Отрывок: Temperature rise rate 20 K/min. The kinetic regularities of thermal decomposition and ballistic characteristics of a number of compositions based on Az2(O)2 have been determined. It has been established that the burning rate of binary compositions Az2(O)2 - PMVT increases, and the thermal stability decreases compared to the corresponding characteristics of the initial components. It is shown that under nonisothermal conditions of decom...
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dc.date.accessioned2022-10-06 14:28:47-
dc.date.available2022-10-06 14:28:47-
dc.date.issued2022ru
dc.identifierRU\НТБ СГАУ\490179ru
dc.identifier.citationPhysico-chemical characteristics of energy condensed compositions based on polynitrogen heterocyclic compounds, poly-2-methyl-5-vinyltetrazole and SKI-3 rubber // International Conference on Physics and Chemistry of Combustion and in Extreme Environments (Samara, Russia, 12-16 July 2022) / V. N. Azyazov, A. M. Mayorova. - Samara : Publishing OOO “Insoma-Press”, 2022. - P. 60.ru
dc.identifier.urihttp://repo.ssau.ru/handle/International-Conference/Physicochemical-characteristics-of-energy-condensed-compositions-based-on-polynitrogen-heterocyclic-compounds-poly2methyl5vinyltetrazole-and-SKI3-rubber-98842-
dc.language.isoengru
dc.sourceInternational Conference on Physics and Chemistry of Combustion and in Extreme Environments (Samara, Russia, 12-16 July 2022)ru
dc.titlePhysico-chemical characteristics of energy condensed compositions based on polynitrogen heterocyclic compounds, poly-2-methyl-5-vinyltetrazole and SKI-3 rubberru
dc.typeTextru
dc.textpartTemperature rise rate 20 K/min. The kinetic regularities of thermal decomposition and ballistic characteristics of a number of compositions based on Az2(O)2 have been determined. It has been established that the burning rate of binary compositions Az2(O)2 - PMVT increases, and the thermal stability decreases compared to the corresponding characteristics of the initial components. It is shown that under nonisothermal conditions of decom...-
Располагается в коллекциях: International Conference on Combustion Physics and Chemistry

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