIS AND ITS KINETIC PARAMETERS WITH DIFFERENT METHODS
- Thermal Decomposition of RDX and HMX Part II: Kinetic Parameters and Kinetic Compensation Effects
Cited by
- Catalytic effects of nano additives on decomposition and combustion of RDX-, HMX-, and AP-based energetic compositions
- The Effect of HMX Impurity and Irganox Antioxidant on Thermal Decomposition Kinetics of RDX by TG/DSC Non‐Isothermal Method
- Reaction mechanism and kinetic modelling of RDX/AP via a chemical reaction neural network
- Combustion rate tuning of 3D-printed RDX/NC/GAP composites through hierarchical pore architecture design
- A review on the thermal behavior of molecular explosives of RDX and HMX
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