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Shock Initiation of Energetic Materials at Different Initial Temperatures(Review)

机译:含能材料在不同初始温度下的冲击引发(综述)

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Shock initiation is one of the most important properties of energetic materials,which must transition to detonation exactly as intended when intentionally shocked and not detonate when accidentally shocked.The development of Manganin pressure gauges that are placed inside the explosive charge and record the buildup of pressure upon shock impact has greatly increased the knowledge of these reactive flows.This experimental data,together with similar data from electromagnetic particle velocity gauges,has allowed us to formulate the Ignition and Growth model of shock initiation and detonation in hydrodynamic computer codes for predictions of shock initiation scenarios that cannot be tested experimentally.An important problem in shock initiation of solid explosives is the change in sensitivity that occurs upon heating(or cooling).Experimental Manganin pressure gauge records and the corresponding Ignition and Growth model calculations are presented for two solid explosives,LX-17 [92.5% triaminotrinitrobenzene(TATB)with 7.5% Kel-F binder] and LX-04 [85% octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazine(HMX)with 15% Viton binder] at several initial temperatures.
机译:冲击引发是高能材料的最重要特性之一,必须在故意受到冲击时完全按照预期的方式转变为爆炸,而在意外受到冲击时则不能爆炸。放置在炸药内部并记录压力累积的锰锰压力计的开发冲击试验极大地增加了对这些反应流的了解。该实验数据,再加上电磁粒子速度计的类似数据,使我们能够在流体力学计算机代码中建立起爆和起爆的点火和增长模型,以预测激波。固体炸药冲击引发的一个重要问题是加热(或冷却)时发生的灵敏度变化。给出了两种固体炸药的实验性锰锰压力表记录以及相应的点火和生长模型计算,LX-17 [92.5%triam含7.5%Kel-F粘合剂的三硝基硝基苯(TATB)和LX-04 [含15%Viton粘合剂的85%八氢-1,3,5,7-四硝基-1,3,5,7-四嗪(HMX)]几个初始温度。

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