爆炸物
起爆
塔特布
机械
材料科学
休克(循环)
冲击波
锰铜
点火系统
层流
移动冲击
高能材料
热力学
物理
化学
经典力学
医学
有机化学
加速度
内科学
作者
E. L. Lee,Craig M. Tarver
出处
期刊:The Physics of fluids
[American Institute of Physics]
日期:1980-12-01
卷期号:23 (12): 2362-2372
被引量:597
摘要
An ignition and growth concept is used, within the framework of a one-dimensional Lagrangian hydrodynamic code, to model the shock initiation of heterogeneous solid explosives. The leading shock wave of an initiating pulse is assumed to ignite a small fraction of the explosive at localized heated regions. These ignited regions then grow as material is consumed at their boundaries. The growth rate for a particular material is assumed to have the characteristic pressure dependence of high-pressure laminar burning experiments. Results of the model calculations are in good quantitative agreement with recent manganin pressure gage and particle velocity gage measurements of the buildup of the initiating shock front to detonation for both sustained and short duration pulses in four solid explosives: PBX−9404, TATB, cast TNT, and PETN. The predicted run distances to detonation as functions of shock pressure at various initial densities and the predicted reaction zone lengths of the fully developed detonation waves also correlate well with experimental data for these four solid explosives.
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