Thermal stability/chemical structure relations were investigated lbr different classes of energetic compounds containing trinitromethyl, tluorodinitromethyl, and gem-dinitroethyl groups. In the vacuum thermal stability test used to determine the thermal characteristics of the materials, samples are
Structure of the thermal explosion limit
β Scribed by V.I. Babushok; V.M. Gol'dshtein
- Publisher
- Elsevier Science
- Year
- 1988
- Tongue
- English
- Weight
- 296 KB
- Volume
- 72
- Category
- Article
- ISSN
- 0010-2180
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β¦ Synopsis
in a closed system an explosion limit is the transition region which separates the regions of slow and explosive reactions with respect to initial conditions. In the present paper the characteristic features of chemical reaction in the transition region are investigated for thermal explosion. The critical phase trajectory of the system contains an unstable integral manifold. Initial conditions corresponding to this trajectory can be understood as the explosion limit. An equation determining maximum temperature rise on the critical trajectory is obtained. The transition region can be divided into regions of slow and explosive transient regimes. The transition region is characterized by the extrema of induction period and degree of reactant consumption which correspond to a maximum reaction rate.
π SIMILAR VOLUMES
Kinetics of hydrogen oxidation near the lower explosion limit in the kinetic region of chain termination has been studied. Major effects, causing deviations of the reaction kinetics from calculations by the linear theory of branched chain processes, are shown to be (1) the inhibition of the reacting