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首页> 外文期刊>Combustion, Explosion, and Shock Waves >The Use of the [H2O-CO2] Arbitrary Decomposition Assumption to Predict the Performance of Condensed High Explosives
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The Use of the [H2O-CO2] Arbitrary Decomposition Assumption to Predict the Performance of Condensed High Explosives

机译:使用[H2O-CO2]任意分解假设预测浓缩高炸药的性能

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The plate dent test is one of the simplest tools for fast determination of the detonation pressure. The test is based on the observation that the detonation pressure correlates with the depth of the dent produced by a detonating explosive on a metal witness plate. The present study is aimed at developing a model for estimating the dent depth, which is used not only to obtain the detonation pressure, but also to evaluate the brisance relative to a reference explosive. It is shown that the experimental dent depth values for CHNO and CHNOClF explosives can be successfully reproduced by a model based on few parameters, namely: loading density, number of moles of gaseous detonation products per gram of the explosive, and average molecular weight of the gaseous products, where the number of moles and the mean molecular weight of the gaseous products are calculated according to the [H2O-CO2] arbitrary decomposition assumption. Furthermore, the predicted values of the dent depth and the Kamlet-Jacobs method are used to estimate the detonation pressure for 37 explosives. The results show that the pressures obtained on the basis of the dent depth values are in better agreement with experimental/thermochemical code data than the predictions of the Kamlet-Jacobs method.
机译:板凹面检测是用于快速确定爆轰压力的最简单工具之一。该测试基于观察到爆震压力与由爆炸炸药在金属证人板上产生的凹痕的深度相关。本研究旨在开发用于估计凹陷深度的模型,这不仅用于获得爆炸压力,而且还用于评估相对于参考爆炸性的光线。结果表明,CHNO和CHNOCLF炸药的实验性凹痕深度值可以通过基于少数参数成功再现模型,即:加载密度,每克爆炸性的气态爆炸产品的摩尔数,平均分子量根据[H2O-CO2]任意分解假设计算气态产物的摩尔数和平均分子量的气态产物。此外,使用凹陷深度和Kamlet-jacobs方法的预测值用于估计37个炸药的爆炸压力。结果表明,基于凹陷深度值获得的压力与实验/热化学代码数据更好地与Kamlet-jacobs方法的预测更好。

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