This article is cited in 10 scientific papers (total in 10 papers)
Review
Special features characteristic of the use of differential scanning calorimetry for the investigation of the kinetics of thermal decomposition of energetic materials
Abstract:
The results of analysis of mathematical models of «ideal» differential scanning calorimeter are used for determining the experimental conditions which provide for the minimal level of errors of determination of the kinetic constants of exothermal reactions of thermal decomposition of energetic materials under conditions of constant-rate heating of samples and in the isothermal mode. The predicted estimates of admissible values of the basic parameters of models (mass of samples, rate of heating, temperature range of investigations, and so on) are based on the experimental data largely obtained in the investigation of cyclotetramethylenetetranitramine (HMX).
Citation:
A. A. Koptelov, Yu. M. Miloekhin, D. N. Sadovnichii, N. I. Shishov, “Special features characteristic of the use of differential scanning calorimetry for the investigation of the kinetics of thermal decomposition of energetic materials”, TVT, 46:2 (2008), 290–304; High Temperature, 46:2 (2008), 261–274
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\paper Special features characteristic of the use of differential scanning calorimetry for the investigation of the kinetics of thermal decomposition of energetic materials
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\pages 290--304
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\jour High Temperature
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\crossref{https://doi.org/10.1134/s10740-008-2016-8}
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Linking options:
https://www.mathnet.ru/eng/tvt1050
https://www.mathnet.ru/eng/tvt/v46/i2/p290
This publication is cited in the following 10 articles:
Giuseppe Andriani, Gianmaria Pio, Ernesto Salzano, Chiara Vianello, Paolo Mocellin, “Evaluating the thermal stability of chemicals and systems: A review”, Can J Chem Eng, 2024
Khaneft A., “Determination of the Critical Temperature of Self-Ignition of Explosives From the Stability Analysis of the Thermal Conductivity Equation”, Propellants Explos. Pyrotech., 46:3 (2021), 368–377
Milekhin Yu.M., Koptelov A.A., Rogozina A.A., Shishov N.I., “Thermal Decomposition of Enegy Composite Material With An Inert Binder”, Russ. J. Appl. Chem., 92:12 (2019), 1680–1689
Sadovnichii D.N., Milekhin Yu.M., Lopatkin S.A., Skripina T.S., Malinin S.A., Gross I.N., “Dielecric Relaxation in Energy Condensed Systems on the Basis of Polyefirretane Elastomer. II. Temperature Dependence and Ignition”, Combust. Explos., 55:2 (2019), 220–229
Milekhin Yu.M., Koptelov A.A., Koptelov I.A., Rogozina A.A., “Thermal Decomposition Kinetics of An Energy Composite Material on the Basis of Inert Binding”, Phys. Chem. Aspects Study Clusters Nanostruct. Nanomater., 2019, no. 11, 206–214
Koptelov A.A., Milekhin Yu.M., Matveev A.A., Koptelov I.A., Rogozina A.A., “Prediction of Thermal Explosion Parameters For Energetic Materials on the Basis of Thermal Analysis Data”, Russ. J. Appl. Chem., 90:8 (2017), 1265–1272
B. G. Pokusaev, S. P. Karlov, D. A. Nekrasov, N. S. Zakharov, “Initiation of convection flows in the wall granular layer in the problem of boiling of subcooled coolant”, High Temperature, 54:5 (2016), 708–715
A. A. Koptelov, I. A. Koptelov, A. A. Rogozina, E. S. Yushkov, “Potential of thermal analysis as applied to studying the kinetics of thermal degradation of polymers”, Russ J Appl Chem, 89:9 (2016), 1454
Milekhin Yu.M., Koptelov A.A., Baranets Yu.N., Rogozina A.A., “Dependence of the Parameters of Thermal Decomposition of Energetic Materials on the Experiment Conditions”, Russ. J. Appl. Chem., 88:7 (2015), 1134–1141
A. A. Koptelov, Yu. M. Milekhin, Yu. N. Baranets, “Simulation of thermal decomposition of a polymer at random scissions of C-C bonds”, Russ. J. Phys. Chem. B, 6:5 (2012), 626