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首页> 外文期刊>Quimica nova >COMPUTATIONAL CHEMISTRY EMPLOYMENT IN VERIFICATION AND VALIDATION OF DETONATION PRESSURE OF PLASTIC EXPLOSIVE - PBX
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COMPUTATIONAL CHEMISTRY EMPLOYMENT IN VERIFICATION AND VALIDATION OF DETONATION PRESSURE OF PLASTIC EXPLOSIVE - PBX

机译:塑料炸药-PBX爆震压力验证与验证中的计算化学就业。

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Prediction of chemical explosions parameters is an important step for blast tests for civil and military applications. Applying computational chemistry and experimental results, this paper presents the decay rate of pressure in air from the epicenter of 2.70 kg of PBX-Plastic bonded explosive detonation to the distance of 2.0 meters. Pressure in the epicenter was calculated using reactive molecular dynamics simulations and the incident pressure at 1.3; 1.6 and 2.0 meters were measured with piezoelectric pressure sensors. The explosive for the full-scale test were non-confined in a cylindrical shape. Results of simulation and recorded values were consolidated and the rate of pressure decay was verified by statistic regression. Good agreement was verified between computational and experimental pressures data. This research can help designers to prepare protection devices in test areas, storages of explosives or important buildings for military proposes.
机译:化学爆炸参数的预测是民用和军用爆炸测试的重要一步。应用计算化学和实验结果,本文提出了从2.70 kg PBX-塑料粘结炸药爆炸的震中到2.0米距离的空气压力衰减率。震中的压力是使用反应性分子动力学模拟计算的,入射压力为1.3。用压电压力传感器测量了1.6和2.0米。进行全面测试的炸药呈圆柱状。合并模拟结果和记录值,并通过统计回归验证压力衰减率。在计算和实验压力数据之间验证了良好的一致性。这项研究可以帮助设计人员在测试区域,爆炸物或重要建筑物的重要建筑物中准备保护装置,以供军事提议使用。

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