Reactivity of polyaniline composites with attractive cyclic nitramines
ČlánekOmezený přístuppeer-reviewedpostprintNačítá se...
Datum
Vedoucí práce
Oponent
Název časopisu
Název svazku
Nakladatel
Abstrakt
Composite microcrystals of the nitramines (NAs) viz., RDX, HMX, BCHMX, and CL-20 with electrically conductive polyaniline (PANi) are a charge transfer complexes in coagglomerated composite crystals (CACs). The activation energies of thermolysis, Ea, of the pure NAs and their PANi-CACs were determined using the Kissinger method, and decomposition processes are discussed. Except for the RDX/PANi CACs, all the other CACs show higher Ea values for decomposition compared to their pure NA counterparts. For all CACs, relationships are specified between the Ea values, on the one hand, and the squares of the detonation velocities, enthalpies of formation, spark energy and impact sensitivities, on the other. The relationships between their low-temperature heats of decomposition, DH, from DSC, and their enthalpy of formation, logarithm of impact sensitivity, electric spark energy, as well as detonation energy, are described. The PANi favorably influences the density of the corresponding CACs; surprisingly close linear correlations were found, and explained, between these densities and the Ea values. This presence of PANi strongly increased the electrical spark sensitivity of the CACs in comparison to the base NAs. Based on the results obtained, it can be noted in particular the exceptional desensitization of HMX to impact and the increased sensitivity to electrical spark by coating its crystals with polyaniline.
Rozsah stran
p. 1-12
ISSN
2096-3459
Permanentní identifikátor
Projekt
Časopis nebo seriál
Defence Technology, volume 45, issue: March 2025
Vydavatelská verze
https://doi.org/10.1016/j.dt.2024.10.009
Přístup k e-verzi
Pouze v rámci univerzity
Název akce
ISBN
Studijní obor
Studijní program
Signatura tištěné verze
Umístění tištěné verze
Přístup k tištěné verzi
Klíčová slova
Coagglomeration, Impact sensitivity, Nitramines, Polyaniline, Thermal decomposition, Koaglomerace, citlivost na náraz, nitraminy, polyanilin, tepelný rozklad