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Preparation and Characterization of RDX/PDA Composite Energetic Materials Using Microfluidic Technology
by
Xu, S Y
, Jiang, H J
, Yu, J
in
coating
/ composite energetic material
/ Crystal structure
/ Energetic materials
/ Microfluidic
/ Microfluidics
/ Particle size
/ Photoelectrons
/ Thermal analysis
/ Thermal decomposition
/ Thermal stability
/ Thermodynamic properties
/ X ray photoelectron spectroscopy
/ X ray powder diffraction
2025
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Preparation and Characterization of RDX/PDA Composite Energetic Materials Using Microfluidic Technology
by
Xu, S Y
, Jiang, H J
, Yu, J
in
coating
/ composite energetic material
/ Crystal structure
/ Energetic materials
/ Microfluidic
/ Microfluidics
/ Particle size
/ Photoelectrons
/ Thermal analysis
/ Thermal decomposition
/ Thermal stability
/ Thermodynamic properties
/ X ray photoelectron spectroscopy
/ X ray powder diffraction
2025
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Do you wish to request the book?
Preparation and Characterization of RDX/PDA Composite Energetic Materials Using Microfluidic Technology
by
Xu, S Y
, Jiang, H J
, Yu, J
in
coating
/ composite energetic material
/ Crystal structure
/ Energetic materials
/ Microfluidic
/ Microfluidics
/ Particle size
/ Photoelectrons
/ Thermal analysis
/ Thermal decomposition
/ Thermal stability
/ Thermodynamic properties
/ X ray photoelectron spectroscopy
/ X ray powder diffraction
2025
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Preparation and Characterization of RDX/PDA Composite Energetic Materials Using Microfluidic Technology
Journal Article
Preparation and Characterization of RDX/PDA Composite Energetic Materials Using Microfluidic Technology
2025
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Overview
In order to further improve the safety of RDX in preparation and application, the effect of polydopamine (PDA) on the performance of RDX was investigated, and the RDX/PDA composite was prepared by microfluidic technology. Composite morphology, structure, and thermal properties were evaluated using scanning electron microscopy (SEM), X-ray powder diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and thermal analysis, respectively. The results show that the RDX/PDA composites are successfully prepared in one step, the particle size is 1~2 μm, the median particle size D 50 is about 0.98 μm, the span value is 0.54, the crystal structure is unchanged. The thermal decomposition activation of RDX/PDA is increased by about 23 kJ∙mol −1 , the thermal stability is improved, and the thermal decomposition mechanism is not changed.
Publisher
IOP Publishing
Subject
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