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Physical Simulation of Live-Fire Detonations using Command-Detonation Fuzing

机译:使用命令爆炸uzizing的实体防火爆炸物理仿真

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摘要

Testing of munitions for environmental impact is required in many countries as part of the life cycle assessment process. Although the post-detonation mass and composition of metallic species are known, energetics residues from the detonation process are difficult to estimate. Past methods using detonation chamber testing and modeling have been shown to be problematic, especially with newer generation energetic materials. This paper describes a method of field-testing munitions using command detonation systems for static rounds that simulate live-fire high order detonations. Research demonstrates that results from command detonated high explosive rounds are similar to residues from rounds fired onto an ice-covered impact area. The ability to substitute command detonations for live fire will enable the assessment of the environmental impact new munitions will have on training ranges prior to full development and certification. Data may also be used to assess detonation efficiencies for explosive formulations as well as for energetic components in those formulations.
机译:许多国家都需要测试环境影响的弹药作为生命周期评估过程的一部分。虽然已知后爆炸后质量和金属物种的组成,但爆炸过程中的能量残留难以估计。过去使用爆轰室测试和建模的方法是有问题的,特别是具有较新一代的能量材料。本文介绍了一种使用命令爆炸系统的现场测试弹药方法,用于静态循环,模拟实时射击高阶爆炸。研究表明,命令引爆的高爆炸轮的结果类似于从圆形射到的冰覆盖的冲击区域的残留物。替代Live Fire命令爆炸的能力将使对新弹药的环境影响的评估能够在全面开发和认证之前对培训范围进行培训范围。数据还可用于评估爆炸性配方的爆轰效率以及这些配方中的能量组分。

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