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Shock Initiation Characteristics of Explosives at Near-Ambient Temperatures

机译:炸药在常温下的冲击起爆特性

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摘要

hn order to study the effects of near-ambient temperature changes on shock initiation behavior of explosives, the experimental devices with components of heating and cooling were designed separately for shock initiation test at various temperatures.Based on the devices, the shock initiation pressure evolution for two explosives (PBX-1: a HMX/TATB composite explosive; and PBX-2: a TATB based IHE) were measured using embedded manganin gauges over the temperature range 5 °C to 75 °C.And the ignition and growth reaction rate model was employed to simulate the shock initiation processes.The results showed that as temperature changing from 5 °C to 75 °C, the shock-initiation pressure in both of the two PBXs grew more rapidly, the run distance to detonation became shorter and the reaction rate model constant Gl increased gradually, these indicated the two explosives became more sensitive to shock as near-ambient temperature increasing.The study also suggested that the effects of near-ambient temperature changes on safety of explosives could not be neglected.
机译:为研究近乎环境温度变化对炸药冲击起爆行为的影响,分别设计了带有加热和冷却组件的实验装置,以在不同温度下进行冲击起爆试验。在5°C至75°C的温度范围内,使用嵌入式锰量规测量了两种炸药(PBX-1:一种HMX / TATB复合炸药; PBX-2:一种基于TATB的IHE),以及着火和生长反应速率模型结果表明,随着温度从5°C到75°C的变化,两个PBX的冲击起始压力增长更快,爆炸的运行距离变短并且反应开始。速率模型常数Gl逐渐增加,这表明随着近环境温度的升高,两种炸药对电击变得更加敏感。研究还表明,近环境的影响温度变化对炸药安全性的影响不容忽视。

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