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- W2330888978 abstract "Inspired by early research in hypergolic propellants, a bomb reactor was developed to investigate their combustion under conditions of rapid mixing. The goal of this effort is to provide insight into ignition mechanisms for hypergolic propellants and allow for comparison between potential propellant combinations. In this work we present the first step in this effort focused on measuring the liquid phase reaction rates of monomethylhydrazine and red fuming nitric acid. To accomplish this goal, various concentrations of monomethylhydrazine, diluted with deionized water, were reacted with pure red fuming nitric acid. Chamber pressure and temperature were measured during experiments and the resulting pressurization rates were analyzed to provide insights into the reaction rates. In addition, since the mixing time is a controlling variable in the ignition process of hypergolic propellants, several experiments were performed with simulants to characterize the system operation prior to reactive testing. Experiments with concentrations of monomethylhydrazine greater than 80% appeared to have pressurization rates dominated by vigorous gas phase reactions while 60% showed a repeatable induction time followed by a rapid pressure rise. A lack of rapid pressure rise was observed for concentrations of 20% and 40% but the pressurization rate did increase with concentration. Future work is discussed to improve understanding of the liquid phase reaction rates investigated in this work." @default.
- W2330888978 created "2016-06-24" @default.
- W2330888978 creator A5050784287 @default.
- W2330888978 creator A5054546371 @default.
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- W2330888978 date "2013-07-12" @default.
- W2330888978 modified "2023-09-27" @default.
- W2330888978 title "Design and Validation of a Bomb Reactor for Liquid Hypergolic Propellants" @default.
- W2330888978 cites W2024621901 @default.
- W2330888978 cites W2106619124 @default.
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- W2330888978 doi "https://doi.org/10.2514/6.2013-4018" @default.
- W2330888978 hasPublicationYear "2013" @default.
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