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Diagnostics of the Chemical Reaction Zone in Detonation of Solid Explosives
Combustion, Explosion, and Shock Waves ( IF 0.9 ) Pub Date : 2020-12-28 , DOI: 10.1134/s0010508220060106
A. P. Ershov , N. P. Satonkina , A. V. Plastinin , A. S. Yunoshev

Abstract

In studies of the structure of the reaction zone in detonation waves of high explosives, it is common to measure the mechanical characteristics of the flow—the histories of particle velocity, pressure or density. Experience has shown that in such profiles, it is difficult to identify the chemical reaction zone. These distributions, as a rule, are distorted when the flow interacts with measuring systems. In this paper, we consider the prospects of an alternative electrical conductivity method, which is largely free from the above disadvantages and has a number of advantages. The correlation between the region of high electrical conductivity and the reaction zone is validated by comparing the results of conventional methods and conductivity profiles.



中文翻译:

固体炸药爆炸中化学反应区的诊断

摘要

在研究高炸药爆炸波中反应区的结构时,通常测量流量的机械特性-粒子速度,压力或密度的历史记录。经验表明,在这种情况下,很难识别化学反应区。通常,当流量与测量系统相互作用时,这些分布会失真。在本文中,我们考虑了另一种导电方法的前景,该方法在很大程度上没有上述缺点并具有许多优点。通过比较常规方法和电导率分布图的结果,可以验证高电导率区域与反应区之间的相关性。

更新日期:2020-12-28
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