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  • Attention has been paid to mixtures of hydrogen peroxide (HP) with ethanol, ethylene glycol and glycerin. HP was used in the concentrations of 33, 50 and 74 % by wt. Thermal stability of these mixtures is specified. Theoretical detonation velocities (VOD) of all the prepared mixtures have been calculated using the CHEETAH code. The relative performance (RP) of the mixtures prepared has been determined by means of a ballistic mortar. The obtained VOD and RP data of the studied mixtures were compared with their oxygen balances (OB) and characteristics of their thermal reactivity. These results were then compared with the recent results obtained using the mixtures containing triacetone peroxide (TATP). Also studied was smooth flour gelatinized with 74% HP. Stability of the mixtures of alcohols with HP is negatively influenced by increasing water content in them. Relationship between VOD and thermal reactivity shows that the most reactive fuel in detonation is ethanol, followed by ethylene glycol and glyc
  • Attention has been paid to mixtures of hydrogen peroxide (HP) with ethanol, ethylene glycol and glycerin. HP was used in the concentrations of 33, 50 and 74 % by wt. Thermal stability of these mixtures is specified. Theoretical detonation velocities (VOD) of all the prepared mixtures have been calculated using the CHEETAH code. The relative performance (RP) of the mixtures prepared has been determined by means of a ballistic mortar. The obtained VOD and RP data of the studied mixtures were compared with their oxygen balances (OB) and characteristics of their thermal reactivity. These results were then compared with the recent results obtained using the mixtures containing triacetone peroxide (TATP). Also studied was smooth flour gelatinized with 74% HP. Stability of the mixtures of alcohols with HP is negatively influenced by increasing water content in them. Relationship between VOD and thermal reactivity shows that the most reactive fuel in detonation is ethanol, followed by ethylene glycol and glyc (en)
  • Pozornost byla věnovaná směsem paroxidu vodíku (HP) s ethanolem, ethylenglykolem a glycerinem. HP bol použitý v koncentracích 33, 50 a 74 % hmot. Tepelná stabilita těchto směsí byla stabovena DTA. Teoretické detonační rychlosti (VOD) připravených směsí byly vypočítané pomocí CHEETAH kódu. Relativní pracovní schopnost (RP) připravených směsí byla stanovena balistickým moždířem. Získané VOD a RP hodnoty směsí byly porovnány s jejich kyslíkovými bilancemi a charakteristikami jejich tepelné stálosti. Tyto výsledky byly potom porovnány s nedávnými výsledky pro směsi triacetontriperoxidu (TATP). Byla také studovaná hladká mouka, želatinovaná 74% HP. Stabilita směsí alkoholů s HP je negativně ovlivněna rostoucím obsahem vody v nich. Vztah mezi VOD a tepelnou reaktivitou směsí ukazuje že nejvíce reaktivní palivo v detonaci je ethanol, následovaný ethylenglykolem a glycerinem. Podle nalezených vztahů mohou být studované směsi zařazeny do oblasti mezi emulzní trhaviny a dynamity. Hladká mouka, želatinovaná HP, (cs)
Title
  • Study of Properties of Explosive Mixtures Containing Peroxides
  • Studium vlastností výbušných směsí, obsahujících peroxidy (cs)
  • Study of Properties of Explosive Mixtures Containing Peroxides (en)
skos:prefLabel
  • Study of Properties of Explosive Mixtures Containing Peroxides
  • Studium vlastností výbušných směsí, obsahujících peroxidy (cs)
  • Study of Properties of Explosive Mixtures Containing Peroxides (en)
skos:notation
  • RIV/00216275:25310/08:00007947!RIV09-MSM-25310___
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  • Z(MSM0021627501)
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  • 398154
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  • RIV/00216275:25310/08:00007947
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  • detonation; explosives; hydrogen peroxide; relative performance (en)
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  • [588B5EACF37C]
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  • Pultusk, Poland
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  • Warszawa
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  • 7th International Armament Conference on Scientific Aspects of Armament Technology - SAAT '2008
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  • Zeman, Svatopluk
  • Jungová, Marcela
  • Trzciński, Waldemar
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number of pages
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  • Instytut Techniki Uzbropjennia Wojskowej Akademii Technicznej
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  • 978-83-89399-94-6
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  • 25310
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